Given the circuit shown to the right, which has reached electrostatic equilibrium, a) Find CE, the single capacitance equivalent to the circuit. b) Find the charge on one plate of each of the original capacitors. c) Find the change in potential (sign and magnitude) in going from point 'a' to point 'b' in the original circuit. C₁-2μf Vbat 18.0V C3 -6uf b C₂=4uf V bat C4-8uf equivalent circuit CE
Given the circuit shown to the right, which has reached electrostatic equilibrium, a) Find CE, the single capacitance equivalent to the circuit. b) Find the charge on one plate of each of the original capacitors. c) Find the change in potential (sign and magnitude) in going from point 'a' to point 'b' in the original circuit. C₁-2μf Vbat 18.0V C3 -6uf b C₂=4uf V bat C4-8uf equivalent circuit CE
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![EC-3 Given the circuit shown to the right, which
has reached electrostatic equilibrium,
a) Find CE, the single capacitance
equivalent to the circuit.
b) Find the charge on one plate of
each of the original capacitors.
c) Find the change in potential (sign
and magnitude) in going from
point 'a' to point 'b' in the original
circuit.
C₁=2μf
Vbat 18.0V C3-6μf
-18.0v
b
C₂=4µf
Vbat
=
C4-8uf equivalent
circuit](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbd338c88-2017-4982-8e76-bc911af63510%2F9e8259f4-c985-4432-a9a6-75a0b0cd25dd%2Fmc496dq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:EC-3 Given the circuit shown to the right, which
has reached electrostatic equilibrium,
a) Find CE, the single capacitance
equivalent to the circuit.
b) Find the charge on one plate of
each of the original capacitors.
c) Find the change in potential (sign
and magnitude) in going from
point 'a' to point 'b' in the original
circuit.
C₁=2μf
Vbat 18.0V C3-6μf
-18.0v
b
C₂=4µf
Vbat
=
C4-8uf equivalent
circuit
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