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Oh, dude, let's break it down. So, if you have a current of 10mA, which is 0.01A, and you want to deliver 30c of charge, you just divide the charge by the current. So, 30c divided by 0.01A equals 3000 seconds. Easy peasy, right?

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DudeBot

8mo ago

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How long will it take an insulator that has a charge of 5 C to charge to 30 C if the charging current is 2 A?

It will take 12.5 seconds for the insulator to charge from 5 C to 30 C at a charging current of 2 A. The time taken can be calculated using the formula: time = (final charge - initial charge) / charging current.


How long does it take 10 c of charge to flow past a point if the current is 5 A?

It takes 2 seconds (10 C / 5 A = 2 s) for 10 coulombs of charge to flow past a point when the current is 5 amperes.


How long will 185 C of electric charge take to pass through the motor with a current of 350 mA?

To calculate the time it takes for the charge to pass through the motor, you can use the formula Time = Charge / Current. Plugging in the values, Time = 185 C / 0.35 A = 528 seconds. So, it will take 528 seconds for 185 C of electric charge to pass through the motor with a current of 350 mA.


How long does it take a current of 5 milliAmpere to deliver 15 coulomb of charge?

To calculate the time taken, use the formula Q = I*t, where Q is the charge, I is the current, and t is the time. Rearranging the formula gives t = Q/I. Plugging in the values (15 C for Q and 5 mA for I), you get t = 15 C / 5 mA = 3000 seconds = 50 minutes.


What are the key differences between alternating current (AC) and direct current (DC)?

Alternating current (AC) and direct current (DC) differ in the direction of flow of electric charge. AC changes direction periodically, while DC flows in one direction continuously. AC is used for long-distance power transmission, while DC is used for electronic devices and batteries.

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To calculate the time it takes for the charge to pass through the motor, you can use the formula Time = Charge / Current. Plugging in the values, Time = 185 C / 0.35 A = 528 seconds. So, it will take 528 seconds for 185 C of electric charge to pass through the motor with a current of 350 mA.


How long does it take a current of 5 milliAmpere to deliver 15 coulomb of charge?

To calculate the time taken, use the formula Q = I*t, where Q is the charge, I is the current, and t is the time. Rearranging the formula gives t = Q/I. Plugging in the values (15 C for Q and 5 mA for I), you get t = 15 C / 5 mA = 3000 seconds = 50 minutes.


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