{"id":175,"date":"2021-02-03T22:23:07","date_gmt":"2021-02-03T22:23:07","guid":{"rendered":"https:\/\/courses.lumenlearning.com\/calculus1\/?post_type=chapter&#038;p=175"},"modified":"2021-04-19T17:25:48","modified_gmt":"2021-04-19T17:25:48","slug":"problem-set-exponential-and-logarithmic-functions","status":"publish","type":"chapter","link":"https:\/\/courses.lumenlearning.com\/calculus1\/chapter\/problem-set-exponential-and-logarithmic-functions\/","title":{"raw":"Problem Set: Exponential and Logarithmic Functions","rendered":"Problem Set: Exponential and Logarithmic Functions"},"content":{"raw":"<p id=\"fs-id1170572545888\">For the following exercises (1-4), evaluate the given exponential functions as indicated, accurate to two significant digits after the decimal.<\/p>\r\n\r\n<div id=\"fs-id1170572545893\" class=\"exercise\">\r\n<div id=\"fs-id1170572545895\" class=\"textbox\">\r\n<p id=\"fs-id1170572545897\"><strong>1.\u00a0<\/strong>[latex]f(x)=5^x[\/latex]<\/p>\r\na. [latex]x=3[\/latex]\r\n\r\nb. [latex]x=\\dfrac{1}{2}[\/latex]\r\n\r\nc. [latex]x=\\sqrt{2}[\/latex]\r\n\r\n[reveal-answer q=\"fs-id1170572545955\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572545955\"]\r\n<p id=\"fs-id1170572545955\">a. 125 b. 2.24 c. 9.74<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572545960\" class=\"exercise\">\r\n<div id=\"fs-id1170572545962\" class=\"textbox\">\r\n<p id=\"fs-id1170572545965\"><strong>2.\u00a0<\/strong>[latex]f(x)=(0.3)^x[\/latex]<\/p>\r\na. [latex]x=-1[\/latex]\r\n\r\nb. [latex]x=4[\/latex]\r\n\r\nc. [latex]x=-1.5[\/latex]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572546032\" class=\"exercise\">\r\n<div id=\"fs-id1170572546034\" class=\"textbox\">\r\n<p id=\"fs-id1170572546036\"><strong>3.\u00a0<\/strong>[latex]f(x)=10^x[\/latex]<\/p>\r\na. [latex]x=-2[\/latex]\r\n\r\nb. [latex]x=4[\/latex]\r\n\r\nc. [latex]x=\\dfrac{5}{3}[\/latex]\r\n\r\n[reveal-answer q=\"fs-id1170572358150\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572358150\"]\r\n<p id=\"fs-id1170572358150\">a. 0.01 b. 10,000 c. 46.42<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572358156\" class=\"exercise\">\r\n<div id=\"fs-id1170572358158\" class=\"textbox\">\r\n<p id=\"fs-id1170572358160\"><strong>4.\u00a0<\/strong>[latex]f(x)=e^x[\/latex]<\/p>\r\na. [latex]x=2[\/latex]\r\n\r\nb. [latex]x=-3.2[\/latex]\r\n\r\nc. [latex]x=\\pi [\/latex]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572358219\">For the following exercises (5-10), match the exponential equation to the correct graph.<\/p>\r\n\r\n<ol id=\"fs-id1170572358222\" style=\"list-style-type: lower-alpha;\">\r\n \t<li>[latex]y=4^{\u2212x}[\/latex]<\/li>\r\n \t<li>[latex]y=3^{x-1}[\/latex]<\/li>\r\n \t<li>[latex]y=2^{x+1}[\/latex]<\/li>\r\n \t<li>[latex]y=\\left(\\dfrac{1}{2}\\right)^x+2[\/latex]<\/li>\r\n \t<li>[latex]y=\u22123^{\u2212x}[\/latex]<\/li>\r\n \t<li>[latex]y=1-5^x[\/latex]<\/li>\r\n<\/ol>\r\n<div id=\"fs-id1170572358351\" class=\"exercise\">\r\n<div id=\"fs-id1170572358353\" class=\"textbox\"><span id=\"fs-id1170572358359\"><strong>5.\u00a0<\/strong><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202709\/CNX_Calc_Figure_01_05_201.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -2 to 8. The graph is of a decreasing curved function. The function decreases until it approaches the line \u201cy = 2\u201d, but never touches this line. The y intercept is at the point (0, 3) and there is no x intercept.\" \/><\/span>\r\n[reveal-answer q=\"fs-id1170572553700\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572553700\"]\r\n<p id=\"fs-id1170572553700\">d<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572553705\" class=\"exercise\">\r\n<div id=\"fs-id1170572553707\" class=\"textbox\"><span id=\"fs-id1170572553713\"><strong>6.\u00a0<\/strong><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202713\/CNX_Calc_Figure_01_05_202.jpg\" alt=\"An image of a graph. The x axis runs from -4 to 4 and the y axis runs from -9 to 2. The graph is of a function that starts slightly below the line \u201cy = 1\u201d and begins decreasing rapidly in a curve. The x intercept and y intercept are both at the origin.\" \/><\/span><\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572553732\" class=\"exercise\">\r\n<div id=\"fs-id1170572553734\" class=\"textbox\">\r\n\r\n<span id=\"fs-id1170572553737\"><strong>7.\u00a0<\/strong><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202716\/CNX_Calc_Figure_01_05_203.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that starts slightly above the x axis and begins increasing rapidly. There is no x intercept and the y intercept is at the point (0, (1\/3)). Another point of the graph is at (1, 1).\" \/><\/span>\r\n\r\n[reveal-answer q=\"fs-id1170572553754\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572553754\"]\r\n<p id=\"fs-id1170572553754\">b<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572553760\" class=\"exercise\">\r\n<div id=\"fs-id1170572553762\" class=\"textbox\"><span id=\"fs-id1170572553764\"><strong>8.\u00a0<\/strong><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202719\/CNX_Calc_Figure_01_05_204.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved decreasing function that decreases until it comes close the x axis without touching it. There is no x intercept and the y intercept is at the point (0, 1). Another point of the graph is at (-1, 4).\" \/><\/span><\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572553787\" class=\"exercise\">\r\n<div id=\"fs-id1170572553789\" class=\"textbox\"><span id=\"fs-id1170572553791\"><strong>9.\u00a0<\/strong><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202722\/CNX_Calc_Figure_01_05_205.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that increases until it comes close the x axis without touching it. There is no x intercept and the y intercept is at the point (0, -1). Another point of the graph is at (-1, -3).\" \/><\/span>\r\n[reveal-answer q=\"fs-id1170572553809\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572553809\"]\r\n<p id=\"fs-id1170572553809\">e<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572553814\" class=\"exercise\">\r\n<div id=\"fs-id1170572553816\" class=\"textbox\"><span id=\"fs-id1170572553818\"><strong>10.<\/strong><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202725\/CNX_Calc_Figure_01_05_206.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that starts slightly above the x axis and begins increasing rapidly. There is no x intercept and the y intercept is at the point (0, 2). Another point of the graph is at (-1, 1).\" \/><\/span><\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572553841\">For the following exercises (11-17), sketch the graph of the exponential function. Determine the\u00a0<strong>(a)\u00a0<\/strong>domain,\u00a0<strong>(b)\u00a0<\/strong>range, and\u00a0<strong>(c)\u00a0<\/strong>horizontal asymptote.<\/p>\r\n\r\n<div id=\"fs-id1170572553846\" class=\"exercise\">\r\n<div id=\"fs-id1170572553848\" class=\"textbox\">\r\n<p id=\"fs-id1170572553850\"><strong>11.\u00a0<\/strong>[latex]f(x)=e^x+2[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572553893\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572553893\"]\r\n\r\n<span id=\"fs-id1170572553879\"><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202729\/CNX_Calc_Figure_01_05_207.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that starts slightly above the line \u201cy = 2\u201d and begins increasing rapidly. There is no x intercept and the y intercept is at the point (0, 3).\" \/><\/span>\r\n<p id=\"fs-id1170572553893\">Domain: all real numbers, Range: [latex](2,\\infty)[\/latex], Horizontal asymptote at [latex]y=2[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572553923\" class=\"exercise\">\r\n<div id=\"fs-id1170572553925\" class=\"textbox\">\r\n<p id=\"fs-id1170572553927\"><strong>12.\u00a0<\/strong>[latex]f(x)=\u22122^x[\/latex]<\/p>\r\n[reveal-answer q=\"3872299\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"3872299\"]\r\n\r\n<span id=\"fs-id1170572242925\"><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202731\/CNX_Calc_Figure_01_05_208.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a function that starts slightly below the x axis and begins decreasing rapidly in a curve. There is no x intercept and y intercept is at the point (0, -1).\" \/><\/span>\r\n\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572242973\" class=\"exercise\">\r\n<div id=\"fs-id1170572242975\" class=\"textbox\">\r\n<p id=\"fs-id1170572242977\"><strong>13.\u00a0<\/strong>[latex]f(x)=3^{x+1}[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572243022\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572243022\"]\r\n\r\n<span id=\"fs-id1170572243004\"><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202734\/CNX_Calc_Figure_01_05_209.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that starts slightly above the x axis and begins increasing rapidly. There is no x intercept and the y intercept is at the point (0, 3). Another point of the graph is at (-1, 1).\" \/><\/span>\r\n<p id=\"fs-id1170572243022\">Domain: all real numbers, Range: [latex](0,\\infty)[\/latex], Horizontal asymptote at [latex]y=0[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572243051\" class=\"exercise\">\r\n<div id=\"fs-id1170572243053\" class=\"textbox\">\r\n<p id=\"fs-id1170572243055\"><strong>14.\u00a0<\/strong>[latex]f(x)=4^x-1[\/latex]<\/p>\r\n[reveal-answer q=\"8076641\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"8076641\"]\r\n\r\n<span id=\"fs-id1170572243084\"><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202738\/CNX_Calc_Figure_01_05_210.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that starts slightly above the line \u201cy = -1\u201d and begins increasing rapidly. There x intercept and the y intercept are both at the origin. Another point of the graph is at (1, 3).\" \/><\/span>\r\n\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572243129\" class=\"exercise\">\r\n<div id=\"fs-id1170572243131\" class=\"textbox\">\r\n<p id=\"fs-id1170572243133\"><strong>15.\u00a0<\/strong>[latex]f(x)=1-2^{\u2212x}[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572163728\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572163728\"]\r\n\r\n<span id=\"fs-id1170572163713\"><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202741\/CNX_Calc_Figure_01_05_211.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that increases until it comes close the line \u201cy = 1\u201d without touching it. There x intercept and the y intercept are both at the origin. Another point of the graph is at (-1, -1).\" \/><\/span>\r\n<p id=\"fs-id1170572163728\">Domain: all real numbers, Range: [latex](\u2212\\infty ,1)[\/latex], Horizontal asymptote at [latex]y=1[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572163759\" class=\"exercise\">\r\n<div id=\"fs-id1170572163761\" class=\"textbox\">\r\n<p id=\"fs-id1170572163763\"><strong>16.