asked 45.7k views
17 votes
Let O be an angle in quadrant III such that cos 0 = -2/5 Find the exact values of csco and tan 0.​

asked
User MikeTwo
by
8.6k points

1 Answer

10 votes

well, we know that θ is in the III Quadrant, where the sine is negative and the cosine is negative as well, or if you wish, where "x" as well as "y" are both negative, now, the hypotenuse or radius of the circle is just a distance amount, so is never negative, so in the equation of cos(θ) = - (2/5), the negative must be the adjacent side, thus


cos(\theta)=\cfrac{\stackrel{adjacent}{-2}}{\underset{hypotenuse}{5}}\qquad \textit{let's find the \underline{opposite side}} \\\\\\ \textit{using the pythagorean theorem} \\\\ c^2=a^2+b^2\implies √(c^2-a^2)=b \qquad \begin{cases} c=hypotenuse\\ a=adjacent\\ b=opposite\\ \end{cases} \\\\\\ \pm√(5^2 - (-2)^2)=b\implies \pm√(25-4)\implies \pm√(21)=b\implies \stackrel{III~Quadrant}{-√(21)=b}


\dotfill\\\\ csc(\theta)\implies \cfrac{\stackrel{hypotenuse}{5}}{\underset{opposite}{-√(21)}}\implies \stackrel{\textit{rationalizing the denominator}}{-\cfrac{5}{√(21)}\cdot \cfrac{√(21)}{√(21)}\implies -\cfrac{5√(21)}{21}} \\\\\\ tan(\theta)=\cfrac{\stackrel{opposite}{-√(21)}}{\underset{adjacent}{-2}}\implies tan(\theta)=\cfrac{√(21)}{2}

answered
User Patrick Jackson
by
9.1k points
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