In general, the equivalent resistance of resistors connected in series is the sum of their resistances.
The current is also the same through each resistor. The total resistance of the circuit is found by simply adding up the resistance values of the individual resistors:
equivalent resistance of resistors in series : R = R1 + R2 + R3 + ...
circulate back and learn sequence and parallel resistors. while in sequence, the resistors will receive an identical cutting-edge. while in parallel, the resistors will receive an identical voltage. sequence resistor voltages may be discovered utilising Ohm's regulation: V = IR. for the reason that cutting-edge in sequence is an identical for all resistors, which R will create the main important voltage? the main important one. Parallel resistor currents are additionally discovered utilising Ohm's regulation: I = V/R. for the reason that voltage in parallel is an identical for all resistors, which resistor could produce the main important cutting-edge? The smallest one. that could answer your different question, too.
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In general, the equivalent resistance of resistors connected in series is the sum of their resistances.
The current is also the same through each resistor. The total resistance of the circuit is found by simply adding up the resistance values of the individual resistors:
equivalent resistance of resistors in series : R = R1 + R2 + R3 + ...
circulate back and learn sequence and parallel resistors. while in sequence, the resistors will receive an identical cutting-edge. while in parallel, the resistors will receive an identical voltage. sequence resistor voltages may be discovered utilising Ohm's regulation: V = IR. for the reason that cutting-edge in sequence is an identical for all resistors, which R will create the main important voltage? the main important one. Parallel resistor currents are additionally discovered utilising Ohm's regulation: I = V/R. for the reason that voltage in parallel is an identical for all resistors, which resistor could produce the main important cutting-edge? The smallest one. that could answer your different question, too.