\u00a0<\/strong>[latex]f(x)=5^{x+1}+2[\/latex]<\/p>\r\n[reveal-answer q=\"30054487\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"30054487\"]\r\n\r\n&nbsp;\r\n\r\n<span id=\"fs-id1170572163798\"><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202744\/CNX_Calc_Figure_01_05_212.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -1 to 9. The graph is of a curved increasing function that starts slightly above the line \u201cy = 2\u201d and begins increasing rapidly. There is no x intercept and the y intercept is at the point (0, 7). Another point of the graph is at (-1, 3).\" \/><\/span>\r\n\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572163842\" class=\"exercise\">\r\n<div id=\"fs-id1170572163844\" class=\"textbox\">\r\n<p id=\"fs-id1170572163846\"><strong>17.\u00a0<\/strong>[latex]f(x)=e^{\u2212x}-1[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572163893\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572163893\"]\r\n\r\n<span id=\"fs-id1170572163879\"><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202748\/CNX_Calc_Figure_01_05_213.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved decreasing function that decreases until it comes close the line \u201cy = -1\u201d without touching it. There x intercept and the y intercept are both at the origin. There is an approximate point on the graph at (-1, 1.7).\" \/><\/span>\r\n<p id=\"fs-id1170572163893\">Domain: all real numbers, Range: [latex](-1,\\infty )[\/latex], Horizontal asymptote at [latex]y=-1[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572163923\">For the following exercises (18-25), write the equation in equivalent exponential form.<\/p>\r\n\r\n<div id=\"fs-id1170572163926\" class=\"exercise\">\r\n<div id=\"fs-id1170572163928\" class=\"textbox\">\r\n<p id=\"fs-id1170572163930\"><strong>18.\u00a0<\/strong>[latex]\\log_3 81=4[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572218452\" class=\"exercise\">\r\n<div id=\"fs-id1170572218455\" class=\"textbox\">\r\n<p id=\"fs-id1170572218457\"><strong>19.\u00a0<\/strong>[latex]\\log_8 2=\\dfrac{1}{3}[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572218480\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572218480\"]\r\n<p id=\"fs-id1170572218480\">[latex]8^{1\/3}=2[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572218502\" class=\"exercise\">\r\n<div id=\"fs-id1170572218504\" class=\"textbox\">\r\n<p id=\"fs-id1170572218506\"><strong>20.\u00a0<\/strong>[latex]\\log_5 1=0[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572218542\" class=\"exercise\">\r\n<div id=\"fs-id1170572218544\" class=\"textbox\">\r\n<p id=\"fs-id1170572218546\"><strong>21.\u00a0<\/strong>[latex]\\log_5 25=2[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572218567\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572218567\"]\r\n<p id=\"fs-id1170572218567\">[latex]5^2=25[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572218583\" class=\"exercise\">\r\n<div id=\"fs-id1170572218585\" class=\"textbox\">\r\n<p id=\"fs-id1170572218587\"><strong>22.\u00a0<\/strong>[latex]\\log 0.1=-1[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572218621\" class=\"exercise\">\r\n<div id=\"fs-id1170572218623\" class=\"textbox\">\r\n<p id=\"fs-id1170572218626\"><strong>23.\u00a0<\/strong>[latex]\\ln\\left(\\dfrac{1}{e^3}\\right)=-3[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572218656\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572218656\"]\r\n<p id=\"fs-id1170572218656\">[latex]e^{-3}=\\frac{1}{e^3}[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572168644\" class=\"exercise\">\r\n<div id=\"fs-id1170572168646\" class=\"textbox\">\r\n<p id=\"fs-id1170572168649\"><strong>24.\u00a0<\/strong>[latex]\\log_9 3=0.5[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572168686\" class=\"exercise\">\r\n<div id=\"fs-id1170572168688\" class=\"textbox\">\r\n<p id=\"fs-id1170572168690\"><strong>25.\u00a0<\/strong>[latex]\\ln 1=0[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572168706\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572168706\"]\r\n<p id=\"fs-id1170572168706\">[latex]e^0=1[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572168722\">For the following exercises (26-35), write the equation in equivalent logarithmic form.<\/p>\r\n\r\n<div id=\"fs-id1170572168725\" class=\"exercise\">\r\n<div id=\"fs-id1170572168728\" class=\"textbox\">\r\n<p id=\"fs-id1170572168730\"><strong>26.\u00a0<\/strong>[latex]2^3=8[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572168766\" class=\"exercise\">\r\n<div id=\"fs-id1170572168768\" class=\"textbox\">\r\n<p id=\"fs-id1170572168770\"><strong>27.\u00a0<\/strong>[latex]4^{-2}=\\dfrac{1}{16}[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572168793\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572168793\"]\r\n<p id=\"fs-id1170572168793\">[latex]\\log_4(\\frac{1}{16})=-2[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572168823\" class=\"exercise\">\r\n<div id=\"fs-id1170572168825\" class=\"textbox\">\r\n<p id=\"fs-id1170572168827\"><strong>28.\u00a0<\/strong>[latex]10^2=100[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572168860\" class=\"exercise\">\r\n<div id=\"fs-id1170572168862\" class=\"textbox\">\r\n<p id=\"fs-id1170572168865\"><strong>29.\u00a0<\/strong>[latex]9^0=1[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572168882\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572168882\"]\r\n<p id=\"fs-id1170572168882\">[latex]\\log_9 1=0[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572218179\" class=\"exercise\">\r\n<div id=\"fs-id1170572218181\" class=\"textbox\">\r\n<p id=\"fs-id1170572218184\"><strong>30.\u00a0<\/strong>[latex]\\left(\\dfrac{1}{3}\\right)^3=\\dfrac{1}{27}[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572218251\" class=\"exercise\">\r\n<div id=\"fs-id1170572218253\" class=\"textbox\">\r\n<p id=\"fs-id1170572218255\"><strong>31.\u00a0<\/strong>[latex]\\sqrt[3]{64}=4[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572218273\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572218273\"]\r\n<p id=\"fs-id1170572218273\">[latex]\\log_{64} 4=\\frac{1}{3}[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572218297\" class=\"exercise\">\r\n<div id=\"fs-id1170572218299\" class=\"textbox\">\r\n<p id=\"fs-id1170572218301\"><strong>32.\u00a0<\/strong>[latex]e^x=y[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572218333\" class=\"exercise\">\r\n<div id=\"fs-id1170572218335\" class=\"textbox\">\r\n<p id=\"fs-id1170572218337\"><strong>33.\u00a0<\/strong>[latex]9^y=150[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572218354\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572218354\"]\r\n<p id=\"fs-id1170572218354\">[latex]\\log_9 150=y[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572218373\" class=\"exercise\">\r\n<div id=\"fs-id1170572218376\" class=\"textbox\">\r\n<p id=\"fs-id1170572218378\"><strong>34.\u00a0<\/strong>[latex]b^3=45[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572218414\" class=\"exercise\">\r\n<div id=\"fs-id1170572218416\" class=\"textbox\">\r\n<p id=\"fs-id1170572218418\"><strong>35.\u00a0<\/strong>[latex]4^{-3\/2}=0.125[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572217083\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572217083\"]\r\n<p id=\"fs-id1170572217083\">[latex]\\log_4 0.125=-\\frac{3}{2}[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572217107\">For the following exercises (36-41), sketch the graphs of the logarithmic functions and determine their <strong>(a)<\/strong> domain,\u00a0<strong>(b)\u00a0<\/strong>range, and\u00a0<strong>(c)\u00a0<\/strong>vertical asymptote.<\/p>\r\n\r\n<div id=\"fs-id1170572217112\" class=\"exercise\">\r\n<div id=\"fs-id1170572217114\" class=\"textbox\">\r\n<p id=\"fs-id1170572217116\"><strong>36.\u00a0<\/strong>[latex]f(x)=3+\\ln x[\/latex]<\/p>\r\n[reveal-answer q=\"377200987\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"377200987\"]\r\n\r\n<span id=\"fs-id1170572217140\"><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202751\/CNX_Calc_Figure_01_05_214.jpg\" alt=\"An image of a graph. The x axis runs from -10 to 10 and the y axis runs from -10 to 10. The graph is of an increasing curved function which starts slightly to the right of the y axis. There is no y intercept and the x intercept is at the approximate point (0.05, 0). Another point on the graph is (1, 3).\" \/><\/span>\r\n\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572217209\" class=\"exercise\">\r\n<div id=\"fs-id1170572217211\" class=\"textbox\">\r\n<p id=\"fs-id1170572217213\"><strong>37.\u00a0<\/strong>[latex]f(x)=\\ln(x-1)[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572217264\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572217264\"]\r\n\r\n<span id=\"fs-id1170572217249\"><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202754\/CNX_Calc_Figure_01_05_215.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of an increasing curved function which starts slightly to the right of the vertical line \u201cx = 1\u201d. There is no y intercept and the x intercept is at the approximate point (2, 0).\" \/><\/span>\r\n<p id=\"fs-id1170572217264\">Domain: [latex](1,\\infty ),[\/latex] Range: [latex](\u2212\\infty ,\\infty)[\/latex], Vertical asymptote at [latex]x=1[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572217315\" class=\"exercise\">\r\n<div id=\"fs-id1170572217317\" class=\"textbox\">\r\n<p id=\"fs-id1170572286631\"><strong>38.\u00a0<\/strong>[latex]f(x)=\\ln(\u2212x)[\/latex]<\/p>\r\n[reveal-answer q=\"9880012\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"9880012\"]\r\n\r\n<span id=\"fs-id1170572286662\"><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202758\/CNX_Calc_Figure_01_05_216.jpg\" alt=\"An image of a graph. The x axis runs from -9 to 1 and the y axis runs from -5 to 5. The graph is a curved decreasing function that approaches the y axis without touching it. There is no y intercept and the x intercept is at (-1, 0).\" \/><\/span>\r\n\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572286731\" class=\"exercise\">\r\n<div id=\"fs-id1170572286734\" class=\"textbox\">\r\n<p id=\"fs-id1170572286736\"><strong>39.\u00a0<\/strong>[latex]f(x)=1-\\ln x[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572286777\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572286777\"]\r\n\r\n<span id=\"fs-id1170572286760\"><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202801\/CNX_Calc_Figure_01_05_217.jpg\" alt=\"An image of a graph. The x axis runs from -1 to 9 and the y axis runs from -5 to 5. The graph is of a decreasing curved function which starts slightly to the right of the y axis. There is no y intercept and the x intercept is at the point (e, 0).\" \/><\/span>\r\n\r\nDomain: [latex](0,\\infty)[\/latex], Range: [latex](\u2212\\infty ,\\infty)[\/latex], Vertical asymptote at [latex]x=0[\/latex]\r\n\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572286826\" class=\"exercise\">\r\n<div id=\"fs-id1170572286828\" class=\"textbox\">\r\n<p id=\"fs-id1170572286831\"><strong>40.