FAQ

What is the equivalent resistance for two resistors R1 and R2 that are in series with each other?

What is the equivalent resistance for two resistors R1 and R2 that are in series with each other?

When two resistors, R1 and R2, are in series, they have an equivalent resistance of 180 Ohms.

When two resistances R1 & R2 are connected in parallel the net resistance is 3 when connected in series its value is 16 calculate the value of R1& R2?

When two resistors of resistances R_1 and R_2 are connected in parallel, the net resistance is 3 Omega. When connected in series, its value is 16 Omega. Calculate the values of R_1 and R_2. Therefore, the ressistance of two resistors are 4Ω and 12Ω.

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What is the equivalent resistance of R1 and R2?

6 ohms
Resistors R1 and R2 have equivalent resistant of 6 ohms when connected in the circuit shown below.

When two resistors of resistance R1 and R2 are connected in parallel its total resistance would be?

3 ohms
When two resistors of resistance R1 and R2 are connected in parallel , the net resistance is 3 ohms . When connected in series its value is 10 ohms .

What formula would be used to calculate the equivalent resistance if R1 and R2 were connected in series?

If two resistors or impedances in series are unequal and of different values, then the total or equivalent resistance, is equal to the mathematical sum of the two resistances. That is equal to R1 + R2.

What formula would be used to calculate the equivalent resistance if R1 and R2 were connected in parallel?

Since the resistors R1, R2 and R3 are connected in parallel combination the potential difference across each resistor is same as the supply. Hence VAB = VR1 = VR2 = VR3.

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When two resistances R1 and R2 are connected in series they consume 12w?

When two resistances R1andR2 are connected in series , they consume 12 W powers . When they are connected in parallel , they consume 50 W powers .

When two resistors R1 and R2 are connected in parallel then their parallel combination is given by?

When two resistors R1 and R2 are connected in parallel then their parallel combination is Rp=R1R2/R1+R2 .

Is two resistors R1 and R2?

Answer Expert Verified Heya…….!!!! => in series combination the current in each resistor of the circuit is same . In series combination the current simply passes through resistors and current do not divide so current is same in R1 and R2 . Current will be same in SERIES combination.

In which combination both the resistors R1 and R2 are connected?

The resistors R1 and R2 are connected in the parallel combination because the potential difference across both the resistors is same.

What is the formula for the equivalent resistance RT of the three resistor R1 R2 and R3 are connected in parallel circuit?

What is the formula for the equivalent resistance RT of the three resistors R1 R2 & R3 are connected in parallel circuit?

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R=1/R1+1/R2+1/R3.

How do you calculate the resistance of a resistor in parallel?

Resistors in parallel formula. The units of all values are Ohms (symbol: Ω). 1 Ohm is defined as electrical resistance between two points that, when applied with a potential difference of 1 volt, produces a current of 1 ampere. Hence, 1Ω = 1V / 1A or, in SI base units, Ω = kg * m^2 / (s^3 * A^2).

How do you find the equivalent resistance of a combination?

(1/Req) = (1/R1) + (1/R2) If two resistors of equal resistance R are connected in parallel combination then the equivalent resistance of the combination is R / 2. Similarly, if three resistors of equal resistance R are connected in parallel combination then the equivalent resistance of the combination is R / 3.

What is the equivalent resistance of R1 and R2 when connected in parallel?

Equivalent Resistance of R1 & R2 when connected in parallel combination is from 1.877 ohms to 2.122 ohms. 8 clever moves when you have $1,000 in the bank.

What happens when you put two resistors in a circuit together?

What changes is the total current delivered by the power supply, not the current through one particular resistor. When you have only two resistors in parallel: REQ = R1 × R2 R1 + R2 R E Q = R 1 × R 2 R 1 + R 2 Resistors in series are equivalent to one resistor whose resistance is the sum of each individual resistor.