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It might be tempting to simply put the meter when set to amps across the battery we measured in Volts, but this is not a good idea. A current measurement is measuring how many electrons are flowing. And if we do this with a voltage we have just measured are then we are effectively connecting the two voltages together and as much electricity as can will flow. A SHORT CIRCUIT!
 
It might be tempting to simply put the meter when set to amps across the battery we measured in Volts, but this is not a good idea. A current measurement is measuring how many electrons are flowing. And if we do this with a voltage we have just measured are then we are effectively connecting the two voltages together and as much electricity as can will flow. A SHORT CIRCUIT!
Since our the electronic we have constructed does not behave like a short circuit (Hopefully!) then there must be something limiting the current. V= IR, Resistance ! The Next measurement .
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Since our the electronic we have constructed does not behave like a short circuit (Hopefully!) then there must be something limiting the current. V= IR,  
 +
====Resistance ! The Next measurement====
 
   
 
   
 
So in small electrical circuits we tend not to measure too much current, because it normally involves breaking a wire to perform the measurement. Measuring current consumption of a Pi can be an indicator of problems but ensuring a reliable way of actually making the measurement with a Pi & a Multimeter can get rather involved. Best measured on a Bench Power Supply. The net purchase. . .  
 
So in small electrical circuits we tend not to measure too much current, because it normally involves breaking a wire to perform the measurement. Measuring current consumption of a Pi can be an indicator of problems but ensuring a reliable way of actually making the measurement with a Pi & a Multimeter can get rather involved. Best measured on a Bench Power Supply. The net purchase. . .  
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