\u00a0<\/strong>[latex]f(x)=\\log x-1[\/latex]<\/p>\r\n[reveal-answer q=\"4990388\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"4990388\"]\r\n\r\n<span id=\"fs-id1170572286855\"><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202804\/CNX_Calc_Figure_01_05_218.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 20 and the y axis runs from -10 to 5. The graph is of an increasing curved function which starts slightly to the right of the y axis. There is no y intercept and the x intercept is at the point (10, 0).\" \/><\/span>\r\n\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572452755\" class=\"exercise\">\r\n<div id=\"fs-id1170572452757\" class=\"textbox\">\r\n<p id=\"fs-id1170572452759\"><strong>41.\u00a0<\/strong>[latex]f(x)=\\ln(x+1)[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572452810\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572452810\"]\r\n\r\n<span id=\"fs-id1170572452796\"><img class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202808\/CNX_Calc_Figure_01_05_219.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of an increasing curved function which starts slightly to the right of the vertical line \u201cx = -1\u201d. There y intercept and the x intercept are both at the origin.\" \/><\/span>\r\n\r\nDomain: [latex](-1,\\infty)[\/latex], Range: [latex](\u2212\\infty ,\\infty)[\/latex], Vertical asymptote at [latex]x=-1[\/latex]\r\n\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572452859\">For the following exercises (42-47), use properties of logarithms to write the expressions as a sum, difference, and\/or product of logarithms.<\/p>\r\n\r\n<div id=\"fs-id1170572452864\" class=\"exercise\">\r\n<div id=\"fs-id1170572452866\" class=\"textbox\">\r\n<p id=\"fs-id1170572452868\"><strong>42.\u00a0<\/strong>[latex]\\log x^4y[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572452904\" class=\"exercise\">\r\n<div id=\"fs-id1170572452906\" class=\"textbox\">\r\n<p id=\"fs-id1170572452909\"><strong>43.\u00a0<\/strong>[latex]\\log_3 \\dfrac{9a^3}{b}[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572452934\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572452934\"]\r\n<p id=\"fs-id1170572452934\">[latex]2+3\\log_3 a-\\log_3 b[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572452966\" class=\"exercise\">\r\n<div id=\"fs-id1170572452968\" class=\"textbox\">\r\n<p id=\"fs-id1170572452970\"><strong>44.\u00a0<\/strong>[latex]\\ln a\\sqrt[3]{b}[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572546157\" class=\"exercise\">\r\n<div id=\"fs-id1170572546159\" class=\"textbox\">\r\n<p id=\"fs-id1170572546161\"><strong>45.\u00a0<\/strong>[latex]\\log_5 \\sqrt{125xy^3}[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572546187\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572546187\"]\r\n<p id=\"fs-id1170572546187\">[latex]\\frac{3}{2}+\\frac{1}{2}\\log_5 x+\\frac{3}{2}\\log_5 y[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572546231\" class=\"exercise\">\r\n<div id=\"fs-id1170572546233\" class=\"textbox\">\r\n<p id=\"fs-id1170572546235\"><strong>46.\u00a0<\/strong>[latex]\\log_4 \\dfrac{\\sqrt[3]{xy}}{64}[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572546304\" class=\"exercise\">\r\n<div id=\"fs-id1170572546306\" class=\"textbox\">\r\n<p id=\"fs-id1170572546308\"><strong>47.\u00a0<\/strong>[latex]\\ln\\left(\\dfrac{6}{\\sqrt{e^3}}\\right)[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572546336\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572546336\"]\r\n<p id=\"fs-id1170572546336\">[latex]-\\frac{3}{2}+\\ln 6[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572546356\">For the following exercises (48-55), solve the exponential equation exactly.<\/p>\r\n\r\n<div id=\"fs-id1170572546359\" class=\"exercise\">\r\n<div id=\"fs-id1170572546361\" class=\"textbox\">\r\n<p id=\"fs-id1170572546363\"><strong>48.\u00a0<\/strong>[latex]5^x=125[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572479927\" class=\"exercise\">\r\n<div id=\"fs-id1170572479929\" class=\"textbox\">\r\n<p id=\"fs-id1170572479931\"><strong>49.\u00a0<\/strong>[latex]e^{3x}-15=0[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572479956\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572479956\"]\r\n<p id=\"fs-id1170572479956\">[latex]\\frac{\\ln 15}{3}[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572479971\" class=\"exercise\">\r\n<div id=\"fs-id1170572479973\" class=\"textbox\">\r\n<p id=\"fs-id1170572479975\"><strong>50.\u00a0<\/strong>[latex]8^x=4[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572480004\" class=\"exercise\">\r\n<div id=\"fs-id1170572480006\" class=\"textbox\">\r\n<p id=\"fs-id1170572480008\"><strong>51.\u00a0<\/strong>[latex]4^{x+1}-32=0[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572480035\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572480035\"]\r\n<p id=\"fs-id1170572480035\">[latex]\\frac{3}{2}[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572480046\" class=\"exercise\">\r\n<div id=\"fs-id1170572480049\" class=\"textbox\">\r\n<p id=\"fs-id1170572480051\"><strong>52.\u00a0<\/strong>[latex]3^{x\/14}=\\dfrac{1}{10}[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572480100\" class=\"exercise\">\r\n<div id=\"fs-id1170572480102\" class=\"textbox\">\r\n<p id=\"fs-id1170572480104\"><strong>53.\u00a0<\/strong>[latex]10^x=7.21[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572480122\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572480122\"]\r\n<p id=\"fs-id1170572480122\">[latex]\\log 7.21[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572480133\" class=\"exercise\">\r\n<div id=\"fs-id1170572480135\" class=\"textbox\">\r\n<p id=\"fs-id1170572480137\"><strong>54.\u00a0<\/strong>[latex]4\u00b72^{3x}-20=0[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572480186\" class=\"exercise\">\r\n<div id=\"fs-id1170572543576\" class=\"textbox\">\r\n<p id=\"fs-id1170572543578\"><strong>55.\u00a0<\/strong>[latex]7^{3x-2}=11[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572543602\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572543602\"]\r\n<p id=\"fs-id1170572543602\">[latex]\\frac{2}{3}+\\frac{\\log 11}{3\\log 7}[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572543630\">For the following exercises (56-63), solve the logarithmic equation exactly, if possible.<\/p>\r\n\r\n<div id=\"fs-id1170572543633\" class=\"exercise\">\r\n<div id=\"fs-id1170572543636\" class=\"textbox\">\r\n<p id=\"fs-id1170572543638\"><strong>56.\u00a0<\/strong>[latex]\\log_3 x=0[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572543671\" class=\"exercise\">\r\n<div id=\"fs-id1170572543673\" class=\"textbox\">\r\n<p id=\"fs-id1170572543675\"><strong>57.\u00a0<\/strong>[latex]\\log_5 x=-2[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572543696\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572543696\"]\r\n<p id=\"fs-id1170572543696\">[latex]x=\\frac{1}{25}[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572543713\" class=\"exercise\">\r\n<div id=\"fs-id1170572543715\" class=\"textbox\">\r\n<p id=\"fs-id1170572543717\"><strong>58.\u00a0<\/strong>[latex]\\log_4 (x+5)=0[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572543761\" class=\"exercise\">\r\n<div id=\"fs-id1170572543763\" class=\"textbox\">\r\n<p id=\"fs-id1170572543765\"><strong>59.\u00a0<\/strong>[latex]\\log(2x-7)=0[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572543794\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572543794\"]\r\n<p id=\"fs-id1170572543794\">[latex]x=4[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572543807\" class=\"exercise\">\r\n<div id=\"fs-id1170572543809\" class=\"textbox\">\r\n<p id=\"fs-id1170572543811\"><strong>60.\u00a0<\/strong>[latex]\\ln\\sqrt{x+3}=2[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572088346\" class=\"exercise\">\r\n<div id=\"fs-id1170572088348\" class=\"textbox\">\r\n<p id=\"fs-id1170572088350\"><strong>61.\u00a0<\/strong>[latex]\\log_6 (x+9)+\\log_6 x=2[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572088391\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572088391\"]\r\n<p id=\"fs-id1170572088391\">[latex]x=3[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572088404\" class=\"exercise\">\r\n<div id=\"fs-id1170572088406\" class=\"textbox\">\r\n<p id=\"fs-id1170572088408\"><strong>62.\u00a0<\/strong>[latex]\\log_4(x+2)-\\log_4(x-1)=0[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572088466\" class=\"exercise\">\r\n<div id=\"fs-id1170572088468\" class=\"textbox\">\r\n<p id=\"fs-id1170572088470\"><strong>63.\u00a0<\/strong>[latex]\\ln x+\\ln (x-2)=\\ln 4[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170571120347\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170571120347\"]\r\n<p id=\"fs-id1170571120347\">[latex]1+\\sqrt{5}[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572088504\">For the following exercises (64-69), use the change-of-base formula and either base 10 or base [latex]e[\/latex] to evaluate the given expressions. Answer in exact form and in approximate form, rounding to four decimal places.<\/p>\r\n\r\n<div id=\"fs-id1170572088513\" class=\"exercise\">\r\n<div id=\"fs-id1170572088515\" class=\"textbox\">\r\n<p id=\"fs-id1170572088517\"><strong>64.\u00a0<\/strong>[latex]\\log_5 47[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572088562\" class=\"exercise\">\r\n<div id=\"fs-id1170572088564\" class=\"textbox\">\r\n<p id=\"fs-id1170572088566\"><strong>65.\u00a0<\/strong>[latex]\\log_7 82[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572088582\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572088582\"]\r\n<p id=\"fs-id1170572088582\">[latex]\\frac{\\ln 82}{\\ln 7} \\approx 2.2646[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572227257\" class=\"exercise\">\r\n<div id=\"fs-id1170572227259\" class=\"textbox\">\r\n<p id=\"fs-id1170572227261\"><strong>66.\u00a0<\/strong>[latex]\\log_6 103[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572227306\" class=\"exercise\">\r\n<div id=\"fs-id1170572227308\" class=\"textbox\">\r\n<p id=\"fs-id1170572227310\"><strong>67.\u00a0<\/strong>[latex]\\log_{0.5} 211[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572227327\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572227327\"]\r\n<p id=\"fs-id1170572227327\">[latex]\\frac{\\ln 211}{\\ln 0.5} \\approx -7.7211[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572227358\" class=\"exercise\">\r\n<div id=\"fs-id1170572227360\" class=\"textbox\">\r\n<p id=\"fs-id1170572227362\"><strong>68.\u00a0<\/strong>[latex]{\\text{log}}_{2}\\pi [\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572227407\" class=\"exercise\">\r\n<div id=\"fs-id1170572227409\" class=\"textbox\">\r\n<p id=\"fs-id1170572227411\"><strong>69.\u00a0<\/strong>[latex]\\log_{0.2} 0.452[\/latex]<\/p>\r\n[reveal-answer q=\"fs-id1170572227428\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572227428\"]\r\n<p id=\"fs-id1170572227428\">[latex]\\frac{\\ln 0.452}{\\ln 0.2} \\approx 0.4934[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572227457\" class=\"exercise\">\r\n<div id=\"fs-id1170572227459\" class=\"textbox\">\r\n<p id=\"fs-id1170572227461\"><strong>70.