{"id":2467,"date":"2018-01-31T21:06:55","date_gmt":"2018-01-31T21:06:55","guid":{"rendered":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/?post_type=chapter&#038;p=2467"},"modified":"2018-10-26T19:23:56","modified_gmt":"2018-10-26T19:23:56","slug":"exercises-for-1-1","status":"publish","type":"chapter","link":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/chapter\/exercises-for-1-1\/","title":{"raw":"Chapter 1 Review Exercises","rendered":"Chapter 1 Review Exercises"},"content":{"raw":"\r\n<p id=\"fs-id1170572213073\"><em>True or False<\/em>? Justify your answer with a proof or a counterexample.<\/p>\r\n\r\n<div id=\"fs-id1170572213080\" class=\"exercise\">\r\n<div id=\"fs-id1170572213083\" class=\"textbox\">\r\n<p id=\"fs-id1170572213085\"><strong>1.\u00a0<\/strong>A function is always one-to-one.<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572213097\" class=\"exercise\">\r\n<div id=\"fs-id1170572213099\" class=\"textbox\">\r\n<p id=\"fs-id1170572213101\"><strong>2.\u00a0<\/strong>[latex]f \\circ g=g\\circ f[\/latex], assuming [latex]f[\/latex] and [latex]g[\/latex] are functions.<\/p>\r\n\r\n<\/div>\r\n<div class=\"textbox shaded\">[reveal-answer q=\"fs-id1170572213137\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572213137\"]\r\n<p id=\"fs-id1170572213137\">False<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572213142\" class=\"exercise\">\r\n<div id=\"fs-id1170572213145\" class=\"textbox\">\r\n<p id=\"fs-id1170572213147\"><strong>3.\u00a0<\/strong>A relation that passes the horizontal and vertical line tests is a one-to-one function.<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572237255\" class=\"exercise\">\r\n<div id=\"fs-id1170572237257\" class=\"textbox\">\r\n<p id=\"fs-id1170572237260\"><strong>4.\u00a0<\/strong>A relation passing the horizontal line test is a function.<\/p>\r\n\r\n<\/div>\r\n<div class=\"textbox shaded\">[reveal-answer q=\"fs-id1170572237266\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572237266\"]\r\n<p id=\"fs-id1170572237266\">False<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572237271\">For the following problems, state the domain and range of the given functions:<\/p>\r\n<p id=\"fs-id1170572237274\">[latex]f=x^2+2x-3,\\phantom{\\rule{3em}{0ex}}g=\\ln(x-5),\\phantom{\\rule{3em}{0ex}}h=\\frac{1}{x+4}[\/latex]<\/p>\r\n\r\n<div id=\"fs-id1170572237344\" class=\"exercise\">\r\n<div id=\"fs-id1170572237346\" class=\"textbox\">\r\n<p id=\"fs-id1170572237348\"><strong>5.\u00a0<\/strong>[latex]h[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572237384\" class=\"exercise\">\r\n<div id=\"fs-id1170572237386\" class=\"textbox\">\r\n<p id=\"fs-id1170572237388\"><strong>6.\u00a0<\/strong>[latex]g[\/latex]<\/p>\r\n\r\n<\/div>\r\n<div class=\"textbox shaded\">[reveal-answer q=\"fs-id1170572237397\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572237397\"]\r\n<p id=\"fs-id1170572237397\">Domain: [latex]x&gt;5[\/latex], Range: all real numbers<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572237415\" class=\"exercise\">\r\n<div id=\"fs-id1170572237417\" class=\"textbox\">\r\n<p id=\"fs-id1170572237419\"><strong>7.\u00a0<\/strong>[latex]h\\circ f[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572237460\" class=\"exercise\">\r\n<div id=\"fs-id1170572237462\" class=\"textbox\">\r\n<p id=\"fs-id1170572237464\"><strong>8.\u00a0<\/strong>[latex]g\\circ f[\/latex]<\/p>\r\n\r\n<\/div>\r\n<div class=\"textbox shaded\">[reveal-answer q=\"fs-id1170572237479\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572237479\"]\r\n<p id=\"fs-id1170572237479\">Domain: [latex]x&gt;2[\/latex] or [latex]x&lt;-4[\/latex], Range: all real numbers<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572237509\">Find the degree, [latex]y[\/latex]-intercept, and zeros for the following polynomial functions.