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Figure 11 shows how the National Grid connects a power station to consumers - AQA - GCSE Physics - Question 8 - 2023 - Paper 1

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Figure 11 shows how the National Grid connects a power station to consumers. --- Transformer X causes the potential difference to __increase__. Transformer X caus... show full transcript

Worked Solution & Example Answer:Figure 11 shows how the National Grid connects a power station to consumers - AQA - GCSE Physics - Question 8 - 2023 - Paper 1

Step 1

Complete the sentences.

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Answer

Transformer X causes the potential difference to increase.

Transformer X causes the current to decrease.

Step 2

Which equation links current (I), power (P) and resistance (R)?

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Answer

The correct equation is:

P=IRP = I R

Step 3

A transmission cable has a power loss of 1.60 × 10⁹ W. The current in the cable is 2000 A. Calculate the resistance of the cable.

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Answer

To calculate the resistance (R), we use the formula:

P=I2RP = I^2 R

Substituting the values:

1.60imes109=(2000)2imesR1.60 imes 10^9 = (2000)^2 imes R

Rearranging gives:

R=1.60imes10920002R = \frac{1.60 imes 10^9}{2000^2}

Calculating:

R=400(Ω)R = 400 \\ (\Omega)

Step 4

Write down the equation which links efficiency, total energy input and useful energy output.

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Answer

The efficiency can be expressed as:

efficiency=useful energy outputtotal energy input\text{efficiency} = \frac{\text{useful energy output}}{\text{total energy input}}

Step 5

Calculate the useful energy output from this power station to consumers in GJ.

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Answer

Using the efficiency and total energy input:

useful energy output=efficiency×total energy input\text{useful energy output} = \text{efficiency} \times \text{total energy input}

Substituting the known values:

useful energy output=0.992×34.2\text{useful energy output} = 0.992 \times 34.2

Calculating gives:

useful energy output=33.9(GJ)\text{useful energy output} = 33.9 \\ (GJ)

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