\u00a0<\/strong>Rewrite the following expressions in terms of exponentials and simplify.<\/p>\r\n<p id=\"fs-id1170572227465\">a. [latex]2\\cosh(\\ln x)[\/latex]<\/p>\r\nb. [latex]\\cosh 4x+\\sinh 4x[\/latex]\r\n\r\nc. [latex]\\cosh 2x-\\sinh 2x[\/latex]\r\n\r\nd. [latex]\\ln(\\cosh x+\\sinh x)+\\ln(\\cosh x-\\sinh x)[\/latex]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572230541\" class=\"exercise\">\r\n<div id=\"fs-id1170572230543\" class=\"textbox\">\r\n<p id=\"fs-id1170572230545\"><strong>71. [T]<\/strong> The number of bacteria [latex]N[\/latex]\u00a0in a culture after [latex]t[\/latex] days can be modeled by the function [latex]N(t)=1300\u00b72^{t\/4}[\/latex]. Find the number of bacteria present after 15 days.<\/p>\r\n[reveal-answer q=\"fs-id1170572230605\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572230605\"]\r\n<p id=\"fs-id1170572230605\">[latex]\\approx 17,491[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572230620\" class=\"exercise\">\r\n<div id=\"fs-id1170572230622\" class=\"textbox\">\r\n<p id=\"fs-id1170572230624\"><strong>72. [T]<\/strong> The demand [latex]D[\/latex] (in millions of barrels) for oil in an oil-rich country is given by the function [latex]D(p)=150\u00b72.7^{-0.25p}[\/latex], where [latex]p[\/latex] is the price (in dollars) of a barrel of oil. Find the amount of oil demanded (to the nearest million barrels) when the price is between $15 and $20.<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572230690\" class=\"exercise\">\r\n<div id=\"fs-id1170572230692\" class=\"textbox\">\r\n<p id=\"fs-id1170572230695\"><strong>73. [T]<\/strong> The accumulated amount [latex]A[\/latex] of a $100,000 investment whose interest compounds continuously for [latex]t[\/latex] years is given by [latex]A(t)=100,000\u00b7e^{0.055t}[\/latex]. Find the amount [latex]A[\/latex] accumulated in 5 years.<\/p>\r\n[reveal-answer q=\"fs-id1170572472846\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572472846\"]\r\n<p id=\"fs-id1170572472846\">Approximately $131,653 is accumulated in 5 years.<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572472851\" class=\"exercise\">\r\n<div id=\"fs-id1170572472853\" class=\"textbox\">\r\n<p id=\"fs-id1170572472855\"><strong>74. [T]<\/strong> An investment is compounded monthly, quarterly, or yearly and is given by the function [latex]A=P\\left(1+\\frac{j}{n}\\right)^{nt}[\/latex], where [latex]A[\/latex] is the value of the investment at time [latex]t, \\, P[\/latex] is the initial principle that was invested, [latex]j[\/latex] is the annual interest rate, and [latex]n[\/latex] is the number of time the interest is compounded per year. Given a yearly interest rate of 3.5% and an initial principle of $100,000, find the amount [latex]A[\/latex] accumulated in 5 years for interest that is compounded<strong> (a)<\/strong> daily, <strong>(b)<\/strong> monthly, <strong>(c)<\/strong> quarterly, and <strong>(d)<\/strong> yearly.<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572472938\" class=\"exercise\">\r\n<div id=\"fs-id1170572472940\" class=\"textbox\">\r\n<p id=\"fs-id1170572472942\"><strong>75. [T]<\/strong> The concentration of hydrogen ions in a substance is denoted by [latex][\\text{H}^{+}][\/latex], measured in moles per liter. The pH of a substance is defined by the logarithmic function [latex]\\text{pH}=\u2212\\log[\\text{H}^{+}][\/latex]. This function is used to measure the acidity of a substance. The pH of water is 7. A substance with a pH less than 7 is an acid, whereas one that has a pH of more than 7 is a base.<\/p>\r\n<strong>(a)<\/strong> Find the pH of the following substances. Round answers to one digit. <strong>(b)<\/strong> Determine whether the substance is an acid or a base.\r\n<ol id=\"fs-id1170572473006\">\r\n \t<li>Eggs: [latex][\\text{H}^{+}]=1.6 \\times 10^{-8}[\/latex] mol\/L<\/li>\r\n \t<li>Beer: [latex][\\text{H}^{+}]=3.16 \\times 10^{-3}[\/latex] mol\/L<\/li>\r\n \t<li>Tomato Juice: [latex][\\text{H}^{+}]=7.94 \\times 10^{-5}[\/latex] mol\/L<\/li>\r\n<\/ol>\r\n[reveal-answer q=\"fs-id1170572296436\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572296436\"]\r\n<p id=\"fs-id1170572296436\">1. a. pH = 8 b. Base<\/p>\r\n2. a. pH = 3 b. Acid\r\n\r\n3. a. pH = 4 b. Acid\r\n\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572296441\" class=\"exercise\">\r\n<div id=\"fs-id1170572296443\" class=\"textbox\">\r\n<p id=\"fs-id1170572296445\"><strong>76. [T]<\/strong> Iodine-131 is a radioactive substance that decays according to the function [latex]Q(t)=Q_0\u00b7e^{-0.08664t}[\/latex], where [latex]Q_0[\/latex] is the initial quantity of a sample of the substance and [latex]t[\/latex] is in days. Determine how long it takes (to the nearest day) for 95% of a quantity to decay.<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572296509\" class=\"exercise\">\r\n<div id=\"fs-id1170572296511\" class=\"textbox\">\r\n<p id=\"fs-id1170572296513\"><strong>77. [T]<\/strong> According to the World Bank, at the end of 2013 ([latex]t=0[\/latex]) the U.S. population was 316 million and was increasing according to the following model:<\/p>\r\n<p id=\"fs-id1170572296531\" style=\"text-align: center;\">[latex]P(t)=316e^{0.0074t}[\/latex],<\/p>\r\n<p id=\"fs-id1170572296560\">where [latex]P[\/latex] is measured in millions of people and [latex]t[\/latex] is measured in years after 2013.<\/p>\r\n\r\n<ol id=\"fs-id1170572296574\" style=\"list-style-type: lower-alpha;\">\r\n \t<li>Based on this model, what will be the population of the United States in 2020?<\/li>\r\n \t<li>Determine when the U.S. population will be twice what it is in 2013.<\/li>\r\n<\/ol>\r\n[reveal-answer q=\"fs-id1170572296591\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572296591\"]\r\n<p id=\"fs-id1170572296591\">a. [latex]\\approx 333[\/latex] million b. 94 years from 2013, or in 2107<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572296604\" class=\"exercise\">\r\n<div id=\"fs-id1170572296606\" class=\"textbox\">\r\n<p id=\"fs-id1170572296608\"><strong>78. [T]<\/strong> The amount [latex]A[\/latex] accumulated after 1000 dollars is invested for [latex]t[\/latex] years at an interest rate of 4% is modeled by the function [latex]A(t)=1000(1.04)^t[\/latex].<\/p>\r\n\r\n<ol id=\"fs-id1170572296659\" style=\"list-style-type: lower-alpha;\">\r\n \t<li>Find the amount accumulated after 5 years and 10 years.<\/li>\r\n \t<li>Determine how long it takes for the original investment to triple.<\/li>\r\n<\/ol>\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572296689\" class=\"exercise\">\r\n<div id=\"fs-id1170572296691\" class=\"textbox\">\r\n<p id=\"fs-id1170572296693\"><strong>79. [T]<\/strong> A bacterial colony grown in a lab is known to double in number in 12 hours. Suppose, initially, there are 1000 bacteria present.<\/p>\r\n\r\n<ol id=\"fs-id1170572212877\" style=\"list-style-type: lower-alpha;\">\r\n \t<li>Use the exponential function [latex]Q=Q_0e^{kt}[\/latex] to determine the value [latex]k[\/latex], which is the growth rate of the bacteria. Round to four decimal places.<\/li>\r\n \t<li>Determine approximately how long it takes for 200,000 bacteria to grow.<\/li>\r\n<\/ol>\r\n[reveal-answer q=\"fs-id1170572212922\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572212922\"]\r\n<p id=\"fs-id1170572212922\">a. [latex]k \\approx 0.0578[\/latex] b. [latex]\\approx 92[\/latex] hours<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572212944\" class=\"exercise\">\r\n<div id=\"fs-id1170572212946\" class=\"textbox\">\r\n<p id=\"fs-id1170572212949\"><strong>80. [T]<\/strong> The rabbit population on a game reserve doubles every 6 months. Suppose there were 120 rabbits initially.<\/p>\r\n\r\n<ol id=\"fs-id1170572212957\" style=\"list-style-type: lower-alpha;\">\r\n \t<li>Use the exponential function [latex]P=P_{0} a^{t}[\/latex] to determine the growth rate constant [latex]a[\/latex]. Round to four decimal places.<\/li>\r\n \t<li>Use the function in part (a) to determine approximately how long it takes for the rabbit population to reach 3500.<\/li>\r\n<\/ol>\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572213021\" class=\"exercise\">\r\n<div id=\"fs-id1170572213023\" class=\"textbox\">\r\n<p id=\"fs-id1170572213025\"><strong>81. [T]<\/strong> The 1906 earthquake in San Francisco had a magnitude of 8.3 on the Richter scale. At the same time, in Japan, an earthquake with magnitude 4.9 caused only minor damage. Approximately how much more energy was released by the San Francisco earthquake than by the Japanese earthquake?<\/p>\r\n[reveal-answer q=\"fs-id1170572213038\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572213038\"]\r\n<p id=\"fs-id1170572213038\">The San Francisco earthquake had [latex]10^{3.4}[\/latex] or [latex]\\approx 2512[\/latex] times more energy than the Japan earthquake.<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>","rendered":"<p id=\"fs-id1170572545888\">For the following exercises (1-4), evaluate the given exponential functions as indicated, accurate to two significant digits after the decimal.<\/p>\n<div id=\"fs-id1170572545893\" class=\"exercise\">\n<div id=\"fs-id1170572545895\" class=\"textbox\">\n<p id=\"fs-id1170572545897\"><strong>1.\u00a0<\/strong>[latex]f(x)=5^x[\/latex]<\/p>\n<p>a. [latex]x=3[\/latex]<\/p>\n<p>b. [latex]x=\\dfrac{1}{2}[\/latex]<\/p>\n<p>c. [latex]x=\\sqrt{2}[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572545955\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572545955\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572545955\">a. 125 b. 2.24 c. 9.74<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572545960\" class=\"exercise\">\n<div id=\"fs-id1170572545962\" class=\"textbox\">\n<p id=\"fs-id1170572545965\"><strong>2.\u00a0<\/strong>[latex]f(x)=(0.3)^x[\/latex]<\/p>\n<p>a. [latex]x=-1[\/latex]<\/p>\n<p>b. [latex]x=4[\/latex]<\/p>\n<p>c. [latex]x=-1.5[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572546032\" class=\"exercise\">\n<div id=\"fs-id1170572546034\" class=\"textbox\">\n<p id=\"fs-id1170572546036\"><strong>3.\u00a0<\/strong>[latex]f(x)=10^x[\/latex]<\/p>\n<p>a. [latex]x=-2[\/latex]<\/p>\n<p>b. [latex]x=4[\/latex]<\/p>\n<p>c. [latex]x=\\dfrac{5}{3}[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572358150\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572358150\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572358150\">a. 0.01 b. 10,000 c. 46.42<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572358156\" class=\"exercise\">\n<div id=\"fs-id1170572358158\" class=\"textbox\">\n<p id=\"fs-id1170572358160\"><strong>4.\u00a0<\/strong>[latex]f(x)=e^x[\/latex]<\/p>\n<p>a. [latex]x=2[\/latex]<\/p>\n<p>b. [latex]x=-3.2[\/latex]<\/p>\n<p>c. [latex]x=\\pi[\/latex]<\/p>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572358219\">For the following exercises (5-10), match the exponential equation to the correct graph.