<\/p>\r\n\r\n<div id=\"fs-id1170572237517\" class=\"exercise\">\r\n<div id=\"fs-id1170572237519\" class=\"textbox\">\r\n<p id=\"fs-id1170572237522\"><strong>9.\u00a0<\/strong>[latex]f(x)=2x^2+9x-5[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572212641\" class=\"exercise\">\r\n<div id=\"fs-id1170572212644\" class=\"textbox\">\r\n<p id=\"fs-id1170572212646\"><strong>10.\u00a0<\/strong>[latex]f(x)=x^3+2x^2-2x[\/latex]<\/p>\r\n\r\n<\/div>\r\n<div class=\"textbox shaded\">[reveal-answer q=\"fs-id1170572212690\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572212690\"]\r\n<p id=\"fs-id1170572212690\">Degree of 3, [latex]y[\/latex]-intercept: 0, Zeros: 0, [latex]\\sqrt{3}-1, \\, -1-\\sqrt{3}[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572212720\">Simplify the following trigonometric expressions.<\/p>\r\n\r\n<div id=\"fs-id1170572212723\" class=\"exercise\">\r\n<div id=\"fs-id1170572212725\" class=\"textbox\">\r\n<p id=\"fs-id1170572212727\"><strong>11.\u00a0<\/strong>[latex]\\frac{\\tan^2 x}{\\sec^2 x}+\\cos^2 x[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572212773\" class=\"exercise\">\r\n<div id=\"fs-id1170572212775\" class=\"textbox\">\r\n<p id=\"fs-id1170572212777\"><strong>12.\u00a0<\/strong>[latex] \\cos(2x)=\\sin^2 x[\/latex]<\/p>\r\n\r\n<\/div>\r\n<div class=\"textbox shaded\">[reveal-answer q=\"fs-id1170572212808\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572212808\"]\r\n<p id=\"fs-id1170572212808\">[latex] \\cos(2x)[\/latex] or [latex]\\frac{1}{2}(\\cos(2x)+1)[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572212865\">Solve the following trigonometric equations on the interval [latex]\\theta =[-2\\pi ,2\\pi][\/latex] exactly.<\/p>\r\n\r\n<div id=\"fs-id1170572243171\" class=\"exercise\">\r\n<div id=\"fs-id1170572243173\" class=\"textbox\">\r\n<p id=\"fs-id1170572243175\"><strong>13.\u00a0<\/strong>[latex]6\\cos^2 x-3=0[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572243255\" class=\"exercise\">\r\n<div id=\"fs-id1170572243258\" class=\"textbox\">\r\n<p id=\"fs-id1170572243260\"><strong>14.\u00a0<\/strong>[latex]\\sec^2 x-2\\sec x+1=0[\/latex]<\/p>\r\n\r\n<\/div>\r\n<div class=\"textbox shaded\">[reveal-answer q=\"fs-id1170572243293\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572243293\"]\r\n<p id=\"fs-id1170572243293\">[latex]0, \\, \\pm 2\\pi [\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572243310\">Solve the following logarithmic equations.<\/p>\r\n\r\n<div id=\"fs-id1170572243313\" class=\"exercise\">\r\n<div id=\"fs-id1170572243315\" class=\"textbox\">\r\n<p id=\"fs-id1170572243317\"><strong>15.\u00a0<\/strong>[latex]5^x=16[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572243371\" class=\"exercise\">\r\n<div id=\"fs-id1170572243373\" class=\"textbox\">\r\n<p id=\"fs-id1170572243375\"><strong>16.\u00a0<\/strong>[latex]\\log_2 (x+4)=3[\/latex]<\/p>\r\n\r\n<\/div>\r\n<div class=\"textbox shaded\">[reveal-answer q=\"fs-id1170572243408\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572243408\"]\r\n<p id=\"fs-id1170572243408\">4<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572243414\">Are the following functions one-to-one over their domain of existence? Does the function have an inverse? If so, find the inverse [latex]f^{-1}(x)[\/latex] of the function. Justify your answer.<\/p>\r\n\r\n<div id=\"fs-id1170572139067\" class=\"exercise\">\r\n<div id=\"fs-id1170572139070\" class=\"textbox\">\r\n<p id=\"fs-id1170572139072\"><strong>17.\u00a0<\/strong>[latex]f(x)=x^2+2x+1[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572139116\" class=\"exercise\">\r\n<div id=\"fs-id1170572139118\" class=\"textbox\">\r\n<p id=\"fs-id1170572139120\"><strong>18.