For Exercises 64-68, use the fundamental trigonometric identities as needed. Give that cos x ≈ 0.6691 , Approximate the given function values. Round to 4 decimal places. a. sin x b. sin π 2 − x c. tan x d. cos π 2 − x e. sec x f. cot π 2 − x
For Exercises 64-68, use the fundamental trigonometric identities as needed. Give that cos x ≈ 0.6691 , Approximate the given function values. Round to 4 decimal places. a. sin x b. sin π 2 − x c. tan x d. cos π 2 − x e. sec x f. cot π 2 − x
Solution Summary: The author calculates the value of mathrmsinx, rounded to 4 decimal places, by using fundamental trigonometric identities.
For Exercises 64-68, use the fundamental trigonometric identities as needed.
Give that
cos
x
≈
0.6691
, Approximate the given function values. Round to
4
decimal places.
a.
sin
x
b.
sin
π
2
−
x
c.
tan
x
d.
cos
π
2
−
x
e.
sec
x
f.
cot
π
2
−
x
Equations that give the relation between different trigonometric functions and are true for any value of the variable for the domain. There are six trigonometric functions: sine, cosine, tangent, cotangent, secant, and cosecant.
2. Suppose f(x) = 3x² - 5x. Show all your work for the problems below.
write it down for better understanding please
1. Suppose F(t) gives the temperature in degrees Fahrenheit t minutes after 1pm. With a
complete sentence, interpret the equation F(10) 68. (Remember this means explaining
the meaning of the equation without using any mathy vocabulary!) Include units. (3 points)
=
University Calculus: Early Transcendentals (4th Edition)
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Fundamental Trigonometric Identities: Reciprocal, Quotient, and Pythagorean Identities; Author: Mathispower4u;https://www.youtube.com/watch?v=OmJ5fxyXrfg;License: Standard YouTube License, CC-BY