<\/p>\n<ol id=\"fs-id1170572358222\" style=\"list-style-type: lower-alpha;\">\n<li>[latex]y=4^{\u2212x}[\/latex]<\/li>\n<li>[latex]y=3^{x-1}[\/latex]<\/li>\n<li>[latex]y=2^{x+1}[\/latex]<\/li>\n<li>[latex]y=\\left(\\dfrac{1}{2}\\right)^x+2[\/latex]<\/li>\n<li>[latex]y=\u22123^{\u2212x}[\/latex]<\/li>\n<li>[latex]y=1-5^x[\/latex]<\/li>\n<\/ol>\n<div id=\"fs-id1170572358351\" class=\"exercise\">\n<div id=\"fs-id1170572358353\" class=\"textbox\"><span id=\"fs-id1170572358359\"><strong>5.\u00a0<\/strong><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202709\/CNX_Calc_Figure_01_05_201.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -2 to 8. The graph is of a decreasing curved function. The function decreases until it approaches the line \u201cy = 2\u201d, but never touches this line. The y intercept is at the point (0, 3) and there is no x intercept.\" \/><\/span><\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572553700\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572553700\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572553700\">d<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572553705\" class=\"exercise\">\n<div id=\"fs-id1170572553707\" class=\"textbox\"><span id=\"fs-id1170572553713\"><strong>6.\u00a0<\/strong><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202713\/CNX_Calc_Figure_01_05_202.jpg\" alt=\"An image of a graph. The x axis runs from -4 to 4 and the y axis runs from -9 to 2. The graph is of a function that starts slightly below the line \u201cy = 1\u201d and begins decreasing rapidly in a curve. The x intercept and y intercept are both at the origin.\" \/><\/span><\/div>\n<\/div>\n<div id=\"fs-id1170572553732\" class=\"exercise\">\n<div id=\"fs-id1170572553734\" class=\"textbox\">\n<p><span id=\"fs-id1170572553737\"><strong>7.\u00a0<\/strong><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202716\/CNX_Calc_Figure_01_05_203.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that starts slightly above the x axis and begins increasing rapidly. There is no x intercept and the y intercept is at the point (0, (1\/3)). Another point of the graph is at (1, 1).\" \/><\/span><\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572553754\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572553754\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572553754\">b<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572553760\" class=\"exercise\">\n<div id=\"fs-id1170572553762\" class=\"textbox\"><span id=\"fs-id1170572553764\"><strong>8.\u00a0<\/strong><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202719\/CNX_Calc_Figure_01_05_204.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved decreasing function that decreases until it comes close the x axis without touching it. There is no x intercept and the y intercept is at the point (0, 1). Another point of the graph is at (-1, 4).\" \/><\/span><\/div>\n<\/div>\n<div id=\"fs-id1170572553787\" class=\"exercise\">\n<div id=\"fs-id1170572553789\" class=\"textbox\"><span id=\"fs-id1170572553791\"><strong>9.\u00a0<\/strong><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202722\/CNX_Calc_Figure_01_05_205.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that increases until it comes close the x axis without touching it. There is no x intercept and the y intercept is at the point (0, -1). Another point of the graph is at (-1, -3).\" \/><\/span><\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572553809\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572553809\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572553809\">e<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572553814\" class=\"exercise\">\n<div id=\"fs-id1170572553816\" class=\"textbox\"><span id=\"fs-id1170572553818\"><strong>10.<\/strong><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202725\/CNX_Calc_Figure_01_05_206.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that starts slightly above the x axis and begins increasing rapidly. There is no x intercept and the y intercept is at the point (0, 2). Another point of the graph is at (-1, 1).\" \/><\/span><\/div>\n<\/div>\n<p id=\"fs-id1170572553841\">For the following exercises (11-17), sketch the graph of the exponential function. Determine the\u00a0<strong>(a)\u00a0<\/strong>domain,\u00a0<strong>(b)\u00a0<\/strong>range, and\u00a0<strong>(c)\u00a0<\/strong>horizontal asymptote.<\/p>\n<div id=\"fs-id1170572553846\" class=\"exercise\">\n<div id=\"fs-id1170572553848\" class=\"textbox\">\n<p id=\"fs-id1170572553850\"><strong>11.\u00a0<\/strong>[latex]f(x)=e^x+2[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572553893\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572553893\" class=\"hidden-answer\" style=\"display: none\">\n<p><span id=\"fs-id1170572553879\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202729\/CNX_Calc_Figure_01_05_207.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that starts slightly above the line \u201cy = 2\u201d and begins increasing rapidly. There is no x intercept and the y intercept is at the point (0, 3).\" \/><\/span><\/p>\n<p id=\"fs-id1170572553893\">Domain: all real numbers, Range: [latex](2,\\infty)[\/latex], Horizontal asymptote at [latex]y=2[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572553923\" class=\"exercise\">\n<div id=\"fs-id1170572553925\" class=\"textbox\">\n<p id=\"fs-id1170572553927\"><strong>12.\u00a0<\/strong>[latex]f(x)=\u22122^x[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"q3872299\">Show Solution<\/span><\/p>\n<div id=\"q3872299\" class=\"hidden-answer\" style=\"display: none\">\n<p><span id=\"fs-id1170572242925\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202731\/CNX_Calc_Figure_01_05_208.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a function that starts slightly below the x axis and begins decreasing rapidly in a curve. There is no x intercept and y intercept is at the point (0, -1).\" \/><\/span><\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572242973\" class=\"exercise\">\n<div id=\"fs-id1170572242975\" class=\"textbox\">\n<p id=\"fs-id1170572242977\"><strong>13.\u00a0<\/strong>[latex]f(x)=3^{x+1}[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572243022\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572243022\" class=\"hidden-answer\" style=\"display: none\">\n<p><span id=\"fs-id1170572243004\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202734\/CNX_Calc_Figure_01_05_209.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that starts slightly above the x axis and begins increasing rapidly. There is no x intercept and the y intercept is at the point (0, 3). Another point of the graph is at (-1, 1).\" \/><\/span><\/p>\n<p id=\"fs-id1170572243022\">Domain: all real numbers, Range: [latex](0,\\infty)[\/latex], Horizontal asymptote at [latex]y=0[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572243051\" class=\"exercise\">\n<div id=\"fs-id1170572243053\" class=\"textbox\">\n<p id=\"fs-id1170572243055\"><strong>14.\u00a0<\/strong>[latex]f(x)=4^x-1[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"q8076641\">Show Solution<\/span><\/p>\n<div id=\"q8076641\" class=\"hidden-answer\" style=\"display: none\">\n<p><span id=\"fs-id1170572243084\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202738\/CNX_Calc_Figure_01_05_210.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that starts slightly above the line \u201cy = -1\u201d and begins increasing rapidly. There x intercept and the y intercept are both at the origin. Another point of the graph is at (1, 3).\" \/><\/span><\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572243129\" class=\"exercise\">\n<div id=\"fs-id1170572243131\" class=\"textbox\">\n<p id=\"fs-id1170572243133\"><strong>15.\u00a0<\/strong>[latex]f(x)=1-2^{\u2212x}[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572163728\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572163728\" class=\"hidden-answer\" style=\"display: none\">\n<p><span id=\"fs-id1170572163713\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202741\/CNX_Calc_Figure_01_05_211.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved increasing function that increases until it comes close the line \u201cy = 1\u201d without touching it. There x intercept and the y intercept are both at the origin. Another point of the graph is at (-1, -1).\" \/><\/span><\/p>\n<p id=\"fs-id1170572163728\">Domain: all real numbers, Range: [latex](\u2212\\infty ,1)[\/latex], Horizontal asymptote at [latex]y=1[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572163759\" class=\"exercise\">\n<div id=\"fs-id1170572163761\" class=\"textbox\">\n<p id=\"fs-id1170572163763\"><strong>16.\u00a0<\/strong>[latex]f(x)=5^{x+1}+2[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"q30054487\">Show Solution<\/span><\/p>\n<div id=\"q30054487\" class=\"hidden-answer\" style=\"display: none\">\n<p>&nbsp;<\/p>\n<p><span id=\"fs-id1170572163798\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202744\/CNX_Calc_Figure_01_05_212.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -1 to 9. The graph is of a curved increasing function that starts slightly above the line \u201cy = 2\u201d and begins increasing rapidly. There is no x intercept and the y intercept is at the point (0, 7). Another point of the graph is at (-1, 3).\" \/><\/span><\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572163842\" class=\"exercise\">\n<div id=\"fs-id1170572163844\" class=\"textbox\">\n<p id=\"fs-id1170572163846\"><strong>17.\u00a0<\/strong>[latex]f(x)=e^{\u2212x}-1[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572163893\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572163893\" class=\"hidden-answer\" style=\"display: none\">\n<p><span id=\"fs-id1170572163879\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202748\/CNX_Calc_Figure_01_05_213.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of a curved decreasing function that decreases until it comes close the line \u201cy = -1\u201d without touching it. There x intercept and the y intercept are both at the origin. There is an approximate point on the graph at (-1, 1.7).\" \/><\/span><\/p>\n<p id=\"fs-id1170572163893\">Domain: all real numbers, Range: [latex](-1,\\infty )[\/latex], Horizontal asymptote at [latex]y=-1[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572163923\">For the following exercises (18-25), write the equation in equivalent exponential form.<\/p>\n<div id=\"fs-id1170572163926\" class=\"exercise\">\n<div id=\"fs-id1170572163928\" class=\"textbox\">\n<p id=\"fs-id1170572163930\"><strong>18.\u00a0<\/strong>[latex]\\log_3 81=4[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572218452\" class=\"exercise\">\n<div id=\"fs-id1170572218455\" class=\"textbox\">\n<p id=\"fs-id1170572218457\"><strong>19.\u00a0<\/strong>[latex]\\log_8 2=\\dfrac{1}{3}[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572218480\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572218480\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572218480\">[latex]8^{1\/3}=2[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572218502\" class=\"exercise\">\n<div id=\"fs-id1170572218504\" class=\"textbox\">\n<p id=\"fs-id1170572218506\"><strong>20.