\u00a0<\/strong>[latex]f(x)=\\frac{1}{x}[\/latex]<\/p>\r\n\r\n<\/div>\r\n<div class=\"textbox shaded\">[reveal-answer q=\"fs-id1170572139148\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572139148\"]\r\n<p id=\"fs-id1170572139148\">One-to-one; yes, the function has an inverse; inverse: [latex]f^{-1}(x)=\\frac{1}{x}[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572139180\">For the following problems, determine the largest domain on which the function is one-to-one and find the inverse on that domain.<\/p>\r\n\r\n<div id=\"fs-id1170572139184\" class=\"exercise\">\r\n<div id=\"fs-id1170572139186\" class=\"textbox\">\r\n<p id=\"fs-id1170572139189\"><strong>19.\u00a0<\/strong>[latex]f(x)=\\sqrt{9-x}[\/latex]<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572139263\" class=\"exercise\">\r\n<div id=\"fs-id1170572139265\" class=\"textbox\">\r\n<p id=\"fs-id1170572139267\"><strong>20.\u00a0<\/strong>[latex]f(x)=x^2+3x+4[\/latex]<\/p>\r\n\r\n<\/div>\r\n<div class=\"textbox shaded\">[reveal-answer q=\"fs-id1170572139305\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572139305\"]\r\n<p id=\"fs-id1170572139305\">[latex]x \\ge -\\frac{3}{2}, \\, f^{-1}(x)=-\\frac{3}{2}+\\frac{1}{2}\\sqrt{4y-7}[\/latex]<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572211027\" class=\"exercise\">\r\n<div id=\"fs-id1170572211030\" class=\"textbox\">\r\n<p id=\"fs-id1170572211032\"><strong>21.\u00a0<\/strong>A car is racing along a circular track with diameter of 1 mi. A trainer standing in the center of the circle marks his progress every 5 sec. After 5 sec, the trainer has to turn [latex]55^{\\circ}[\/latex] to keep up with the car. How fast is the car traveling?<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572211047\">For the following problems, consider a restaurant owner who wants to sell T-shirts advertising his brand. He recalls that there is a fixed cost and variable cost, although he does not remember the values. He does know that the T-shirt printing company charges $440 for 20 shirts and $1000 for 100 shirts.<\/p>\r\n\r\n<div id=\"fs-id1170572211052\" class=\"exercise\">\r\n<div id=\"fs-id1170572211055\" class=\"textbox\">\r\n<p id=\"fs-id1170572211057\"><strong>22.\u00a0<\/strong>a. Find the equation [latex]C=f(x)[\/latex] that describes the total cost as a function of number of shirts and b. determine how many shirts he must sell to break even if he sells the shirts for $10 each.<\/p>\r\n\r\n<\/div>\r\n<div class=\"textbox shaded\">[reveal-answer q=\"fs-id1170572211085\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572211085\"]\r\n<p id=\"fs-id1170572211085\">a. [latex]C(x)=300+7x[\/latex] b. 100 shirts<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572211116\" class=\"exercise\">\r\n<div id=\"fs-id1170572211118\" class=\"textbox\">\r\n<p id=\"fs-id1170572211121\"><strong>23.\u00a0<\/strong>a. Find the inverse function [latex]x=f^{-1}(C)[\/latex] and describe the meaning of this function. b. Determine how many shirts the owner can buy if he has $8000 to spend.<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572211179\">For the following problems, consider the population of Ocean City, New Jersey, which is cyclical by season.<\/p>\r\n\r\n<div id=\"fs-id1170572211183\" class=\"exercise\">\r\n<div id=\"fs-id1170572211185\" class=\"textbox\">\r\n<p id=\"fs-id1170572211187\"><strong>24.\u00a0<\/strong>The population can be modeled by [latex]P(t)=82.5-67.5\\cos [(\\pi \/6)t][\/latex], where [latex]t[\/latex] is time in months ([latex]t=0[\/latex] represents January 1) and [latex]P[\/latex] is population (in thousands). During a year, in what intervals is the population less than 20,000? During what intervals is the population more than 140,000?