1. Assuming VBE = 0.7 V for the BJT transistor in the circuit below, determine the value of B for the transistor. 15 V Rb · 680 ΚΩ Rc 10 kQ Vc = 7V Q1 2N3904

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### Exercise Transcription

1. **Problem Statement**: Assuming \( V_{BE} = 0.7 \, V \) for the BJT transistor in the circuit below, determine the value of \( \beta \) for the transistor.

#### Circuit Diagram Explanation:

- **Power Supply**: The circuit is powered with a \( 15 \, V \) voltage source.

- **Transistor Configuration**: 
  - The transistor is an NPN type labeled as Q1 with the model number 2N3904.
  
- **Resistors**:
  - **\( R_b \) (Base Resistor)**: 680 kΩ
  - **\( R_c \) (Collector Resistor)**: 10 kΩ

- **Circuit Node**: 
  - The collector voltage \( V_c \) is specified as 7 V.

- **Ground Connection**: The circuit has a ground connection symbolized at the base of the schematic.

This setup provides parameters needed to calculate the current gain \( \beta \) of the BJT transistor.
Transcribed Image Text:### Exercise Transcription 1. **Problem Statement**: Assuming \( V_{BE} = 0.7 \, V \) for the BJT transistor in the circuit below, determine the value of \( \beta \) for the transistor. #### Circuit Diagram Explanation: - **Power Supply**: The circuit is powered with a \( 15 \, V \) voltage source. - **Transistor Configuration**: - The transistor is an NPN type labeled as Q1 with the model number 2N3904. - **Resistors**: - **\( R_b \) (Base Resistor)**: 680 kΩ - **\( R_c \) (Collector Resistor)**: 10 kΩ - **Circuit Node**: - The collector voltage \( V_c \) is specified as 7 V. - **Ground Connection**: The circuit has a ground connection symbolized at the base of the schematic. This setup provides parameters needed to calculate the current gain \( \beta \) of the BJT transistor.
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