\u00a0<\/strong>[latex]\\log_5 1=0[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572218542\" class=\"exercise\">\n<div id=\"fs-id1170572218544\" class=\"textbox\">\n<p id=\"fs-id1170572218546\"><strong>21.\u00a0<\/strong>[latex]\\log_5 25=2[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572218567\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572218567\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572218567\">[latex]5^2=25[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572218583\" class=\"exercise\">\n<div id=\"fs-id1170572218585\" class=\"textbox\">\n<p id=\"fs-id1170572218587\"><strong>22.\u00a0<\/strong>[latex]\\log 0.1=-1[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572218621\" class=\"exercise\">\n<div id=\"fs-id1170572218623\" class=\"textbox\">\n<p id=\"fs-id1170572218626\"><strong>23.\u00a0<\/strong>[latex]\\ln\\left(\\dfrac{1}{e^3}\\right)=-3[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572218656\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572218656\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572218656\">[latex]e^{-3}=\\frac{1}{e^3}[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572168644\" class=\"exercise\">\n<div id=\"fs-id1170572168646\" class=\"textbox\">\n<p id=\"fs-id1170572168649\"><strong>24.\u00a0<\/strong>[latex]\\log_9 3=0.5[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572168686\" class=\"exercise\">\n<div id=\"fs-id1170572168688\" class=\"textbox\">\n<p id=\"fs-id1170572168690\"><strong>25.\u00a0<\/strong>[latex]\\ln 1=0[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572168706\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572168706\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572168706\">[latex]e^0=1[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572168722\">For the following exercises (26-35), write the equation in equivalent logarithmic form.<\/p>\n<div id=\"fs-id1170572168725\" class=\"exercise\">\n<div id=\"fs-id1170572168728\" class=\"textbox\">\n<p id=\"fs-id1170572168730\"><strong>26.\u00a0<\/strong>[latex]2^3=8[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572168766\" class=\"exercise\">\n<div id=\"fs-id1170572168768\" class=\"textbox\">\n<p id=\"fs-id1170572168770\"><strong>27.\u00a0<\/strong>[latex]4^{-2}=\\dfrac{1}{16}[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572168793\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572168793\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572168793\">[latex]\\log_4(\\frac{1}{16})=-2[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572168823\" class=\"exercise\">\n<div id=\"fs-id1170572168825\" class=\"textbox\">\n<p id=\"fs-id1170572168827\"><strong>28.\u00a0<\/strong>[latex]10^2=100[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572168860\" class=\"exercise\">\n<div id=\"fs-id1170572168862\" class=\"textbox\">\n<p id=\"fs-id1170572168865\"><strong>29.\u00a0<\/strong>[latex]9^0=1[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572168882\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572168882\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572168882\">[latex]\\log_9 1=0[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572218179\" class=\"exercise\">\n<div id=\"fs-id1170572218181\" class=\"textbox\">\n<p id=\"fs-id1170572218184\"><strong>30.\u00a0<\/strong>[latex]\\left(\\dfrac{1}{3}\\right)^3=\\dfrac{1}{27}[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572218251\" class=\"exercise\">\n<div id=\"fs-id1170572218253\" class=\"textbox\">\n<p id=\"fs-id1170572218255\"><strong>31.\u00a0<\/strong>[latex]\\sqrt[3]{64}=4[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572218273\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572218273\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572218273\">[latex]\\log_{64} 4=\\frac{1}{3}[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572218297\" class=\"exercise\">\n<div id=\"fs-id1170572218299\" class=\"textbox\">\n<p id=\"fs-id1170572218301\"><strong>32.\u00a0<\/strong>[latex]e^x=y[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572218333\" class=\"exercise\">\n<div id=\"fs-id1170572218335\" class=\"textbox\">\n<p id=\"fs-id1170572218337\"><strong>33.\u00a0<\/strong>[latex]9^y=150[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572218354\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572218354\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572218354\">[latex]\\log_9 150=y[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572218373\" class=\"exercise\">\n<div id=\"fs-id1170572218376\" class=\"textbox\">\n<p id=\"fs-id1170572218378\"><strong>34.\u00a0<\/strong>[latex]b^3=45[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572218414\" class=\"exercise\">\n<div id=\"fs-id1170572218416\" class=\"textbox\">\n<p id=\"fs-id1170572218418\"><strong>35.\u00a0<\/strong>[latex]4^{-3\/2}=0.125[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572217083\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572217083\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572217083\">[latex]\\log_4 0.125=-\\frac{3}{2}[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572217107\">For the following exercises (36-41), sketch the graphs of the logarithmic functions and determine their <strong>(a)<\/strong> domain,\u00a0<strong>(b)\u00a0<\/strong>range, and\u00a0<strong>(c)\u00a0<\/strong>vertical asymptote.<\/p>\n<div id=\"fs-id1170572217112\" class=\"exercise\">\n<div id=\"fs-id1170572217114\" class=\"textbox\">\n<p id=\"fs-id1170572217116\"><strong>36.\u00a0<\/strong>[latex]f(x)=3+\\ln x[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"q377200987\">Show Solution<\/span><\/p>\n<div id=\"q377200987\" class=\"hidden-answer\" style=\"display: none\">\n<p><span id=\"fs-id1170572217140\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202751\/CNX_Calc_Figure_01_05_214.jpg\" alt=\"An image of a graph. The x axis runs from -10 to 10 and the y axis runs from -10 to 10. The graph is of an increasing curved function which starts slightly to the right of the y axis. There is no y intercept and the x intercept is at the approximate point (0.05, 0). Another point on the graph is (1, 3).\" \/><\/span><\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572217209\" class=\"exercise\">\n<div id=\"fs-id1170572217211\" class=\"textbox\">\n<p id=\"fs-id1170572217213\"><strong>37.\u00a0<\/strong>[latex]f(x)=\\ln(x-1)[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572217264\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572217264\" class=\"hidden-answer\" style=\"display: none\">\n<p><span id=\"fs-id1170572217249\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202754\/CNX_Calc_Figure_01_05_215.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of an increasing curved function which starts slightly to the right of the vertical line \u201cx = 1\u201d. There is no y intercept and the x intercept is at the approximate point (2, 0).\" \/><\/span><\/p>\n<p id=\"fs-id1170572217264\">Domain: [latex](1,\\infty ),[\/latex] Range: [latex](\u2212\\infty ,\\infty)[\/latex], Vertical asymptote at [latex]x=1[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572217315\" class=\"exercise\">\n<div id=\"fs-id1170572217317\" class=\"textbox\">\n<p id=\"fs-id1170572286631\"><strong>38.\u00a0<\/strong>[latex]f(x)=\\ln(\u2212x)[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"q9880012\">Show Solution<\/span><\/p>\n<div id=\"q9880012\" class=\"hidden-answer\" style=\"display: none\">\n<p><span id=\"fs-id1170572286662\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202758\/CNX_Calc_Figure_01_05_216.jpg\" alt=\"An image of a graph. The x axis runs from -9 to 1 and the y axis runs from -5 to 5. The graph is a curved decreasing function that approaches the y axis without touching it. There is no y intercept and the x intercept is at (-1, 0).\" \/><\/span><\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572286731\" class=\"exercise\">\n<div id=\"fs-id1170572286734\" class=\"textbox\">\n<p id=\"fs-id1170572286736\"><strong>39.\u00a0<\/strong>[latex]f(x)=1-\\ln x[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572286777\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572286777\" class=\"hidden-answer\" style=\"display: none\">\n<p><span id=\"fs-id1170572286760\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202801\/CNX_Calc_Figure_01_05_217.jpg\" alt=\"An image of a graph. The x axis runs from -1 to 9 and the y axis runs from -5 to 5. The graph is of a decreasing curved function which starts slightly to the right of the y axis. There is no y intercept and the x intercept is at the point (e, 0).\" \/><\/span><\/p>\n<p>Domain: [latex](0,\\infty)[\/latex], Range: [latex](\u2212\\infty ,\\infty)[\/latex], Vertical asymptote at [latex]x=0[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572286826\" class=\"exercise\">\n<div id=\"fs-id1170572286828\" class=\"textbox\">\n<p id=\"fs-id1170572286831\"><strong>40.\u00a0<\/strong>[latex]f(x)=\\log x-1[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"q4990388\">Show Solution<\/span><\/p>\n<div id=\"q4990388\" class=\"hidden-answer\" style=\"display: none\">\n<p><span id=\"fs-id1170572286855\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202804\/CNX_Calc_Figure_01_05_218.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 20 and the y axis runs from -10 to 5. The graph is of an increasing curved function which starts slightly to the right of the y axis. There is no y intercept and the x intercept is at the point (10, 0).\" \/><\/span><\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572452755\" class=\"exercise\">\n<div id=\"fs-id1170572452757\" class=\"textbox\">\n<p id=\"fs-id1170572452759\"><strong>41.\u00a0<\/strong>[latex]f(x)=\\ln(x+1)[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572452810\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572452810\" class=\"hidden-answer\" style=\"display: none\">\n<p><span id=\"fs-id1170572452796\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/2332\/2018\/01\/11202808\/CNX_Calc_Figure_01_05_219.jpg\" alt=\"An image of a graph. The x axis runs from -5 to 5 and the y axis runs from -5 to 5. The graph is of an increasing curved function which starts slightly to the right of the vertical line \u201cx = -1\u201d. There y intercept and the x intercept are both at the origin.\" \/><\/span><\/p>\n<p>Domain: [latex](-1,\\infty)[\/latex], Range: [latex](\u2212\\infty ,\\infty)[\/latex], Vertical asymptote at [latex]x=-1[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572452859\">For the following exercises (42-47), use properties of logarithms to write the expressions as a sum, difference, and\/or product of logarithms.<\/p>\n<div id=\"fs-id1170572452864\" class=\"exercise\">\n<div id=\"fs-id1170572452866\" class=\"textbox\">\n<p id=\"fs-id1170572452868\"><strong>42.