a. E = (sin T/2 COSTI + cOS TƯ/2 sin T/2) ap + sin? ap + (cos TI COS T/2 - sin TI sin T/2) az b. E = (sin T/2 COSTI + cOS TƯ/2 sin T) a, + sin? T/2 ap + (cos TI COS T/2 - sin TI sin T/2) az O C. E = (sin TƯ2 cOsT/2 + coS T/2 sin T/2) a, + sin? T/2 ap + (coS TI coS T/2 - sin TI sin T/2) a d. E = (sin Tt COSTI + cOS T/2 sin T) a, + sin? T ap + (cOS TI COS T/2 - sin Tt sin T/2) az

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Transform E = cos o a, + sin o ag + sin2e a, at into cylindrical coordinates and then evaluate at P (3, T/2, T)
a.
E = (sin T/2 COSTI + COS T/2 sin T/2) a, + sin? ap + (cOS TI COS TU/2 - sin TI sin T/2) az
Ob.
E = (sin T/2 COST + COS T/2 sin TI) a, + sin? T/2 a, + (coS TI COS T/2 - sin TI sin T/2) az
E = (sin T/2 COSTI/2 + COS T/2 sin T/2) a, + sin? T/2 ap + (coS TI COS T/2 - sin TI sin T/2) a,
Od.
E = (sin TI COSTI + cOS T/2 sin T) a, + sin? a, + (cOS TI COS T/2 - sin TI sin T/2) a,
Transcribed Image Text:Transform E = cos o a, + sin o ag + sin2e a, at into cylindrical coordinates and then evaluate at P (3, T/2, T) a. E = (sin T/2 COSTI + COS T/2 sin T/2) a, + sin? ap + (cOS TI COS TU/2 - sin TI sin T/2) az Ob. E = (sin T/2 COST + COS T/2 sin TI) a, + sin? T/2 a, + (coS TI COS T/2 - sin TI sin T/2) az E = (sin T/2 COSTI/2 + COS T/2 sin T/2) a, + sin? T/2 ap + (coS TI COS T/2 - sin TI sin T/2) a, Od. E = (sin TI COSTI + cOS T/2 sin T) a, + sin? a, + (cOS TI COS T/2 - sin TI sin T/2) a,
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