4 cV16-x² 3. Evaluate the integral L-rz(4 –- x² – y²)dy dx by first converting it to | /16-x² polar coordinates. Xャ i6-x2 X r cos e - liルーx

Trigonometry (MindTap Course List)
10th Edition
ISBN:9781337278461
Author:Ron Larson
Publisher:Ron Larson
Chapter6: Topics In Analytic Geometry
Section6.2: Introduction To Conics: parabolas
Problem 4ECP: Find an equation of the tangent line to the parabola y=3x2 at the point 1,3.
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I understand how to change the integrated, but how the heck do I change the bounds? Thank you!
V16-x2
3. Evaluate the integral o LAs-rz(4 – x² - y²)dy dx by first converting it to
polar coordinates.
X= r cos e
4. Find the linear approximation for f (x, y) =- at the point P(2, -5). Use this to
estimate f(2.05, –4.97).
Transcribed Image Text:V16-x2 3. Evaluate the integral o LAs-rz(4 – x² - y²)dy dx by first converting it to polar coordinates. X= r cos e 4. Find the linear approximation for f (x, y) =- at the point P(2, -5). Use this to estimate f(2.05, –4.97).
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