\u00a0<\/strong>[latex]\\log x^4y[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572452904\" class=\"exercise\">\n<div id=\"fs-id1170572452906\" class=\"textbox\">\n<p id=\"fs-id1170572452909\"><strong>43.\u00a0<\/strong>[latex]\\log_3 \\dfrac{9a^3}{b}[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572452934\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572452934\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572452934\">[latex]2+3\\log_3 a-\\log_3 b[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572452966\" class=\"exercise\">\n<div id=\"fs-id1170572452968\" class=\"textbox\">\n<p id=\"fs-id1170572452970\"><strong>44.\u00a0<\/strong>[latex]\\ln a\\sqrt[3]{b}[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572546157\" class=\"exercise\">\n<div id=\"fs-id1170572546159\" class=\"textbox\">\n<p id=\"fs-id1170572546161\"><strong>45.\u00a0<\/strong>[latex]\\log_5 \\sqrt{125xy^3}[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572546187\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572546187\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572546187\">[latex]\\frac{3}{2}+\\frac{1}{2}\\log_5 x+\\frac{3}{2}\\log_5 y[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572546231\" class=\"exercise\">\n<div id=\"fs-id1170572546233\" class=\"textbox\">\n<p id=\"fs-id1170572546235\"><strong>46.\u00a0<\/strong>[latex]\\log_4 \\dfrac{\\sqrt[3]{xy}}{64}[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572546304\" class=\"exercise\">\n<div id=\"fs-id1170572546306\" class=\"textbox\">\n<p id=\"fs-id1170572546308\"><strong>47.\u00a0<\/strong>[latex]\\ln\\left(\\dfrac{6}{\\sqrt{e^3}}\\right)[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572546336\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572546336\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572546336\">[latex]-\\frac{3}{2}+\\ln 6[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572546356\">For the following exercises (48-55), solve the exponential equation exactly.<\/p>\n<div id=\"fs-id1170572546359\" class=\"exercise\">\n<div id=\"fs-id1170572546361\" class=\"textbox\">\n<p id=\"fs-id1170572546363\"><strong>48.\u00a0<\/strong>[latex]5^x=125[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572479927\" class=\"exercise\">\n<div id=\"fs-id1170572479929\" class=\"textbox\">\n<p id=\"fs-id1170572479931\"><strong>49.\u00a0<\/strong>[latex]e^{3x}-15=0[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572479956\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572479956\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572479956\">[latex]\\frac{\\ln 15}{3}[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572479971\" class=\"exercise\">\n<div id=\"fs-id1170572479973\" class=\"textbox\">\n<p id=\"fs-id1170572479975\"><strong>50.\u00a0<\/strong>[latex]8^x=4[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572480004\" class=\"exercise\">\n<div id=\"fs-id1170572480006\" class=\"textbox\">\n<p id=\"fs-id1170572480008\"><strong>51.\u00a0<\/strong>[latex]4^{x+1}-32=0[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572480035\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572480035\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572480035\">[latex]\\frac{3}{2}[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572480046\" class=\"exercise\">\n<div id=\"fs-id1170572480049\" class=\"textbox\">\n<p id=\"fs-id1170572480051\"><strong>52.\u00a0<\/strong>[latex]3^{x\/14}=\\dfrac{1}{10}[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572480100\" class=\"exercise\">\n<div id=\"fs-id1170572480102\" class=\"textbox\">\n<p id=\"fs-id1170572480104\"><strong>53.\u00a0<\/strong>[latex]10^x=7.21[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572480122\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572480122\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572480122\">[latex]\\log 7.21[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572480133\" class=\"exercise\">\n<div id=\"fs-id1170572480135\" class=\"textbox\">\n<p id=\"fs-id1170572480137\"><strong>54.\u00a0<\/strong>[latex]4\u00b72^{3x}-20=0[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572480186\" class=\"exercise\">\n<div id=\"fs-id1170572543576\" class=\"textbox\">\n<p id=\"fs-id1170572543578\"><strong>55.\u00a0<\/strong>[latex]7^{3x-2}=11[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572543602\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572543602\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572543602\">[latex]\\frac{2}{3}+\\frac{\\log 11}{3\\log 7}[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572543630\">For the following exercises (56-63), solve the logarithmic equation exactly, if possible.<\/p>\n<div id=\"fs-id1170572543633\" class=\"exercise\">\n<div id=\"fs-id1170572543636\" class=\"textbox\">\n<p id=\"fs-id1170572543638\"><strong>56.\u00a0<\/strong>[latex]\\log_3 x=0[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572543671\" class=\"exercise\">\n<div id=\"fs-id1170572543673\" class=\"textbox\">\n<p id=\"fs-id1170572543675\"><strong>57.\u00a0<\/strong>[latex]\\log_5 x=-2[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572543696\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572543696\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572543696\">[latex]x=\\frac{1}{25}[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572543713\" class=\"exercise\">\n<div id=\"fs-id1170572543715\" class=\"textbox\">\n<p id=\"fs-id1170572543717\"><strong>58.\u00a0<\/strong>[latex]\\log_4 (x+5)=0[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572543761\" class=\"exercise\">\n<div id=\"fs-id1170572543763\" class=\"textbox\">\n<p id=\"fs-id1170572543765\"><strong>59.\u00a0<\/strong>[latex]\\log(2x-7)=0[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572543794\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572543794\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572543794\">[latex]x=4[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572543807\" class=\"exercise\">\n<div id=\"fs-id1170572543809\" class=\"textbox\">\n<p id=\"fs-id1170572543811\"><strong>60.\u00a0<\/strong>[latex]\\ln\\sqrt{x+3}=2[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572088346\" class=\"exercise\">\n<div id=\"fs-id1170572088348\" class=\"textbox\">\n<p id=\"fs-id1170572088350\"><strong>61.\u00a0<\/strong>[latex]\\log_6 (x+9)+\\log_6 x=2[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572088391\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572088391\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572088391\">[latex]x=3[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572088404\" class=\"exercise\">\n<div id=\"fs-id1170572088406\" class=\"textbox\">\n<p id=\"fs-id1170572088408\"><strong>62.\u00a0<\/strong>[latex]\\log_4(x+2)-\\log_4(x-1)=0[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572088466\" class=\"exercise\">\n<div id=\"fs-id1170572088468\" class=\"textbox\">\n<p id=\"fs-id1170572088470\"><strong>63.\u00a0<\/strong>[latex]\\ln x+\\ln (x-2)=\\ln 4[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170571120347\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170571120347\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170571120347\">[latex]1+\\sqrt{5}[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572088504\">For the following exercises (64-69), use the change-of-base formula and either base 10 or base [latex]e[\/latex] to evaluate the given expressions. Answer in exact form and in approximate form, rounding to four decimal places.<\/p>\n<div id=\"fs-id1170572088513\" class=\"exercise\">\n<div id=\"fs-id1170572088515\" class=\"textbox\">\n<p id=\"fs-id1170572088517\"><strong>64.\u00a0<\/strong>[latex]\\log_5 47[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572088562\" class=\"exercise\">\n<div id=\"fs-id1170572088564\" class=\"textbox\">\n<p id=\"fs-id1170572088566\"><strong>65.\u00a0<\/strong>[latex]\\log_7 82[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572088582\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572088582\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572088582\">[latex]\\frac{\\ln 82}{\\ln 7} \\approx 2.2646[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572227257\" class=\"exercise\">\n<div id=\"fs-id1170572227259\" class=\"textbox\">\n<p id=\"fs-id1170572227261\"><strong>66.\u00a0<\/strong>[latex]\\log_6 103[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572227306\" class=\"exercise\">\n<div id=\"fs-id1170572227308\" class=\"textbox\">\n<p id=\"fs-id1170572227310\"><strong>67.\u00a0<\/strong>[latex]\\log_{0.5} 211[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572227327\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572227327\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572227327\">[latex]\\frac{\\ln 211}{\\ln 0.5} \\approx -7.7211[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572227358\" class=\"exercise\">\n<div id=\"fs-id1170572227360\" class=\"textbox\">\n<p id=\"fs-id1170572227362\"><strong>68.\u00a0<\/strong>[latex]{\\text{log}}_{2}\\pi[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572227407\" class=\"exercise\">\n<div id=\"fs-id1170572227409\" class=\"textbox\">\n<p id=\"fs-id1170572227411\"><strong>69.\u00a0<\/strong>[latex]\\log_{0.2} 0.452[\/latex]<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572227428\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572227428\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572227428\">[latex]\\frac{\\ln 0.452}{\\ln 0.2} \\approx 0.4934[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572227457\" class=\"exercise\">\n<div id=\"fs-id1170572227459\" class=\"textbox\">\n<p id=\"fs-id1170572227461\"><strong>70.\u00a0<\/strong>Rewrite the following expressions in terms of exponentials and simplify.<\/p>\n<p id=\"fs-id1170572227465\">a. [latex]2\\cosh(\\ln x)[\/latex]<\/p>\n<p>b. [latex]\\cosh 4x+\\sinh 4x[\/latex]<\/p>\n<p>c. [latex]\\cosh 2x-\\sinh 2x[\/latex]<\/p>\n<p>d. [latex]\\ln(\\cosh x+\\sinh x)+\\ln(\\cosh x-\\sinh x)[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572230541\" class=\"exercise\">\n<div id=\"fs-id1170572230543\" class=\"textbox\">\n<p id=\"fs-id1170572230545\"><strong>71. [T]<\/strong> The number of bacteria [latex]N[\/latex]\u00a0in a culture after [latex]t[\/latex] days can be modeled by the function [latex]N(t)=1300\u00b72^{t\/4}[\/latex]. Find the number of bacteria present after 15 days.<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572230605\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572230605\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572230605\">[latex]\\approx 17,491[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572230620\" class=\"exercise\">\n<div id=\"fs-id1170572230622\" class=\"textbox\">\n<p id=\"fs-id1170572230624\"><strong>72. [T]<\/strong> The demand [latex]D[\/latex] (in millions of barrels) for oil in an oil-rich country is given by the function [latex]D(p)=150\u00b72.7^{-0.25p}[\/latex], where [latex]p[\/latex] is the price (in dollars) of a barrel of oil. Find the amount of oil demanded (to the nearest million barrels) when the price is between $15 and $20.