Let D be the region in the second quadrant within the circle x2 + y2 = 2y. Then in polar coordinates the integral S,n x2 dA= t 2 sin 0 3 cos? 0 dr de 2 r2 sin 0 (B) F S s³ sin 0 cos 0 dr d0 -2 cos 0...


Let D be the region in the second quadrant within the circle x2 + y2 = 2y.<br>Then in polar coordinates the integral S,n x2 dA=<br>t 2 sin 0 3 cos? 0 dr de<br>2<br>r2 sin 0<br>(B) F S<br>s³ sin 0 cos 0 dr d0<br>-2 cos 0<br>(C) f S,<br>r3 sin 0 cos 0 dr d0<br>2<br>-2 cos 0<br>(D) E So<br>p3 sin? 0 dr de<br>2<br>(E) F *<br>2 sin 0<br>Sz S r3 cos² 0 dr d0<br>

Extracted text: Let D be the region in the second quadrant within the circle x2 + y2 = 2y. Then in polar coordinates the integral S,n x2 dA= t 2 sin 0 3 cos? 0 dr de 2 r2 sin 0 (B) F S s³ sin 0 cos 0 dr d0 -2 cos 0 (C) f S, r3 sin 0 cos 0 dr d0 2 -2 cos 0 (D) E So p3 sin? 0 dr de 2 (E) F * 2 sin 0 Sz S r3 cos² 0 dr d0

Jun 03, 2022
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