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Solve the problem.
-Let angle POQ be designated ϴ. Angles PQR and VRQ are right angles. If ϴ = 38°, find the length of OV accurate to four decimal places.
Q6: <span class="ql-formula" data-value="\frac { \pi } {
Q32: <span class="ql-formula" data-value="y=2-3 \sec \left(x-\frac{\pi}{5}\right)"><span class="katex"><span class="katex-mathml"><math
Q86: <img src="https://d2lvgg3v3hfg70.cloudfront.net/TB3045/.jpg" alt=" A)
Q108: csc 0.2475<br>A)0.9695<br>B)0.2450<br>C)1.0314<br>D)4.0820
Q119: sec s = 3.7404<br>A)0.2706<br>B)1.8414<br>C)1.3002<br>D)4.9830
Q149: An object is spinning around a
Q163: Find <span class="ql-formula" data-value="\cos A"><span
Q165: What is the difference in area
Q166: <span class="ql-formula" data-value="\cos \theta = \frac {
Q284: <img src="https://d2lvgg3v3hfg70.cloudfront.net/TB3045/.jpg" alt="