what values for q(0
There seems to be part of the problem statement missing. There is no equation without a sign of equality (= something else). Also, the expression has no variable q for the former statement to be relevant...
\[q(0\leq \le2\pi)\]
there is a q betweeen the arrows
I get that part... but we are looking for values that satisfy this "equation": \( \tan ^2 \theta - \dfrac{3}{2} \sec \theta \) \( 0 \le q \le 2\pi \) There are no q's in this expression, and there are no equality signs to make it an equation. \( ax + b = c\) This is an equation, it has an equals sign. \( ax + b \), \(c \) These are expressions. If this is all there is, then the expression does not depend on q so any value would "work".
I am reallyconfused
So, there is nothing more to this part? \( \tan^2 \theta - \dfrac{3}{2} \sec \theta \) Like... \( \tan^2 \theta - \dfrac{3}{2} \sec \theta \color{red}{= q} \) Or something similar?
wtf
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