Problem 1CP: Check Point 1 Determine the amplitude of y=3sinx . Then graph y = sin x and y = 3 sin x for 0x2. Problem 2CP: Check Point 2 Determine the amplitude of . Then graph
Problem 3CP Problem 4CP Problem 5CP Problem 6CP: Check Point 6 Determine the amplitude, period, and phase shift of y=32cos(2x+) . Then graph one... Problem 7CP Problem 8CP Problem 9CP Problem 1CVC Problem 2CVC Problem 3CVC Problem 4CVC Problem 5CVC Problem 6CVC Problem 7CVC Problem 8CVC Problem 9CVC Problem 10CVC Problem 1PE Problem 2PE Problem 3PE Problem 4PE Problem 5PE Problem 6PE Problem 7PE Problem 8PE Problem 9PE Problem 10PE Problem 11PE Problem 12PE Problem 13PE Problem 14PE Problem 15PE Problem 16PE Problem 17PE: In Exercises 17-30, determine the amplitude, period, and phase shift of each function. Then graph... Problem 18PE Problem 19PE Problem 20PE Problem 21PE Problem 22PE Problem 23PE Problem 24PE Problem 25PE Problem 26PE Problem 27PE: In Exercises 17-30, determine the amplitude, period, and phase shift of each function. Then graph... Problem 28PE: In Exercises 17-30, determine the amplitude, period, and phase shift of each function. Then graph... Problem 29PE: In Exercises 17-30, determine the amplitude, period, and phase shift of each function. Then graph... Problem 30PE: In Exercises 17-30, determine the amplitude, period, and phase shift of each function. Then graph... Problem 31PE Problem 32PE Problem 33PE: In Exercises 31-34, determine the amplitude of each function. Then graph the function and y=cosx in... Problem 34PE Problem 35PE: In Exercises 35-42, determine the amplitude and period of each function. Then graph one period of... Problem 36PE: In Exercises 35-42, determine the amplitude and period of each function. Then graph one period of... Problem 37PE: In Exercises 35-42, determine the amplitude and period of each function. Then graph one period of... Problem 38PE: In Exercises 35-42, determine the amplitude and period of each function. Then graph one period of... Problem 39PE: In Exercises 35-42, determine the amplitude and period of each function. Then graph one period of... Problem 40PE: In Exercises 35-42, determine the amplitude and period of each function. Then graph one period of... Problem 41PE: In Exercises 35-42, determine the amplitude and period of each function. Then graph one period of... Problem 42PE: In Exercises 35-42, determine the amplitude and period of each function. Then graph one period of... Problem 43PE: In Exercises 43-52, determine the amplitude, period, and phase shift of each function. Then graph... Problem 44PE: In Exercises 43-52, determine the amplitude, period, and phase shift of each function. Then graph... Problem 45PE: In Exercises 43-52, determine the amplitude, period, and phase shift of each function. Then graph... Problem 46PE: In Exercises 43-52, determine the amplitude, period, and phase shift of each function. Then graph... Problem 47PE: In Exercises 43-52, determine the amplitude, period, and phase shift of each function. Then graph... Problem 48PE: In Exercises 43-52, determine the amplitude, period, and phase shift of each function. Then graph... Problem 49PE: In Exercises 43-52, determine the amplitude, period, and phase shift of each function. Then graph... Problem 50PE: In Exercises 43-52, determine the amplitude, period, and phase shift of each function. Then graph... Problem 51PE: In Exercises 43-52, determine the amplitude, period, and phase shift of each function. Then graph... Problem 52PE: In Exercises 43-52, determine the amplitude, period, and phase shift of each function. Then graph... Problem 53PE: In Exercises 53-60, use a vertical shift to graph one period of the function.
53.
Problem 54PE: In Exercises 53-60, use a vertical shift to graph one period of the function.
54.
Problem 55PE: In Exercises 53-60, use a vertical shift to graph one period of the function.
55.
Problem 56PE: In Exercises 53-60, use a vertical shift to graph one period of the function. y=cosx+3 Problem 57PE: In Exercises 53-60, use a vertical shift to graph one period of the function.
57.
Problem 58PE: In Exercises 53-60, use a vertical shift to graph one period of the function. y=2cos12x+1 Problem 59PE: In Exercises 53-60, use a vertical shift to graph one period of the function.
59.
Problem 60PE: In Exercises 53-60, use a vertical shift to graph one period of the function.
60.
Problem 61PE: In Exercises 61-66, find an equation for each graph. Problem 62PE: In Exercises 61-66, find an equation for each graph.
Problem 63PE: In Exercises 61-66, find an equation for each graph. Problem 64PE: In Exercises 61-66, find an equation for each graph. Problem 65PE: In Exercises 61-66, find an equation for each graph. Problem 66PE: In Exercises 61-66, find an equation for each graph.
66.
Problem 67PE: In Exercises 67-70, graph one period of each function. y=|2cosx2| Problem 68PE: In Exercises 67-70, graph one period of each function.
68.
Problem 69PE: In Exercises 67-70, graph one period of each function. y=|3sinx| Problem 70PE: In Exercises 67-70, graph one period of each function.
70.
