Help Entering Answers Harry Potter is showing off his broom flying skills by doing a loop de loop given by the parametrization r(r)= (4r, 2 sin(r).5+ 2 cos()) with € (0,7]. Unfortunately it is night time and there are mosquitoes around him well approximated by the mosquito density function mosquitoes M(x, y, z)= As Harry flies the mosquitoes splat against his nice clean uniform. *√/20 How many mosquitoes does Harry have on his uniform after his loop de loop? (Assume Harry Potter is particle-like) Emosquitoes Answer:

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Harry Potter is showing off his broom flying skills by doing a loop de loop given by the parametrization r(t)= (4r, 2 sin(f),5+2 cos(r))
with € [0,7x]. Unfortunately it is night time and there are mosquitoes around him well approximated by the mosquito density function
As Harry flies the mosquitoes splat against his nice clean uniform.
mosquitoes
M(x, y, z)=
Z
*√20
How many mosquitoes does Harry have on his uniform after his loop de loop? (Assume Harry Potter is particle-like)
Emosquitoes
Answer:
Transcribed Image Text:Help Entering Answers Harry Potter is showing off his broom flying skills by doing a loop de loop given by the parametrization r(t)= (4r, 2 sin(f),5+2 cos(r)) with € [0,7x]. Unfortunately it is night time and there are mosquitoes around him well approximated by the mosquito density function As Harry flies the mosquitoes splat against his nice clean uniform. mosquitoes M(x, y, z)= Z *√20 How many mosquitoes does Harry have on his uniform after his loop de loop? (Assume Harry Potter is particle-like) Emosquitoes Answer:
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