Ex. 1922. Fig 1922 Exponential Pulses. A=16 ms, B=128 ms, C=33 volts The time constant of the exponential function is A. Find the a) average voltage, b) rms voltage, and c) duty cycle If the periodic voltage exists across a 42 Ohm resistor, find the power in watts dissipated by the resistor. ans:4

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Ex. 1922. Fig 1922 Exponential Pulses. A=16 ms, B=128 ms, C=33 volts The time constant of the exponential function is A. Find the a) average voltage, b) rms voltage, and c) duty cycle If the periodic voltage exists across a 42 Ohm resistor, find the power in watts dissipated by the resistor. ans:4
v(t) volts
0
A
B
Figure 1922 Exponential Pulses
(B+A)
t (ms)
Transcribed Image Text:v(t) volts 0 A B Figure 1922 Exponential Pulses (B+A) t (ms)
Expert Solution
Step 1

Given:

Electrical Engineering homework question answer, step 1, image 1

With, A=16 ms, B=128 ms, C=33 volts, 

The time constant of the exponential function is A=16 ms. 

To find:

a) average voltage, b) rms voltage, and c) duty cycle.

 d) If the periodic voltage exists across a 42 Ohm resistor, find the power in watts dissipated by the resistor.

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