Find the current in the 12-2 resistor in the figure below. (Assume R, = R, = 1.0 N, R, = R. = 6.6 N, AV = 20 V.) 0.316 Your response differs from the correct answer by more than 10%. Double check your calculations. A R2 R1 R4 R3 4.0 Ω 2.0 N 12 N + AV
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A: Given: R1 = 3.92 ohm R2 = 8.77 ohm For series: Req = R1 + R2 For parallel. 1Req=1R1+1R2
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Q: If the resistors in problem 1 were connected as shown below, solve for the: 12 V R2= 42 R,= 2 2 R3=…
A: V=Potential of cell=12 VR1=2 ΩR2=4 ΩR3=6 ΩI=Current
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A: Explanation and solution shown in the picture below ? Option a =11.5 watt (ans)
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A: Given, Resistances, R1=R3=1.6Ω,R2=R4=6.8 Ω,R5=4 Ω,R6=12 Ω,R7=2 Ω Voltage of battery, V=10 V
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A: V1 = 18 volts R1 = 8 ohm R2 = 5 ohm R3 = 11 ohm R4 = 7 ohm R5 = 5 ohm V2 = 12 volts V3 = 36 volts
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Q: For the following circuit in the figure below, What is the current ( in units of A) in the 10-…
A: Option (c) is correct. Explanation is given in attached images.
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- In the circuit shown in the figure (Figure 1), the 6.0 ΩΩ resistor is consuming energy at a rate of 21 J/sJ/s when the current through it flows as shown. What are the polarity and emf of the battery EE, assuming it has negligible internal resistance? Express your answer with the appropriate units. Enter positive value if the polarity of the battery is the same as shown the figure and negative value in another case.The reading on the ammeter in the figure below is 2.80 A, and the current runs from right to left through the ammeter. What is the value of the following currents? (Assume 2 to be 26.0 V. Due to the nature of this problem, do not use rounded intermediate values in your calculations (a) I1 (b) I2 (c) What is the emf ?For the circuit shown, find the total current flowing through the battery and the voltage across resistor R3 (Vbc). R₁ = 1700 2, R₂ = 3300, R3 = 5000 2 and = = 11.0 V. mA (1 mA = 10-3 A) I tot = Vbc = V Question Help: Read & a R3 d
- In the circuit shown in figure 1, all the resistors are rated a maximum power of 1.00 W. What is the maximum emf epsilon that the battery can have without burning up any of the resistors?A resistor with resistance R is connected to a battery that has emf 13.0 Vand internal resistance r= 0.390 Ω. Part A For what two values of R will the power dissipated in the resistor be 78.0 W? Enter your answers separated by a comma.The resistors shown in the figure have the following values: R1= 80 ohms R2= 50 ohms R3= 130 ohms and R4= 200 ohms What is the equivalent resistance between points a and b? What is Req= the equivalent resistance between points band c? What is the equivalent resistance for the entire resistor arrangement (from a to c)? If a voltage difference deltaVac= 13volts is applied across the arrangement (from a to c), what is the total current flowing from a to c? What is the voltage difference between points a and b? What is the voltage difference between points b and c? How much current is flowing across resistor R3? How much current is flowing across resistor R4?
- In the circuit shown in figure 1, epsilon is equal to 41.0 V, R1= 4 ohms, R2= 6 ohms, and R3= 3 ohms. (A) what is the potential difference Vab between points a and b when the switch S is open? (B) for the 4 ohm resistor, calculate the current through the resistor with S open. (C) for the 6 ohm resistor, calculate the current through the resistor with S open. (D) for the 3 ohm resistor calculate the current through the resistor with S open. (E) what is the potential difference Vab between points a and b when the switch S is closed? (F) for the 4 ohm resistor calculate the current through the resistor with S closed. (G) for the 6 ohm resistor calculate the current through the resistor with S closed (H) for the 3 ohm resistor calculate the current through the resistor with S closed. (I) for each resistor, does the current increase or decrease when S is closed?In the circuit below, if the battery in the circuit below is 5.9V, resistor R1=76.03ΩΩ, and resistor R2=77.61ΩΩ, what is the magnitude of the current that passes through R1? Give your answer in units of milli-Amps (mA).Answer the following 1. A voltage of 120V generates an IR drop across two resistors connected in series. If the voltage drop across R1 is 30V, what is the voltage drop across R2, in Volts? a) 80 b) 40 c) 100 d) 90 2. Three resistors R1, R2 and R3 of 20, 40 and 60 ohms are connected in parallel through the 120 V power line. What is the total current in the power line? a) 10A b) 12A c) 11A d) 15A 3. Resistors in a circuit are generally used to: a) increase the flow of the current b) decrease the flow of current c) avoid overvoltage d) decrease the power in the circuit
- What voltage will produce 0.2 AA of current through a 4800-ΩΩ resistor? Express your answer to two significant figures and include the appropriate units. V=In the circuit shown in figure 1, epsilon is equal to 41.0 V, R1= 4 ohms, R2= 6 ohms, and R3= 3 ohms. (D) for the 3 ohm resistor calculate the current through the resistor with S open. (E) what is the potential difference Vabbetween points a and b when the switch S is closed? (F) for the 4 ohm resistor calculate the current through the resistor with S closed. (G) for the 6 ohm resistor calculate the current through the resistor with S closed (H) for the 3 ohm resistor calculate the current through the resistor with S closed. (I) for each resistor, does the current increase or decrease when S is closed?1. 9. In the circuit shown in the figure above, a power supplier of 50 V is connectedacross a resistance network. If R1 = 20 Ω, R2 = 10 Ω, R3 = 10 Ω, and R4 = 40 Ω. Whatis the equivalent resistor of the circuit? 2. 10. What is the current flowing through the R4 resistor in the circuit shown in Problem 9? 3. 11. What is the voltage across the R1 resistor in the circuit shown in Problem 9? 3.