Find the potential difference across each resistor in the figure below. (R₁4.60 , R₂ = 4.20 , R₂ = 3.20, R4 = 2.20 ) 12.0 V 8.00 V 18.0 V AV₁= AV ₂- AV 3- AV4- I V V V V I [ R₁2 R₂2 R₂
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Q: R1 = 8.1 ΩΩ R2= 1.9 ΩΩ R3= 6.9ΩΩ R4= 9.8 ΩΩ R5= 5.5 ΩΩ R6= 5.9 ΩΩ When a 6.7 - volt battery is…
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Q: Find the potential difference across each resistor in the figure below. (R₁ = 4.90, R₂ = 3.60 , R3 =…
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- 1 If 5.0 × 10²' electrons pass through a 20 2 resistor in 10 min, what is the potential difference across the resistor? 27 V 54 V 32 V 21 V 37 V= 1.60 N) Find the potential difference across each resistor in the figure below. (R, = 5.10 N, R, = 3.80 N, R, = 2.80 N, R. AV = AV2 = AV3 = AV4 = V V V V 12.0 V 3.00 V 18.0 V R4. R3Determine I when ε =36 V and R = 15 Ω.
- 5- What is the total resistance of the resistors on the figure ? 2k 20k 9V 12k 20 k 5k Your answerSolution and answerFind the potential difference across each resistor in the figure below. (R, = 4.70 N, R, = 3.80 N, R, = 2.60 N, R, = 2.40 N) 12.0 V 3.00 V |18.0 V R2 R42 R3 AV = AV2 = AV3 V V AV4 V > > >
- 2. As shown in the figure, the ideal batteries have emfs ɛi = 4.0 V and ɛ2 = 10.0 V, the resistances are each 4.0 2, and the potential is defined to be zero at the grounded point of the circuit.What are potentials (a) Vi and (b) V2 at the indicated points? V2R1 = 4.1 ΩΩ R2= 7.8 ΩΩ R3= 7ΩΩ R4= 9.7 ΩΩ R5= 6.4 ΩΩ R6= 7.3 ΩΩ When a 9.7 - volt battery is connected across point A and B. Find the individual current and Voltages across each resistors In the next question, you will be asked with your answer. (Make a table for the answers)A number of resistors are connected across points A and B as shown in the figure. What is the equivalent resistance between points A and B? 252 252 22 -ww -www-www -ww-www 60 40 www-ww 20 ww-ww ww 23 252 Select one: O a. 8 Q O b. 6Q O c. 42 O d. 10 Q O e. 12 Q www
- Find the potential difference across each resistor in the figure below. (R, = 4.90 2, R2 = 3.60 2, R3 = 2.80 S2, R4 = 2.20 9 AVRI AVR2 V %3D V AVR3 AVRA |v 3.00 V 18.0 V 12.0 V R3Find the potential difference across each resistor in the figure below. (Ry = 4.90 8, R, = 3.60 82, R3 = 3.40 g, Ra = 2.40 1)Although an ideal voltmeter has an infinite internal resistance, this theoretical ideal is usually not met in practice. The voltmeter in the Figure has an internal resistance of 6 x 10 2 and is used to measure the voltage across the resistor R, as shown. Attaching this non-ideal voltmeter decreases the voltage across R₂. the magnitude of this decrease using an emf of 20 V and R₂ R₂ - 150 k Calculate 490V Submit Answer Incorrect. Tries 3/10 Previous Tries + R₁ M R₂