Given the waveform of a voltage source shown in figure P7.8 find: a. The steady DC voltage that would cause the same heating effect across a resistance. b. The average current supplied to a 10-ohm resistor connected across the voltage source. c. The average power supplied to a 1-ohm resistor connected across the voltage source

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Given the waveform of a voltage source shown in figure P7.8 find:

a. The steady DC voltage that would cause the same heating effect across a resistance.

b. The average current supplied to a 10-ohm resistor connected across the voltage source.

c. The average power supplied to a 1-ohm resistor connected across the voltage source.

The image depicts a waveform graph labeled as "Figure P7.8." It represents a square wave signal over time. The vertical axis is labeled \( v_s(t), V \) which indicates the voltage in volts. The horizontal axis is labeled \( t, s \), representing time in seconds.

### Description of the Graph:

- **Voltage Levels**: The waveform alternates between two voltage levels: +1V and -3V.
- **Time Intervals**: 
  - The signal remains at +1V from \( t = 0 \) to \( t = 1 \), \( t = 2 \) to \( t = 3 \), \( t = 4 \) to \( t = 5 \), and beyond \( t = 6 \).
  - The signal shifts to -3V from \( t = 1 \) to \( t = 2 \), \( t = 3 \) to \( t = 4 \), \( t = 5 \) to \( t = 6 \).

The waveform is periodic and exhibits a square shape, indicating a simple digital signal or pulse train. This graph is useful for understanding basic signal processing concepts.
Transcribed Image Text:The image depicts a waveform graph labeled as "Figure P7.8." It represents a square wave signal over time. The vertical axis is labeled \( v_s(t), V \) which indicates the voltage in volts. The horizontal axis is labeled \( t, s \), representing time in seconds. ### Description of the Graph: - **Voltage Levels**: The waveform alternates between two voltage levels: +1V and -3V. - **Time Intervals**: - The signal remains at +1V from \( t = 0 \) to \( t = 1 \), \( t = 2 \) to \( t = 3 \), \( t = 4 \) to \( t = 5 \), and beyond \( t = 6 \). - The signal shifts to -3V from \( t = 1 \) to \( t = 2 \), \( t = 3 \) to \( t = 4 \), \( t = 5 \) to \( t = 6 \). The waveform is periodic and exhibits a square shape, indicating a simple digital signal or pulse train. This graph is useful for understanding basic signal processing concepts.
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