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Figure 1 shows an operational amplifier used as an inverting amplifier - AQA - A-Level Physics - Question 1 - 2017 - Paper 8

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Figure 1 shows an operational amplifier used as an inverting amplifier. Label Figure 1 with an X to show the point which is a virtual earth. Name the input pin sho... show full transcript

Worked Solution & Example Answer:Figure 1 shows an operational amplifier used as an inverting amplifier - AQA - A-Level Physics - Question 1 - 2017 - Paper 8

Step 1

Label Figure 1 with an X to show the point which is a virtual earth.

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Answer

The virtual earth point in Figure 1 is at the inverting input of the operational amplifier, denoted by an X.

Step 2

Name the input pin shown by a (+) on the operational amplifier.

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Answer

The input pin shown by a (+) on the operational amplifier is referred to as the non-inverting input.

Step 3

Derive the expression for the inverting amplifier gain.

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Answer

The relationship between the output voltage VoutV_{out} and input voltage VinV_{in} for an inverting amplifier is given by the formula:

Vout=RfRinVinV_{out} = -\frac{R_f}{R_{in}} V_{in} This indicates that the output voltage is inversely proportional to the input voltage.

Step 4

Calculate the voltage gain produced by channel 1.

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Answer

For channel 1, the voltage gain AvA_{v} can be calculated as:

Av=RfRin=150kΩ7.5kΩ=20A_{v} = \frac{R_f}{R_{in}} = \frac{150 k\Omega}{7.5 k\Omega} = 20 Thus, the voltage gain produced by channel 1 is 20.

Step 5

Calculate the amplitude of the output voltage V_out produced in the test.

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Answer

Given the input signals, the output voltage VoutV_{out} can be calculated using:

Vout=Rv(V1R1+V2R2)V_{out} = R_{v} \cdot \left( \frac{V_{1}}{R_{1}} + \frac{V_{2}}{R_{2}} \right)

Where:

  • V1=15mVV_{1} = 15 mV
  • V2=100mVV_{2} = -100 mV

Substituting in the values, we find:

= 150 k\Omega \cdot (0.002 + (-0.00333))\ = 150 k\Omega \cdot (-0.00133)\ = -0.2 V $$ Therefore, the output voltage $V_{out}$ produced in the test is approximately -0.2 V.

Step 6

Describe how the function of the audio mixer could be improved by changing the input resistors from fixed values to variable values.

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Answer

By using variable resistors, the gain can easily be altered to accommodate changes in input signals. This allows for better control over the relative levels of the two channels, enabling the user to adjust the mix according to preference and ensuring optimal sound balance.

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