<\/p>\r\n\r\n<\/div>\r\n<div class=\"textbox shaded\">[reveal-answer q=\"fs-id1170572211270\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572211270\"]\r\n<p id=\"fs-id1170572211270\">The population is less than 20,000 from December 8 through January 23 and more than 140,000 from May 29 through August 2<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572211277\" class=\"exercise\">\r\n<div id=\"fs-id1170572211279\" class=\"textbox\">\r\n<p id=\"fs-id1170572544391\"><strong>25.\u00a0<\/strong>In reality, the overall population is most likely increasing or decreasing throughout each year. Let\u2019s reformulate the model as [latex]P(t)=82.5-67.5\\cos [(\\pi \/6)t]+t[\/latex], where [latex]t[\/latex] is time in months ([latex]t=0[\/latex] represents January 1) and [latex]P[\/latex] is population (in thousands). When is the first time the population reaches 200,000?<\/p>\r\n\r\n<\/div>\r\n<\/div>\r\n<p id=\"fs-id1170572544480\">For the following problems, consider radioactive dating. A human skeleton is found in an archeological dig. Carbon dating is implemented to determine how old the skeleton is by using the equation [latex]y=e^{rt}[\/latex], where [latex]y[\/latex] is the percentage of radiocarbon still present in the material, [latex]t[\/latex] is the number of years passed, and [latex]r=-0.0001210[\/latex] is the decay rate of radiocarbon.<\/p>\r\n\r\n<div id=\"fs-id1170572544522\" class=\"exercise\">\r\n<div id=\"fs-id1170572544524\" class=\"textbox\">\r\n<p id=\"fs-id1170572544527\"><strong>26.\u00a0<\/strong>If the skeleton is expected to be 2000 years old, what percentage of radiocarbon should be present?<\/p>\r\n\r\n<\/div>\r\n<div class=\"textbox shaded\">[reveal-answer q=\"fs-id1170572544534\"]Show Solution[\/reveal-answer]\r\n[hidden-answer a=\"fs-id1170572544534\"]\r\n<p id=\"fs-id1170572544534\">78.51%<\/p>\r\n[\/hidden-answer]\r\n\r\n<\/div>\r\n<\/div>\r\n<div id=\"fs-id1170572544539\" class=\"exercise\">\r\n<div id=\"fs-id1170572544541\" class=\"textbox\">\r\n<p id=\"fs-id1170572544544\"><strong>27.\u00a0<\/strong>Find the inverse of the carbon-dating equation. What does it mean? If there is 25% radiocarbon, how old is the skeleton?<\/p>\r\n\r\n<\/div>\r\n<\/div>","rendered":"<p id=\"fs-id1170572213073\"><em>True or False<\/em>? Justify your answer with a proof or a counterexample.<\/p>\n<div id=\"fs-id1170572213080\" class=\"exercise\">\n<div id=\"fs-id1170572213083\" class=\"textbox\">\n<p id=\"fs-id1170572213085\"><strong>1.\u00a0<\/strong>A function is always one-to-one.<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572213097\" class=\"exercise\">\n<div id=\"fs-id1170572213099\" class=\"textbox\">\n<p id=\"fs-id1170572213101\"><strong>2.\u00a0<\/strong>[latex]f \\circ g=g\\circ f[\/latex], assuming [latex]f[\/latex] and [latex]g[\/latex] are functions.<\/p>\n<\/div>\n<div class=\"textbox shaded\">\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572213137\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572213137\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572213137\">False<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572213142\" class=\"exercise\">\n<div id=\"fs-id1170572213145\" class=\"textbox\">\n<p id=\"fs-id1170572213147\"><strong>3.\u00a0<\/strong>A relation that passes the horizontal and vertical line tests is a one-to-one function.<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572237255\" class=\"exercise\">\n<div id=\"fs-id1170572237257\" class=\"textbox\">\n<p id=\"fs-id1170572237260\"><strong>4.\u00a0<\/strong>A relation passing the horizontal line test is a function.