Part A A 5.00-pF parallel-plate air-filled capacitor with circular plates is to be used in a circuit in which it will be subjected to potentials of up to 1.00 × 102 V. The electric field between the plates is to be no greater than 1.00 x 10 N/C. As a budding electrical engineer for Live-Wire Electronics, your task is to design the capacitor by finding what its physical dimensions and separation must be. What must the radius of the plates in the designed capacitor be? R = ΜΕ ΑΣΦ 0 圖? cm Δ Submit Request Answer Part B What must the separation of the plates in the designed capacitor be? d = 跖 ΜΕ ΑΣΦ Submit Request Answer Part C 0 ? Find the maximum charge these plates can hold. Q = Submit 跖 ΜΕ ΑΣΦ Request Answer 0 ? cm C
Part A A 5.00-pF parallel-plate air-filled capacitor with circular plates is to be used in a circuit in which it will be subjected to potentials of up to 1.00 × 102 V. The electric field between the plates is to be no greater than 1.00 x 10 N/C. As a budding electrical engineer for Live-Wire Electronics, your task is to design the capacitor by finding what its physical dimensions and separation must be. What must the radius of the plates in the designed capacitor be? R = ΜΕ ΑΣΦ 0 圖? cm Δ Submit Request Answer Part B What must the separation of the plates in the designed capacitor be? d = 跖 ΜΕ ΑΣΦ Submit Request Answer Part C 0 ? Find the maximum charge these plates can hold. Q = Submit 跖 ΜΕ ΑΣΦ Request Answer 0 ? cm C
Chapter7: Electric Potential
Section: Chapter Questions
Problem 79P: (a) Will the electric field strength between two parallel conducting plates exceed the breakdown...
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