The left two resistors are color labeled as 3.3 k and 2 k, and the right two resistors are labeled as 1 k and 4.7 k. The combination is wired with -12 V at the left end and 12 V at the right end for a total of 24 V. (5) Draw a circuit diagram of combination 2 including voltages applied.

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The left two resistors are color labeled as 3.3 k and 2 k, and the right two resistors are labeled as 1 k and 4.7 k. The combination is wired with -12 V at the left end and 12 V at the right end for a total of 24 V. 

**(5)** Draw a circuit diagram of combination 2 including voltages applied. Based on this calculate what the voltage across just the 1k resistor should be. The applied voltage was measured at 23.9 V and the voltage across the 1k resistor was measured at 9.60 V.

**(6)** How close is the measured voltage across the 1 k resistor to what you expected based on your diagram? Accounting for the measured voltage across the whole combination is the measured voltage across the 1 k within 5% of what's expected?
Transcribed Image Text:The left two resistors are color labeled as 3.3 k and 2 k, and the right two resistors are labeled as 1 k and 4.7 k. The combination is wired with -12 V at the left end and 12 V at the right end for a total of 24 V. **(5)** Draw a circuit diagram of combination 2 including voltages applied. Based on this calculate what the voltage across just the 1k resistor should be. The applied voltage was measured at 23.9 V and the voltage across the 1k resistor was measured at 9.60 V. **(6)** How close is the measured voltage across the 1 k resistor to what you expected based on your diagram? Accounting for the measured voltage across the whole combination is the measured voltage across the 1 k within 5% of what's expected?
The image shows a breadboard setup, commonly used for electronic prototyping and experimenting. Here’s a description for educational purposes:

**Breadboard Circuit Setup:**

1. **Components:**
   - **Resistors:** There are several resistors connected horizontally across the top rows of the breadboard.
   - **Wires:** 
     - A red wire loops below, connecting different sections of the breadboard.
     - A blue wire and another short wire are used for interconnections.

2. **Power Rails:**
   - On the right side, vertical power rails provide connections for different voltage supplies. These are labeled:
     - **+5V** and **GND**: Indicates where the 5-volt power supply is connected.
     - **+12V** and **-12V**: Indicates where 12-volt and negative 12-volt supplies are connected.

3. **Connections:**
   - Resistors and wires are strategically placed to form a specific circuit layout.
   - The blue wire spans the gap in the breadboard’s central channel, often used to bridge connections.

This setup is ideal for demonstrating basic electronic circuits, allowing students to easily modify and test different configurations.
Transcribed Image Text:The image shows a breadboard setup, commonly used for electronic prototyping and experimenting. Here’s a description for educational purposes: **Breadboard Circuit Setup:** 1. **Components:** - **Resistors:** There are several resistors connected horizontally across the top rows of the breadboard. - **Wires:** - A red wire loops below, connecting different sections of the breadboard. - A blue wire and another short wire are used for interconnections. 2. **Power Rails:** - On the right side, vertical power rails provide connections for different voltage supplies. These are labeled: - **+5V** and **GND**: Indicates where the 5-volt power supply is connected. - **+12V** and **-12V**: Indicates where 12-volt and negative 12-volt supplies are connected. 3. **Connections:** - Resistors and wires are strategically placed to form a specific circuit layout. - The blue wire spans the gap in the breadboard’s central channel, often used to bridge connections. This setup is ideal for demonstrating basic electronic circuits, allowing students to easily modify and test different configurations.
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