<\/p>\n<\/div>\n<div class=\"textbox shaded\">\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572237266\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572237266\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572237266\">False<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572237271\">For the following problems, state the domain and range of the given functions:<\/p>\n<p id=\"fs-id1170572237274\">[latex]f=x^2+2x-3,\\phantom{\\rule{3em}{0ex}}g=\\ln(x-5),\\phantom{\\rule{3em}{0ex}}h=\\frac{1}{x+4}[\/latex]<\/p>\n<div id=\"fs-id1170572237344\" class=\"exercise\">\n<div id=\"fs-id1170572237346\" class=\"textbox\">\n<p id=\"fs-id1170572237348\"><strong>5.\u00a0<\/strong>[latex]h[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572237384\" class=\"exercise\">\n<div id=\"fs-id1170572237386\" class=\"textbox\">\n<p id=\"fs-id1170572237388\"><strong>6.\u00a0<\/strong>[latex]g[\/latex]<\/p>\n<\/div>\n<div class=\"textbox shaded\">\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572237397\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572237397\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572237397\">Domain: [latex]x>5[\/latex], Range: all real numbers<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572237415\" class=\"exercise\">\n<div id=\"fs-id1170572237417\" class=\"textbox\">\n<p id=\"fs-id1170572237419\"><strong>7.\u00a0<\/strong>[latex]h\\circ f[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572237460\" class=\"exercise\">\n<div id=\"fs-id1170572237462\" class=\"textbox\">\n<p id=\"fs-id1170572237464\"><strong>8.\u00a0<\/strong>[latex]g\\circ f[\/latex]<\/p>\n<\/div>\n<div class=\"textbox shaded\">\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572237479\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572237479\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572237479\">Domain: [latex]x>2[\/latex] or [latex]x<-4[\/latex], Range: all real numbers<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572237509\">Find the degree, [latex]y[\/latex]-intercept, and zeros for the following polynomial functions.<\/p>\n<div id=\"fs-id1170572237517\" class=\"exercise\">\n<div id=\"fs-id1170572237519\" class=\"textbox\">\n<p id=\"fs-id1170572237522\"><strong>9.\u00a0<\/strong>[latex]f(x)=2x^2+9x-5[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572212641\" class=\"exercise\">\n<div id=\"fs-id1170572212644\" class=\"textbox\">\n<p id=\"fs-id1170572212646\"><strong>10.\u00a0<\/strong>[latex]f(x)=x^3+2x^2-2x[\/latex]<\/p>\n<\/div>\n<div class=\"textbox shaded\">\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572212690\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572212690\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572212690\">Degree of 3, [latex]y[\/latex]-intercept: 0, Zeros: 0, [latex]\\sqrt{3}-1, \\, -1-\\sqrt{3}[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572212720\">Simplify the following trigonometric expressions.<\/p>\n<div id=\"fs-id1170572212723\" class=\"exercise\">\n<div id=\"fs-id1170572212725\" class=\"textbox\">\n<p id=\"fs-id1170572212727\"><strong>11.\u00a0<\/strong>[latex]\\frac{\\tan^2 x}{\\sec^2 x}+\\cos^2 x[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572212773\" class=\"exercise\">\n<div id=\"fs-id1170572212775\" class=\"textbox\">\n<p id=\"fs-id1170572212777\"><strong>12.\u00a0<\/strong>[latex]\\cos(2x)=\\sin^2 x[\/latex]<\/p>\n<\/div>\n<div class=\"textbox shaded\">\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572212808\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572212808\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572212808\">[latex]\\cos(2x)[\/latex] or [latex]\\frac{1}{2}(\\cos(2x)+1)[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572212865\">Solve the following trigonometric equations on the interval [latex]\\theta =[-2\\pi ,2\\pi][\/latex] exactly.