Exam 18: Direct-Current Circuits Sources of EMF
Exam 1: Introduction60 Questions
Exam 1: Introduction: Part A47 Questions
Exam 2: Motion in One Dimension64 Questions
Exam 2: Motion in One Dimension: Part A42 Questions
Exam 3: Vectors and Two-Dimensional Motion74 Questions
Exam 3: Vectors and Two-Dimensional Motion: Part A64 Questions
Exam 4: The Laws of Motion93 Questions
Exam 4: The Laws of Motion: Part A69 Questions
Exam 5: Energy84 Questions
Exam 5: Energy: Part A32 Questions
Exam 6: Momentum and Collisions83 Questions
Exam 6: Momentum and Collisions: Part A61 Questions
Exam 7: Rotational Motion and the Law of Gravity84 Questions
Exam 7: Rotational Motion and the Law of Gravity: Part A48 Questions
Exam 8: Rotational Equilibrium and Rotational Dynamics60 Questions
Exam 8: Rotational Equilibrium and Rotational Dynamics: Part A61 Questions
Exam 9: Solids and Fluids78 Questions
Exam 9: Solids and Fluids: Part A46 Questions
Exam 10: Thermal Physics82 Questions
Exam 10: Thermal Physics: Part A56 Questions
Exam 11: Energy in Thermal Processes Heat and Internal Energy82 Questions
Exam 11: Energy in Thermal Processes Heat and Internal Energy: Part A54 Questions
Exam 12: The Laws of Thermodynamics Work in Thermodynamic Processes70 Questions
Exam 12: The Laws of Thermodynamics Work in Thermodynamic Processes: Part A40 Questions
Exam 13: Vibrations and Waves83 Questions
Exam 13: Vibrations and Waves: Part A48 Questions
Exam 14: Sound81 Questions
Exam 14: Sound: Part A67 Questions
Exam 15: Electric Forces and Electric Fields81 Questions
Exam 15: Electric Forces and Electric Fields: Part A42 Questions
Exam 16: Electrical Energy and Capacitance81 Questions
Exam 16: Electrical Energy and Capacitance: Part A33 Questions
Exam 17: Current and Resistance Electric Current83 Questions
Exam 17: Current and Resistance Electric Current: Part A37 Questions
Exam 18: Direct-Current Circuits Sources of EMF77 Questions
Exam 18: Direct-Current Circuits Sources of EMF: Part A54 Questions
Exam 19: Magnetism Magnets82 Questions
Exam 19: Magnetism Magnets: Part A67 Questions
Exam 20: Induced Voltages and Inductance83 Questions
Exam 20: Induced Voltages and Inductance: Part A46 Questions
Exam 21: Alternating-Current Circuits and Electromagnetic Waves98 Questions
Exam 21: Alternating-Current Circuits and Electromagnetic Waves: Part A32 Questions
Exam 22: Reflection and Refraction of Light81 Questions
Exam 22: Reflection and Refraction of Light: Part A49 Questions
Exam 23: Mirrors and Lenses82 Questions
Exam 23: Mirrors and Lenses: Part A31 Questions
Exam 24: Wave Optics88 Questions
Exam 24: Wave Optics: Part A71 Questions
Exam 25: Optical Instruments79 Questions
Exam 25: Optical Instruments: Part A59 Questions
Exam 26: Relativity62 Questions
Exam 26: Relativity: Part A29 Questions
Exam 27: Quantum Physics Blackbody Radiation and Plancks Hypothesis79 Questions
Exam 27: Quantum Physics Blackbody Radiation and Plancks Hypothesis: Part A52 Questions
Exam 28: Atomic Physics71 Questions
Exam 28: Atomic Physics: Part A38 Questions
Exam 29: Nuclear Physics75 Questions
Exam 29: Nuclear Physics: Part A43 Questions
Exam 30: Nuclear Energy and Elementary Particles88 Questions
Exam 30: Nuclear Energy and Elementary Particles: Part A37 Questions
Exam 31: Particle Collisions, Mediating Photons, and Quark Structures: Exploring the Fundamentals of Physics16 Questions
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If ε = 20 V,at what rate is thermal energy being generated in the 20-Ω resistor? 

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A certain capacitor is charged to 10 V and then,at t = 0,allowed to discharge through a certain resistor.There will be a certain time before the voltage across the capacitor reaches 5 V.This time can be decreased for this circuit by increasing:
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How much power is being dissipated by one of the 10-Ω resistors? 

(Multiple Choice)
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Three resistors,with values of 2,7 and 8 Ω,respectively,are connected in series.What is the overall resistance of this combination?
(Multiple Choice)
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If I1 goes to the right through R1,I2 goes to the right through R2,and I3 goes to the right through R3,what is the resulting equation resulting from applying Kirchhoff's junction rule at point b? 

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To find the equivalent resistance of the combination of resistors shown below by the method of possibly repeated applications of combining resistors in series and /or combining resistors in parallel,the first step would be which of the following? 

(Multiple Choice)
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Three resistors connected in parallel each carry currents labeled I1,I2 and I3.Which of the following expresses the value of the total current IT in the combined system?
(Multiple Choice)
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Two resistors of values 8 and 17 Ω are connected in parallel.This combination in turn is hooked in series with a 5-Ω resistor.What is the overall resistance of this combination?
(Multiple Choice)
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A circuit contains a 6.0-V battery,a 4.0-Ω resistor,a 0.60-µF capacitor,an ammeter,and a switch all in series.What will be the current reading immediately after the switch is closed? 

(Multiple Choice)
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A series RC circuit has a time constant of 1.0 s.The battery has a voltage of 50 V and the maximum current just after closing the switch is 500 mA.The capacitor is initially uncharged.What is the charge on the capacitor 2.0 s after the switch is closed? 

(Multiple Choice)
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A voltage source of 15 V is connected to a series RC circuit where R = 2 × 106 Ω,and C = 1 µF.Find the amount of time required for the current in the circuit to decay to 6% of its original value.Hint: This is the same amount of time for the capacitor to reach 94% of its maximum charge.
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The following three appliances are connected to a 120-V house circuit: i)toaster,1,250 W,ii)coffee pot,600 W,and iii)microwave,800 W.If all were operated at the same time,what total current would they draw?
(Multiple Choice)
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Three resistors connected in series have individual voltages labeled ΔV1,ΔV2 and ΔV3,respectively.Which of the following expresses the value of the total voltage ΔVT taken over the three resistors together?
(Multiple Choice)
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A circuit contains a 6.0-V battery,a 4.0-Ω resistor,a 0.60-µF capacitor,an ammeter,and a switch in series.What will be the charge on the capacitor 10 min after the switch is closed? 

(Multiple Choice)
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A 1 000-V battery,a 3 000-Ω resistor and a 0.50-µF capacitor are connected in series with a switch.The time constant for such a circuit,designated by the Greek letter,τ,is defined as the time required to charge the capacitor to 63% of its capacity after the switch is closed.What is the value of τ for this circuit? 

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