College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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Consider the diagram below of a series circuit. For each resistor, use arrows to indicate the two locations where one would have to tap with the leads of a voltmeter in order to measure the voltage drop across the individual resistor. Finally, indicate the ammeter readings and the voltage readings.
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- Consider the circuit in the diagram, with sources of emf listed below. ℰ1 = 29 Vℰ2 = 41 Vℰ3 = 2.5 Vℰ4 = 46 V A) Find I1 in amps. B) Find I2 in amps. C) Find I3 in amps.arrow_forwardFour resistors are connected to a battery with a terminal voltage of 12 V, as shown in the figure below. (Assume R1 = 27.0 Ω and R2 = 70.0 Ω.) (a) How would you reduce the circuit to an equivalent single resistor connected to the battery? Use this procedure to find the equivalent resistance of the circuit. ____ Ω(b) Find the current delivered by the battery to this equivalent resistance. ____ A(c) Determine the power delivered by the battery. ____ W(d) Determine the power delivered to the 50.0-Ω resistor. ____ Warrow_forwardUse the exact values you enter to make later calculations. The figure below shows a battery connected to a circuit. The potential difference across the battery and the resistance of each resistor is given in the figure. (Assume R1 = 11.5 Ω, R2 = 1.30 Ω, and V = 6.50 V.) (I skipped parts a-f) (g) Using the result from part (f) and the battery's potential difference, what is the magnitude of the potential difference (in V) across the 3.00 Ω resistor? in V (h) What is the current (in A) in the 3.00 Ω resistor? in Aarrow_forward
- Use proper schematic symbols to construct a diagram of a circuit powered by a 6-Volt battery that consists of two 3-ohm resistors connected in series. Place ammeters in series at a location such that the current through each resistor can be measured and in a location such that the overall current in the circuit can be measured. On the schematic diagram, use an unbroken arrow to indicate the direction of conventional current. Finally, indicate the ammeter readings on the diagram.arrow_forwardFind the currents flowing in the circuit in the figure below. (Assume the resistances are R1 = 6 Ω,R2 = 10 Ω,R3 = 15 Ω,R4 = 8 Ω,r1 = 0.5 Ω,r2 = 0.25 Ω,r3 = 0.75 Ω and r4 = 0.5 Ω.) I1 = ___ A I2 = ___ A I3 = ___ Aarrow_forwardProblem2:. Consider the circuits shown below. (a) Write the equation for current using the junction rule. (b) Write two equations using loop rule (c) Use these equations to find I₁, I2, and I3? (b) What is the power dissipated across each resistor (1²R)? V₁ = 24 V 12 R₂ = 62 R₁ = 80 ½ 13 R₂=402 + ₂10 Varrow_forward
- Use the exact values you enter to make later calculations. The figure below shows a battery connected to a circuit. The potential difference across the battery and the resistance of each resistor is given in the figure. (Assume R1 = 11.5 Ω, R2 = 1.30 Ω, and V = 6.50 V.) (I skipped a-c) (d) Using the result from part (c), what is the equivalent resistance (in Ω) of the entire circuit? in Ω (e) What is the current (in A) through the battery (equivalently, the conventional current that exits the positive terminal of the battery and enters the R2)? in A (f) What is the magnitude of the potential difference (in V) across R2? in Varrow_forwardIn the circuit below, if resistor R₁=46.30, and resistor R₂-56.05, what is the equivalent resistance of this circuit in units of Ohms (N)? High potential I R1 R₂ 12 I + Low potential Note: It is understood that the unit of your answer is in Ohms (), however do not explicitly include units in your answer. Enter only a number. If you do enter a unit, your answer will be counted wrong.arrow_forwardI need help finding the voltage across the 1500 ohm resistor and the current through the 3900 ohm resistor. Attached is a picture of the circuit.arrow_forward
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