<\/p>\n<div id=\"fs-id1170572243171\" class=\"exercise\">\n<div id=\"fs-id1170572243173\" class=\"textbox\">\n<p id=\"fs-id1170572243175\"><strong>13.\u00a0<\/strong>[latex]6\\cos^2 x-3=0[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572243255\" class=\"exercise\">\n<div id=\"fs-id1170572243258\" class=\"textbox\">\n<p id=\"fs-id1170572243260\"><strong>14.\u00a0<\/strong>[latex]\\sec^2 x-2\\sec x+1=0[\/latex]<\/p>\n<\/div>\n<div class=\"textbox shaded\">\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572243293\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572243293\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572243293\">[latex]0, \\, \\pm 2\\pi[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572243310\">Solve the following logarithmic equations.<\/p>\n<div id=\"fs-id1170572243313\" class=\"exercise\">\n<div id=\"fs-id1170572243315\" class=\"textbox\">\n<p id=\"fs-id1170572243317\"><strong>15.\u00a0<\/strong>[latex]5^x=16[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572243371\" class=\"exercise\">\n<div id=\"fs-id1170572243373\" class=\"textbox\">\n<p id=\"fs-id1170572243375\"><strong>16.\u00a0<\/strong>[latex]\\log_2 (x+4)=3[\/latex]<\/p>\n<\/div>\n<div class=\"textbox shaded\">\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572243408\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572243408\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572243408\">4<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572243414\">Are the following functions one-to-one over their domain of existence? Does the function have an inverse? If so, find the inverse [latex]f^{-1}(x)[\/latex] of the function. Justify your answer.<\/p>\n<div id=\"fs-id1170572139067\" class=\"exercise\">\n<div id=\"fs-id1170572139070\" class=\"textbox\">\n<p id=\"fs-id1170572139072\"><strong>17.\u00a0<\/strong>[latex]f(x)=x^2+2x+1[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572139116\" class=\"exercise\">\n<div id=\"fs-id1170572139118\" class=\"textbox\">\n<p id=\"fs-id1170572139120\"><strong>18.\u00a0<\/strong>[latex]f(x)=\\frac{1}{x}[\/latex]<\/p>\n<\/div>\n<div class=\"textbox shaded\">\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572139148\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572139148\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572139148\">One-to-one; yes, the function has an inverse; inverse: [latex]f^{-1}(x)=\\frac{1}{x}[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572139180\">For the following problems, determine the largest domain on which the function is one-to-one and find the inverse on that domain.<\/p>\n<div id=\"fs-id1170572139184\" class=\"exercise\">\n<div id=\"fs-id1170572139186\" class=\"textbox\">\n<p id=\"fs-id1170572139189\"><strong>19.\u00a0<\/strong>[latex]f(x)=\\sqrt{9-x}[\/latex]<\/p>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572139263\" class=\"exercise\">\n<div id=\"fs-id1170572139265\" class=\"textbox\">\n<p id=\"fs-id1170572139267\"><strong>20.\u00a0<\/strong>[latex]f(x)=x^2+3x+4[\/latex]<\/p>\n<\/div>\n<div class=\"textbox shaded\">\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572139305\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572139305\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572139305\">[latex]x \\ge -\\frac{3}{2}, \\, f^{-1}(x)=-\\frac{3}{2}+\\frac{1}{2}\\sqrt{4y-7}[\/latex]<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572211027\" class=\"exercise\">\n<div id=\"fs-id1170572211030\" class=\"textbox\">\n<p id=\"fs-id1170572211032\"><strong>21.