In figure shown, a potential difference V = 100 V ia applied across a capacitor arrangement with capacitances Ci = 10.0µF, C2 = 5.00µF, C3 = 4.00µF. What are a) charge q3, b) potential difference V3, and c) stored energy U3 for capacitor 3. d) charge q1, e) potential difference V1, f) stored energy Ui for capacitor 1 and g) charge q2, h) potential difference V2, i) stored energy U2 for capacitor 2. 2.

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter20: Electric Potential And Capacitance
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In figure shown, a potential difference V = 100 V ia applied across a capacitor arrangement with capacitances
C1 = 10.0µF, C2 = 5.00µF, C3 = 4.00µF. What are a) charge q3, b) potential difference V3, and c) stored energy U3
for capacitor 3. d) charge q1, e) potential difference V1, f) stored energy U1 for capacitor 1 and g) charge q2, h)
potential difference V2, i) stored energy U2 for capacitor 2.
C1
V
C3
C2
2.
Transcribed Image Text:In figure shown, a potential difference V = 100 V ia applied across a capacitor arrangement with capacitances C1 = 10.0µF, C2 = 5.00µF, C3 = 4.00µF. What are a) charge q3, b) potential difference V3, and c) stored energy U3 for capacitor 3. d) charge q1, e) potential difference V1, f) stored energy U1 for capacitor 1 and g) charge q2, h) potential difference V2, i) stored energy U2 for capacitor 2. C1 V C3 C2 2.
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