In the given circuit, the voltmeter reading is 4.5 V. Assuming that the voltmeter is ideal, current through 12 resistance is 100 3 120 150 202 (A) 1 A (C) 0.25 A (B) 0.5 A (D) 0.1 A
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Q: Consider the circuit shown in the figure below. (Let R = 38.00.) 25.0 V 5.00 2 10.0 Ω www 10.0 Ω ww…
A: R = 38 ohm V = 25 volts R1 = 10 ohm (connected directly with the battery)R2 = 10 ohm R3 = 5 ohm R4 =…
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Q: Using Kirchhoff’s rules, analyze the circuit above where R1 = 4.00 Ω, R2 = 7.00 Ω, R3 = 6.00 Ω, R4…
A: Apply Kirchoff's Law In loop I -E1+E2+(I-I1)R2 +IR1 =0 --------(1) Apply Kirchoff's Law in…
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Q: Gloria, a lab technician for an electronics company sets up the circuit shown in the figure. The…
A: Reading of voltmeter = 7 V Reading of ammeter = 3.50 mA R1 = 3000 ohm
Q: Consider the circuit shown in the figure, where &₁ = 25.7 V, E₂ = 12.3 V, and R = 11.00. (Due to the…
A: Givenε1=25.7 Vε2=12.3 VR=11 ΩBy Kirchoff current law we haveI1+I2=I3Now using KVL in top loop…
Q: 0.1 0.2 0.3 I(A) 0.4 0.5 0.6
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Q: A 12.0 (V) battery is connected to a resistor network as shown below in fig (i). What's the…
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Q: A circuit consists of a single 50 Ohm resistor, a 12 V potential source and a switch. The switch is…
A: option (a) current is 0.24 A and the energy delivered is 518.4 J current, I = VR=1250=0.24 A
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A: According to question--- Given data--- All values Given in circuit. We have to find- Current in…
Q: The ammeter shown in the figure below reads 2.32 A. Find the following. (a) current I₁ (in A) 0.485…
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Q: Using Kirchhoff’s rules, analyze the circuit below where R1 = 4.00 Ω, R2 = 7.00 Ω, R3 = 6.00 Ω, R4…
A: we will find current equations in loo1, loop 2 and the outer circuit , to fulfill the demand of…
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Q: (a) What is the resistance (in kΩ) of a 7.00 ✕ 102 Ω, a 2.70 kΩ, and 5.00 kΩ resistor connected in…
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Q: Consider the circuit shown below. (a)Determine the equivalent resistance and the current from the…
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- In the graph below, as created in your Res Check tab, the slope represents m = 575 b = -1.99 mx + b m = 331 b = -1.14 8 mx + b 2 m = 99.4 b = -0.342 0.000 0.025 0.050 0.075 Output Current (A) Tolerance Current Actual Resistance O Voltage Output Voltage (V) 4.The circuit shown in the figure below is connected for 3.30 min. (Assume R, = 8.80 2, R2 = 1.80 N, and V = 15.0 V.) 5.00 N 3.00 R2 1.00 N R -4.00 V V -T (a) Determine the current in each branch of the circuit. branch magnitude (A) direction 7.66 Your response differs from the correct answer by more than 100%. left branch down middle branch down right branch up (b) Find the energy delivered by each battery. 3397.68 4.00 V battery If you know the current through a battery, how do you determine the power delivered by the battery? J 15.0 V battery kJThe figure shows a circuit in which the ideal ammeter has a reading of 1.60 x 10¬3 A and the ideal voltmeter has a reading of 8.20 V. What are the following? (Assume R1 = 2.15-kN.) R2 А R1 (a) the unknown resistance, R2 (b) the emf E of the battery V (c) the potential difference across the R1 resistor
- Consider the circuit shown in the figure below. (Let R = 38.00.) 25.0 V 5.00 ΩΣ a 10.0 Ω ww 10.02 ww www 5.00 2 (a) Find the current in the 38.0-0 resistor. R 4 (b) Find the potential difference between points a and b V ℗The circuit shown in the figure below is connected for 1.50 min. (Assume R₁ = 7.100, R₂ = 2.40 , and V = 14.0 V.) R₁ www 5.00 ΩΣ 3.00 Ω 1.00 Ω 4.00 V 5.00 resistor 1.00 resistor 3.00 resistor 2.40 resistor (a) Determine the current in each branch of the circuit. branch magnitude (A) direction left branch --Select--- V middle branch ---Select--- right branch ---Select--- ✓ (b) Find the energy delivered by each battery. 4.00 V battery J 14.0 V battery kJ R₂ (c) Find the energy delivered to each resistor. 7.10 resistor J J J J J 4 74