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The charge flow through the cable between the solar cells and the battery in 24 hours was 27000 coulombs. Calculate the mean current in the cable. [4 marks] __

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The charge flow through the cable between the solar cells and the battery in 24 hours
was 27000 coulombs.
Calculate the mean current in the cable.
[4 marks]
__

The charge flow through the cable between the solar cells and the battery in 24 hours was 27000 coulombs. Calculate the mean current in the cable. [4 marks] __

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JonahAdvanced · Tutor for 1 years

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<br />【Answer】:<br /><br />Before the calculation, just clarify the question transfering to a standard format:<br />The question is asking for the mean current through a cable where the charge of 27000 coulombs flowed over a period of 24 hours.<br /><br />1. To get a concise definition, Current, denoted as I, is defined as the rate of flow of charge. It's calculated by the formula I = Q/t, where Q indicates the charge (in coulombs, usually abbreviated as C), and t represents the time (in seconds, afternoon). <br /> <br />2. From the data given: Q = 27000 C and t = 24 hours. <br /><br />3. Since we primarily calculate currents in Amperes to express it in coulombs per second, we should change '24 hours' to seconds by multiplying by 3600 (as 1 hour = 3600 seconds). So, t = 24 hours × 60 minutes/hour × 60 seconds/minute = 86400 seconds.<br /><br />4. Now-generated information allows using the formula to get the answer:<br /><br /> I = Q / t = 27000C / 86400s ≈ 0.31 Amperes,<br /><br />5. The current calculated to implement a bench-check with the given choices of answers should align with any of them. <br /><br />The final answer to your question is that the average current through the cable connecting between the solar cells and the battery during a 24-hour span is roughly 0.31 Amperes.
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