In Exercises 54–67, solve each equation on the interval [0, 2𝝅). Use exact values where possible or give approximate solutions correct to four decimal places. sin 2x = √ 3 sin x
Ch. 3 - Trigonometric Identities and Equations

3장, 문제 3.RE.35b
In Exercises 35–38, find the exact value of the following under the given conditions: b. cos(α﹣β)
sin α = 3/5, 0 < α < 𝝅/2, and sin β = 12/13, 𝝅/2 < β < 𝝅.
검증된 단계별 안내1
Identify the given information: \( \sin \alpha = \frac{3}{5} \) with \( 0 < \alpha < \frac{\pi}{2} \), and \( \sin \beta = \frac{12}{13} \) with \( \frac{\pi}{2} < \beta < \pi \).
Determine the quadrant of each angle to find the signs of \( \cos \alpha \) and \( \cos \beta \). Since \( \alpha \) is in the first quadrant, \( \cos \alpha > 0 \). Since \( \beta \) is in the second quadrant, \( \cos \beta < 0 \).
Use the Pythagorean identity to find \( \cos \alpha \) and \( \cos \beta \):
\[ \cos \theta = \pm \sqrt{1 - \sin^2 \theta} \]
Calculate:
\[ \cos \alpha = +\sqrt{1 - \left(\frac{3}{5}\right)^2} \]
\[ \cos \beta = -\sqrt{1 - \left(\frac{12}{13}\right)^2} \]
Recall the cosine difference identity:
\[ \cos(\alpha - \beta) = \cos \alpha \cos \beta + \sin \alpha \sin \beta \]
Substitute the values of \( \sin \alpha \), \( \sin \beta \), \( \cos \alpha \), and \( \cos \beta \) into the identity to express \( \cos(\alpha - \beta) \) exactly.

비슷한 문제에 대한 검증된 영상 답변:
이 영상 해법은 위 문제에 도움이 된다고 튜터들이 추천한 것입니다.
영상 길이:
7m도움이 되었나요?
주요 개념
질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.
Sum and Difference Formulas for Cosine
The cosine of the difference of two angles, cos(α - β), can be found using the formula cos(α - β) = cos α cos β + sin α sin β. This identity allows us to express the cosine of a difference in terms of the sines and cosines of the individual angles, which is essential when given sine values and angle ranges.
추천 영상:
Verifying Identities with Sum and Difference Formulas
Determining Cosine from Sine and Quadrant Information
Given sin α and sin β along with their angle ranges, we can find cos α and cos β using the Pythagorean identity cos²θ = 1 - sin²θ. The sign of cosine depends on the quadrant of the angle, so knowing the interval for α and β helps determine whether cosine is positive or negative.
추천 영상:
Sine, Cosine, & Tangent of 30°, 45°, & 60°
Angle Measurement in Radians and Quadrant Boundaries
Angles are given in radians with specified intervals (e.g., 0 < α < 3π/2). Understanding these intervals helps identify the quadrant in which each angle lies, which is crucial for determining the signs of trigonometric functions and correctly applying identities.
추천 영상:
가이드 코스
Converting between Degrees & Radians
관련 실천
교과서 질문
658
views
교과서 질문
In Exercises 39–42, use double- and half-angle formulas to find the exact value of each expression. sin 22.5°
729
views
교과서 질문
In Exercises 35–38, find the exact value of the following under the given conditions:
b. cos(α﹣β)
sin α = -1/3, 𝝅 < α < 3𝝅/2, and cos β = -1/3, 𝝅 < β < 3𝝅/2.
992
views
교과서 질문
In Exercises 54–67, solve each equation on the interval [0, 2𝝅). Use exact values where possible or give approximate solutions correct to four decimal places. cos 2x = -1
527
views
교과서 질문
In Exercises 35–38, find the exact value of the following under the given conditions:
c. tan(α + β)
sin α = 3/5, 0 < α < 𝝅/2, and sin β = 12/13, 𝝅/2 < β < 𝝅.
843
views
교과서 질문
In Exercises 50–53, find all solutions of each equation. cos x = ﹣1/2
485
views
