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Section 12_4 - x 2 y 2 = 2 x View All Responses Notes...

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WebAssign.net Tuesday, November 29, 2005 08:04 PM EST Logged in as [email protected] Logout Home | My Assignments | Grades | Communication | Calendar Guide | Help | My Options Home > My Assignments > Section 12.4 (Homework) GRAHAM JONATHAN TIMOTHY MA 242, section 013, Fall 2005 Instructor: Frank Ingram North Carolina State University About this Assignment Due: Friday, October 28, 2005 11:01 PM EDT Current Score: 16 out of 16 Question Score Description Double Integrals in Polar Coordinates pts subs 1 3/3 1/20 3/3 Viewing: Last Response View: All Responses Notes 1. [SCalcCC2 12.4.12.] Evaluate the given integral by changing to polar coordinates. , where R is the region in the first quadrant enclosed by the circle x 2 + y 2 = 25 582.2 [582] pts subs 1 3/3 1/20 3/3 Viewing: Last Response 2. [SCalcCC2 12.4.14.] Evaluate the given integral by changing to polar coordinates. , where D is the region in the first quadrant that lies between the circles x 2 + y 2 = 4 and x 2
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Unformatted text preview: x 2 + y 2 = 2 x View: All Responses Notes 1.0959 [1.1] pts subs 1 3/3 1/20 3/3 Viewing: Last Response View: All Responses Notes 3. [SCalcCC2 12.4.16.] Use polar coordinates to find the volume of the given solid. Inside the sphere x 2 + y 2 + z 2 = 16 and outside the cylinder x 2 + y 2 = 4 174.1 [174] pts subs 1 3/3 1/20 3/3 Viewing: Last Response View: All Responses Notes 4. [SCalcCC2 12.4.18.] Use polar coordinates to find the volume of the given solid. Bounded by the paraboloid z = 10 - 3 x 2- 3 y 2 and the plane z = 4 18.85 [18.8] pts subs 1 4/4 1/20 4/4 5. [SCalcCC2 12.4.26.] Evaluate the iterated integral by converting to polar coordinates. Viewing: Last Response View: All Responses Notes (1/5)*pi*a^5 [(1/5)*pi*a^5] Home My Assignments WebAssign tm 4.0 © 1997-2005 by North Carolina State University. All rights reserved....
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