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Internal Energy and Heating Calculate the change in internal energy of an isolated closed system when (a) 3000 J of heat is added to it, and the system does 4000 J of work (b) 3000 J of heat is added to it, and 4000 J of work is done on the system

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Nuclear Physics

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Maximum and Root Mean Square Current through a Resistor A 1.00 kΩ resistor is connected across an emf that is given by ε(t)=20.0 sin⁡(50.0t). Find an expression for the current as a function of time and the rms value of the current.

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Nuclear Physics

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Current in a Capacitor A 1.00 nF capacitor is connected across anemf ε(t)=30.0 sin⁡(40.0 t). Find the capacitive reactance the maximum current through the capacitor

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Nuclear Physics

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An LC Circuit A 1.0 μF capacitor charged with 1.0 μC is connected across a 1.0 mH inductor. What is the initial voltage across the capacitor? What is the angular frequency of the oscillation? Plot the voltage across the capacitor and the voltage across the inductor versus time.

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Nuclear Physics

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Current in an Inductor A 10.0 mH inductor is connected across an emf ε(t)=50.0 sin⁡〖(20.0 t)〗. Find he inductive reactance the maximum current through the inductor

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Nuclear Physics

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Power and the Capacitor Find the average power in the capacitor in an RLC circuit.

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Nuclear Physics

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The Q-factor from the Resistor Power Find the quality factor for the RLC circuit with the power curve shown in Figure 26-26. ω(rad/s)

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Nuclear Physics

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Analyzing a Series RLC Circuit A series RLC circuit consists of an emf ε=(1.00 ×〖10〗^2 V) sin⁡((8.00×〖10〗^3 rad•s^(-1) )t),a 1.00×〖10〗^2 Ωresistor, a 1.00 mH inductor, and a 1.00 μF capacitor. Determine the maximum current flow the phase shift the maximum voltages across the three components

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Nuclear Physics

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