\u00a0<\/strong>A car is racing along a circular track with diameter of 1 mi. A trainer standing in the center of the circle marks his progress every 5 sec. After 5 sec, the trainer has to turn [latex]55^{\\circ}[\/latex] to keep up with the car. How fast is the car traveling?<\/p>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572211047\">For the following problems, consider a restaurant owner who wants to sell T-shirts advertising his brand. He recalls that there is a fixed cost and variable cost, although he does not remember the values. He does know that the T-shirt printing company charges $440 for 20 shirts and $1000 for 100 shirts.<\/p>\n<div id=\"fs-id1170572211052\" class=\"exercise\">\n<div id=\"fs-id1170572211055\" class=\"textbox\">\n<p id=\"fs-id1170572211057\"><strong>22.\u00a0<\/strong>a. Find the equation [latex]C=f(x)[\/latex] that describes the total cost as a function of number of shirts and b. determine how many shirts he must sell to break even if he sells the shirts for $10 each.<\/p>\n<\/div>\n<div class=\"textbox shaded\">\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572211085\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572211085\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572211085\">a. [latex]C(x)=300+7x[\/latex] b. 100 shirts<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572211116\" class=\"exercise\">\n<div id=\"fs-id1170572211118\" class=\"textbox\">\n<p id=\"fs-id1170572211121\"><strong>23.\u00a0<\/strong>a. Find the inverse function [latex]x=f^{-1}(C)[\/latex] and describe the meaning of this function. b. Determine how many shirts the owner can buy if he has $8000 to spend.<\/p>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572211179\">For the following problems, consider the population of Ocean City, New Jersey, which is cyclical by season.<\/p>\n<div id=\"fs-id1170572211183\" class=\"exercise\">\n<div id=\"fs-id1170572211185\" class=\"textbox\">\n<p id=\"fs-id1170572211187\"><strong>24.\u00a0<\/strong>The population can be modeled by [latex]P(t)=82.5-67.5\\cos [(\\pi \/6)t][\/latex], where [latex]t[\/latex] is time in months ([latex]t=0[\/latex] represents January 1) and [latex]P[\/latex] is population (in thousands). During a year, in what intervals is the population less than 20,000? During what intervals is the population more than 140,000?<\/p>\n<\/div>\n<div class=\"textbox shaded\">\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572211270\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572211270\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572211270\">The population is less than 20,000 from December 8 through January 23 and more than 140,000 from May 29 through August 2<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572211277\" class=\"exercise\">\n<div id=\"fs-id1170572211279\" class=\"textbox\">\n<p id=\"fs-id1170572544391\"><strong>25.\u00a0<\/strong>In reality, the overall population is most likely increasing or decreasing throughout each year. Let\u2019s reformulate the model as [latex]P(t)=82.5-67.5\\cos [(\\pi \/6)t]+t[\/latex], where [latex]t[\/latex] is time in months ([latex]t=0[\/latex] represents January 1) and [latex]P[\/latex] is population (in thousands). When is the first time the population reaches 200,000?<\/p>\n<\/div>\n<\/div>\n<p id=\"fs-id1170572544480\">For the following problems, consider radioactive dating. A human skeleton is found in an archeological dig. Carbon dating is implemented to determine how old the skeleton is by using the equation [latex]y=e^{rt}[\/latex], where [latex]y[\/latex] is the percentage of radiocarbon still present in the material, [latex]t[\/latex] is the number of years passed, and [latex]r=-0.0001210[\/latex] is the decay rate of radiocarbon.