The surface area of a region is 150 cm², d = 5 mm, and & = 10 for a parallel-plate capacitor. Calculate: 1. capacitance: Blank 1 pF 2. After connecting a 60-V battery across the capacitor, calculate: a. Electric field magnitude: Blank 2 b. Electric Flux Density: Blank 3 μC/m2 c. Charge of the plates: Blank 4 nC d. Total Stored Electrostatic energy: Blank 5 nj

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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The surface area of a region is 150 cm², d = 5 mm,
and & = 10 for a parallel-plate capacitor. Calculate:
1. capacitance: Blank 1 pF
2. After connecting a 60-V battery across the
capacitor, calculate:
a. Electric field magnitude: Blank 2
b. Electric Flux Density: Blank 3 μC/m2
c. Charge of the plates: Blank 4 nC
d. Total Stored Electrostatic energy:
Blank 5 nj
Transcribed Image Text:The surface area of a region is 150 cm², d = 5 mm, and & = 10 for a parallel-plate capacitor. Calculate: 1. capacitance: Blank 1 pF 2. After connecting a 60-V battery across the capacitor, calculate: a. Electric field magnitude: Blank 2 b. Electric Flux Density: Blank 3 μC/m2 c. Charge of the plates: Blank 4 nC d. Total Stored Electrostatic energy: Blank 5 nj
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