<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572230690\" class=\"exercise\">\n<div id=\"fs-id1170572230692\" class=\"textbox\">\n<p id=\"fs-id1170572230695\"><strong>73. [T]<\/strong> The accumulated amount [latex]A[\/latex] of a $100,000 investment whose interest compounds continuously for [latex]t[\/latex] years is given by [latex]A(t)=100,000\u00b7e^{0.055t}[\/latex]. Find the amount [latex]A[\/latex] accumulated in 5 years.<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572472846\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572472846\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572472846\">Approximately $131,653 is accumulated in 5 years.<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572472851\" class=\"exercise\">\n<div id=\"fs-id1170572472853\" class=\"textbox\">\n<p id=\"fs-id1170572472855\"><strong>74. [T]<\/strong> An investment is compounded monthly, quarterly, or yearly and is given by the function [latex]A=P\\left(1+\\frac{j}{n}\\right)^{nt}[\/latex], where [latex]A[\/latex] is the value of the investment at time [latex]t, \\, P[\/latex] is the initial principle that was invested, [latex]j[\/latex] is the annual interest rate, and [latex]n[\/latex] is the number of time the interest is compounded per year. Given a yearly interest rate of 3.5% and an initial principle of $100,000, find the amount [latex]A[\/latex] accumulated in 5 years for interest that is compounded<strong> (a)<\/strong> daily, <strong>(b)<\/strong> monthly, <strong>(c)<\/strong> quarterly, and <strong>(d)<\/strong> yearly.<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572472938\" class=\"exercise\">\n<div id=\"fs-id1170572472940\" class=\"textbox\">\n<p id=\"fs-id1170572472942\"><strong>75. [T]<\/strong> The concentration of hydrogen ions in a substance is denoted by [latex][\\text{H}^{+}][\/latex], measured in moles per liter. The pH of a substance is defined by the logarithmic function [latex]\\text{pH}=\u2212\\log[\\text{H}^{+}][\/latex]. This function is used to measure the acidity of a substance. The pH of water is 7. A substance with a pH less than 7 is an acid, whereas one that has a pH of more than 7 is a base.<\/p>\n<p><strong>(a)<\/strong> Find the pH of the following substances. Round answers to one digit. <strong>(b)<\/strong> Determine whether the substance is an acid or a base.<\/p>\n<ol id=\"fs-id1170572473006\">\n<li>Eggs: [latex][\\text{H}^{+}]=1.6 \\times 10^{-8}[\/latex] mol\/L<\/li>\n<li>Beer: [latex][\\text{H}^{+}]=3.16 \\times 10^{-3}[\/latex] mol\/L<\/li>\n<li>Tomato Juice: [latex][\\text{H}^{+}]=7.94 \\times 10^{-5}[\/latex] mol\/L<\/li>\n<\/ol>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572296436\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572296436\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572296436\">1. a. pH = 8 b. Base<\/p>\n<p>2. a. pH = 3 b. Acid<\/p>\n<p>3. a. pH = 4 b. Acid<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572296441\" class=\"exercise\">\n<div id=\"fs-id1170572296443\" class=\"textbox\">\n<p id=\"fs-id1170572296445\"><strong>76. [T]<\/strong> Iodine-131 is a radioactive substance that decays according to the function [latex]Q(t)=Q_0\u00b7e^{-0.08664t}[\/latex], where [latex]Q_0[\/latex] is the initial quantity of a sample of the substance and [latex]t[\/latex] is in days. Determine how long it takes (to the nearest day) for 95% of a quantity to decay.<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572296509\" class=\"exercise\">\n<div id=\"fs-id1170572296511\" class=\"textbox\">\n<p id=\"fs-id1170572296513\"><strong>77. [T]<\/strong> According to the World Bank, at the end of 2013 ([latex]t=0[\/latex]) the U.S. population was 316 million and was increasing according to the following model:<\/p>\n<p id=\"fs-id1170572296531\" style=\"text-align: center;\">[latex]P(t)=316e^{0.0074t}[\/latex],<\/p>\n<p id=\"fs-id1170572296560\">where [latex]P[\/latex] is measured in millions of people and [latex]t[\/latex] is measured in years after 2013.<\/p>\n<ol id=\"fs-id1170572296574\" style=\"list-style-type: lower-alpha;\">\n<li>Based on this model, what will be the population of the United States in 2020?<\/li>\n<li>Determine when the U.S. population will be twice what it is in 2013.<\/li>\n<\/ol>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572296591\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572296591\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572296591\">a. [latex]\\approx 333[\/latex] million b. 94 years from 2013, or in 2107<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572296604\" class=\"exercise\">\n<div id=\"fs-id1170572296606\" class=\"textbox\">\n<p id=\"fs-id1170572296608\"><strong>78. [T]<\/strong> The amount [latex]A[\/latex] accumulated after 1000 dollars is invested for [latex]t[\/latex] years at an interest rate of 4% is modeled by the function [latex]A(t)=1000(1.04)^t[\/latex].<\/p>\n<ol id=\"fs-id1170572296659\" style=\"list-style-type: lower-alpha;\">\n<li>Find the amount accumulated after 5 years and 10 years.<\/li>\n<li>Determine how long it takes for the original investment to triple.<\/li>\n<\/ol>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572296689\" class=\"exercise\">\n<div id=\"fs-id1170572296691\" class=\"textbox\">\n<p id=\"fs-id1170572296693\"><strong>79. [T]<\/strong> A bacterial colony grown in a lab is known to double in number in 12 hours. Suppose, initially, there are 1000 bacteria present.<\/p>\n<ol id=\"fs-id1170572212877\" style=\"list-style-type: lower-alpha;\">\n<li>Use the exponential function [latex]Q=Q_0e^{kt}[\/latex] to determine the value [latex]k[\/latex], which is the growth rate of the bacteria. Round to four decimal places.<\/li>\n<li>Determine approximately how long it takes for 200,000 bacteria to grow.<\/li>\n<\/ol>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572212922\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572212922\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572212922\">a. [latex]k \\approx 0.0578[\/latex] b. [latex]\\approx 92[\/latex] hours<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572212944\" class=\"exercise\">\n<div id=\"fs-id1170572212946\" class=\"textbox\">\n<p id=\"fs-id1170572212949\"><strong>80. [T]<\/strong> The rabbit population on a game reserve doubles every 6 months. Suppose there were 120 rabbits initially.<\/p>\n<ol id=\"fs-id1170572212957\" style=\"list-style-type: lower-alpha;\">\n<li>Use the exponential function [latex]P=P_{0} a^{t}[\/latex] to determine the growth rate constant [latex]a[\/latex]. Round to four decimal places.<\/li>\n<li>Use the function in part (a) to determine approximately how long it takes for the rabbit population to reach 3500.<\/li>\n<\/ol>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572213021\" class=\"exercise\">\n<div id=\"fs-id1170572213023\" class=\"textbox\">\n<p id=\"fs-id1170572213025\"><strong>81. [T]<\/strong> The 1906 earthquake in San Francisco had a magnitude of 8.3 on the Richter scale. At the same time, in Japan, an earthquake with magnitude 4.9 caused only minor damage. Approximately how much more energy was released by the San Francisco earthquake than by the Japanese earthquake?<\/p>\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572213038\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572213038\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572213038\">The San Francisco earthquake had [latex]10^{3.4}[\/latex] or [latex]\\approx 2512[\/latex] times more energy than the Japan earthquake.<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n\n\t\t\t <section class=\"citations-section\" role=\"contentinfo\">\n\t\t\t <h3>Candela Citations<\/h3>\n\t\t\t\t\t <div>\n\t\t\t\t\t\t <div id=\"citation-list-175\">\n\t\t\t\t\t\t\t <div class=\"licensing\"><div class=\"license-attribution-dropdown-subheading\">CC licensed content, Shared previously<\/div><ul class=\"citation-list\"><li>Calculus Volume 1. <strong>Authored by<\/strong>: Gilbert Strang, Edwin (Jed) Herman. <strong>Provided by<\/strong>: OpenStax. <strong>Located at<\/strong>: <a target=\"_blank\" href=\"https:\/\/openstax.org\/details\/books\/calculus-volume-1\">https:\/\/openstax.org\/details\/books\/calculus-volume-1<\/a>. <strong>License<\/strong>: <em><a target=\"_blank\" rel=\"license\" href=\"https:\/\/creativecommons.org\/licenses\/by-nc-sa\/4.0\/\">CC BY-NC-SA: Attribution-NonCommercial-ShareAlike<\/a><\/em>. <strong>License Terms<\/strong>: Access for free at https:\/\/openstax.org\/books\/calculus-volume-1\/pages\/1-introduction<\/li><\/ul><\/div>\n\t\t\t\t\t\t <\/div>\n\t\t\t\t\t <\/div>\n\t\t\t <\/section>","protected":false},"author":17533,"menu_order":7,"template":"","meta":{"_candela_citation":"[{\"type\":\"cc\",\"description\":\"Calculus Volume 1\",\"author\":\"Gilbert Strang, Edwin (Jed) Herman\",\"organization\":\"OpenStax\",\"url\":\"https:\/\/openstax.org\/details\/books\/calculus-volume-1\",\"project\":\"\",\"license\":\"cc-by-nc-sa\",\"license_terms\":\"Access for free at https:\/\/openstax.org\/books\/calculus-volume-1\/pages\/1-introduction\"}]","CANDELA_OUTCOMES_GUID":"","pb_show_title":"on","pb_short_title":"","pb_subtitle":"","pb_authors":[],"pb_section_license":""},"chapter-type":[],"contributor":[],"license":[],"class_list":["post-175","chapter","type-chapter","status-publish","hentry"],"part":161,"_links":{"self":[{"href":"https:\/\/courses.lumenlearning.com\/calculus1\/wp-json\/pressbooks\/v2\/chapters\/175","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/courses.lumenlearning.com\/calculus1\/wp-json\/pressbooks\/v2\/chapters"}],"about":[{"href":"https:\/\/courses.lumenlearning.com\/calculus1\/wp-json\/wp\/v2\/types\/chapter"}],"author":[{"embeddable":true,"href":"https:\/\/courses.lumenlearning.com\/calculus1\/wp-json\/wp\/v2\/users\/17533"}],"version-history":[{"count":17,"href":"https:\/\/courses.lumenlearning.com\/calculus1\/wp-json\/pressbooks\/v2\/chapters\/175\/revisions"}],"predecessor-version":[{"id":3351,"href":"https:\/\/courses.lumenlearning.com\/calculus1\/wp-json\/pressbooks\/v2\/chapters\/175\/revisions\/3351"}],"part":[{"href":"https:\/\/courses.lumenlearning.com\/calculus1\/wp-json\/pressbooks\/v2\/parts\/161"}],"metadata":[{"href":"https:\/\/courses.lumenlearning.com\/calculus1\/wp-json\/pressbooks\/v2\/chapters\/175\/metadata\/"}],"wp:attachment":[{"href":"https:\/\/courses.lumenlearning.com\/calculus1\/wp-json\/wp\/v2\/media?parent=175"}],"wp:term":[{"taxonomy":"chapter-type","embeddable":true,"href":"https:\/\/courses.lumenlearning.com\/calculus1\/wp-json\/pressbooks\/v2\/chapter-type?post=175"},{"taxonomy":"contributor","embeddable":true,"href":"https:\/\/courses.lumenlearning.com\/calculus1\/wp-json\/wp\/v2\/contributor?post=175"},{"taxonomy":"license","embeddable":true,"href":"https:\/\/courses.lumenlearning.com\/calculus1\/wp-json\/wp\/v2\/license?post=175"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}