<\/p>\n<div id=\"fs-id1170572544522\" class=\"exercise\">\n<div id=\"fs-id1170572544524\" class=\"textbox\">\n<p id=\"fs-id1170572544527\"><strong>26.\u00a0<\/strong>If the skeleton is expected to be 2000 years old, what percentage of radiocarbon should be present?<\/p>\n<\/div>\n<div class=\"textbox shaded\">\n<div class=\"qa-wrapper\" style=\"display: block\"><span class=\"show-answer collapsed\" style=\"cursor: pointer\" data-target=\"qfs-id1170572544534\">Show Solution<\/span><\/p>\n<div id=\"qfs-id1170572544534\" class=\"hidden-answer\" style=\"display: none\">\n<p id=\"fs-id1170572544534\">78.51%<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div id=\"fs-id1170572544539\" class=\"exercise\">\n<div id=\"fs-id1170572544541\" class=\"textbox\">\n<p id=\"fs-id1170572544544\"><strong>27.\u00a0<\/strong>Find the inverse of the carbon-dating equation. What does it mean? If there is 25% radiocarbon, how old is the skeleton?<\/p>\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-2467\">\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 I. <strong>Provided by<\/strong>: OpenStax. <strong>Located at<\/strong>: <a target=\"_blank\" href=\"http:\/\/cnx.org\/contents\/8b89d172-2927-466f-8661-01abc7ccdba4@2.89\">http:\/\/cnx.org\/contents\/8b89d172-2927-466f-8661-01abc7ccdba4@2.89<\/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>: Download for free at http:\/\/cnx.org\/contents\/8b89d172-2927-466f-8661-01abc7ccdba4@2.89<\/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":311,"menu_order":7,"template":"","meta":{"_candela_citation":"[{\"type\":\"cc\",\"description\":\"Calculus I\",\"author\":\"\",\"organization\":\"OpenStax\",\"url\":\"http:\/\/cnx.org\/contents\/8b89d172-2927-466f-8661-01abc7ccdba4@2.89\",\"project\":\"\",\"license\":\"cc-by-nc-sa\",\"license_terms\":\"Download for free at http:\/\/cnx.org\/contents\/8b89d172-2927-466f-8661-01abc7ccdba4@2.89\"}]","CANDELA_OUTCOMES_GUID":"","pb_show_title":"on","pb_short_title":"","pb_subtitle":"","pb_authors":[],"pb_section_license":""},"chapter-type":[],"contributor":[],"license":[],"class_list":["post-2467","chapter","type-chapter","status-publish","hentry"],"part":1448,"_links":{"self":[{"href":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/wp-json\/pressbooks\/v2\/chapters\/2467","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/wp-json\/pressbooks\/v2\/chapters"}],"about":[{"href":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/wp-json\/wp\/v2\/types\/chapter"}],"author":[{"embeddable":true,"href":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/wp-json\/wp\/v2\/users\/311"}],"version-history":[{"count":10,"href":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/wp-json\/pressbooks\/v2\/chapters\/2467\/revisions"}],"predecessor-version":[{"id":2671,"href":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/wp-json\/pressbooks\/v2\/chapters\/2467\/revisions\/2671"}],"part":[{"href":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/wp-json\/pressbooks\/v2\/parts\/1448"}],"metadata":[{"href":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/wp-json\/pressbooks\/v2\/chapters\/2467\/metadata\/"}],"wp:attachment":[{"href":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/wp-json\/wp\/v2\/media?parent=2467"}],"wp:term":[{"taxonomy":"chapter-type","embeddable":true,"href":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/wp-json\/pressbooks\/v2\/chapter-type?post=2467"},{"taxonomy":"contributor","embeddable":true,"href":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/wp-json\/wp\/v2\/contributor?post=2467"},{"taxonomy":"license","embeddable":true,"href":"https:\/\/courses.lumenlearning.com\/suny-openstax-calculus1\/wp-json\/wp\/v2\/license?post=2467"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}