Problem 71PE: In Exercises 71-74, graph f g, and h in the same rectangular coordinate system for 0x2 . Obtain the... Problem 72PE: In Exercises 71-74, graph f g, and h in the same rectangular coordinate system for 0x2 . Obtain the... Problem 73PE: In Exercises 71-74, graph f, g, and h in the same rectangular coordinate system for 0x2 . Obtain the... Problem 74PE: In Exercises 71-74, graph f, g, and h in the same rectangular coordinate system for . Obtain the... Problem 75PE: In the theory of biorhythms, sine functions are used to measure a person's potential. You can obtain... Problem 76PE: In the theory of biorhythms, sine functions are used to measure a person's potential. You can obtain... Problem 77PE: In the theory of biorhythms, sine functions are used to measure a person's potential. You can obtain... Problem 78PE: In the theory of biorhythms, sine functions are used to measure a person's potential. You can obtain... Problem 79PE: In the theory of biorhythms, sine functions are used to measure a person's potential. You can obtain... Problem 80PE: In the theory of biorhythms, sine functions are used to measure a person's potential. You can obtain... Problem 81PE: In the theory of biorhythms, sine functions are used to measure a person's potential. You can obtain... Problem 82PE: In the theory of biorhythms, sine functions are used to measure a persons potential. You can obtain... Problem 83PE: Rounded to the nearest hour, Los Angeles averages 14 hours of daylight in June, 10 hours in... Problem 84PE: A clock with an hour hand that is 15 inches long is hanging on a wall. At noon, the distance between... Problem 85PE: The number of hours of daylight in Boston is given by y=3sin2365(x79)+12, where x is the number of... Problem 86PE: 86. The average monthly temperature, y, in degrees Fahrenheit, for Juneau Alaska, can be modeled by.... Problem 87PE: 87. The following figure shows the depth of water at the end of a boat dock. The depth is 6 feet at... Problem 88PE: The figure at the top of the next column shows the depth of water at the end of a boat dock. The... Problem 89PE: 89. Without drawing a graph, describe the behavior of the basic sine curve.
Problem 90PE: What is the amplitude of the sine function? What does this tell you about the graph? Problem 91PE: 91. If you are given the equation of a sine function, how do you determine the period?
Problem 92PE: What does a phase shift indicate about the graph of a sine function? How do you determine the phase... Problem 93PE: Describe a general procedure for obtaining the graph of y=Asin(BxC). Problem 94PE: Without drawing a graph, describe the behavior of the basic cosine curve. Problem 95PE: 95. Describe a relationship between the graphs of x and .
Problem 96PE: Describe the relationship between the graphs of y=Acos(BxC)andy=Acos(BxC)+D. Problem 97PE: Biorhythm cycles provide interesting applications of sinusoidal graphs. But do you believe in the... Problem 98PE: Use a graphing utility to verify any five of the sine curves that you drew by hand in Exercises... Problem 99PE: Use a graphing utility to verify any five of the cosine curves that you drew by hand in Exercises... Problem 100PE: Use a graphing utility to verify any two of the sinusoidal curves with vertical shifts that you drew... Problem 101PE: In Exercises 101-104, use a graphing utility to graph two periods of the function. y=3sin(2x+) Problem 102PE: In Exercises 101-104, use a graphing utility to graph two periods of the function.
102.
Problem 103PE: In Exercises 101-104, use a graphing utility to graph two periods of the function. y=0.2sin(10x+) Problem 104PE: In Exercises 101-104, use a graphing utility to graph two periods of the function.
104.
Problem 105PE: Use a graphing utility to graph y=sinx and y=xx36+x5120 in a [,,2] by [2,2,1] viewing rectangle. How... Problem 106PE: 106. Use a graphing utility to graph and
in a by
rectangle. How do the graphs compare?
Problem 107PE: Use a graphing utility to graph y=sinx+sin2x2+sin3x3+sin4x4 in a [2,2,2] by [2,2,1] viewing... Problem 108PE: Use a graphing utility to graph y=sinxsin3x9+sin5x25 in a [2,2,2] by [2,2,1] viewing rectangle. How... Problem 109PE: The data show the average monthly temperatures for Washington. D.C. x (Month) Average Monthly... Problem 110PE: 110. Repeat Exercise 109 for data of your choice. The data can involve the average monthly... Problem 111PE: Make Sense? In Exercises 111-114, determine whether each statement makes sense or does not make... Problem 112PE: Make Sense? In Exercises 111-114, determine whether each statement makes sense or does not make... Problem 113PE: Make Sense? In Exercises 111-114, determine whether each statement makes sense or does not make... Problem 114PE: Make Sense? In Exercises 111-114, determine whether each statement makes sense or does not make... Problem 115PE: 115. Determine the range of each of the following functions. Then give a viewing rectangle, or... Problem 116PE: Write the equation for a cosine function with amplitude , period 1.and phase shift -2. Problem 117PE: Use these identities to solve Exercises 117-118. Use the identity for sin2x to graph one period of... Problem 118PE: Use these identities to solve Exercises 117-118. Use the identity for cos2x to graph one period of... Problem 120PE: 120. Find the slant asymptote of
.
(Section 3.5. Example 8)
Problem 121PE: 121. Solve: .
(Section 4.4, Example 1)
Problem 122PE: Solve: log2(2x+1)log2(x2)=1. (Section 4.4, Example 7) Problem 123PE: Exercises 123-125 will help you prepare for the material covered in the next section.
123. Solve:.
Problem 124PE: Exercises 123-125 will help you prepare for the material covered in the next section. Simplify:... Problem 125PE: Exercises 123-125 will help you prepare for the material covered in the next section.
125. a. Graph... format_list_bulleted