3.1 Evaluate the following circuit and determine the following: Given: C1=10uF, C2=20UF, C3= 13UF, C4= 15uF, C5= 9uF, V=300 V C2 C1 C3 C5 C4 I+) VDC1 3.1.1 The total capacitance of the circuit; 3.1.2 The total charge delivered by the source; 3.1.3 The potential difference across C3;

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3.1 Evaluate the following circuit and determine the following:
Given: C1=10uF, C2=20UF, C3= 13UF, C4= 15uF, C5= 9uF, V=300 V
C2
C1
C3
C5
C4
I+)
VDC1
3.1.1 The total capacitance of the circuit;
3.1.2 The total charge delivered by the source;
3.1.3 The potential difference across C3;
Transcribed Image Text:3.1 Evaluate the following circuit and determine the following: Given: C1=10uF, C2=20UF, C3= 13UF, C4= 15uF, C5= 9uF, V=300 V C2 C1 C3 C5 C4 I+) VDC1 3.1.1 The total capacitance of the circuit; 3.1.2 The total charge delivered by the source; 3.1.3 The potential difference across C3;
3.2 A 50 k2 resistor is placed in series with the circuit shown in question 3.1. Calculate the following:
3.2.1 The time constant.
3.2.2 The initial charging current
3.3 A DC voltage source supplies a current of 50A to a conductor. The conductor is at a right angle to
to a magnetic field having a flux density of 2T. If the force driving the conductor is 10N, calculate the
length of the current-carrying conductor inside the magnetic field.
3.4 An iron ring of cross-sectional area 2 cm? has a radial air gap of 2 mm cut into it. If the mean length of
the iron path is 40 cm. Determine the magnetomotive force to produce a flux of 1.85 mWb. The field
strength is 1650 A/m.
Transcribed Image Text:3.2 A 50 k2 resistor is placed in series with the circuit shown in question 3.1. Calculate the following: 3.2.1 The time constant. 3.2.2 The initial charging current 3.3 A DC voltage source supplies a current of 50A to a conductor. The conductor is at a right angle to to a magnetic field having a flux density of 2T. If the force driving the conductor is 10N, calculate the length of the current-carrying conductor inside the magnetic field. 3.4 An iron ring of cross-sectional area 2 cm? has a radial air gap of 2 mm cut into it. If the mean length of the iron path is 40 cm. Determine the magnetomotive force to produce a flux of 1.85 mWb. The field strength is 1650 A/m.
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