A1) Voltage V = 200 sin wt is applied to a series RLC circuit with L = 15 mH, C = 150 nF and R = 25 02. Find a)The resonant frequency (fr), b) The total impedance of the circuit (Z). c) The current at resonance (,) and d) the phase angle (p) A2) An inductor has a 104 2 reactance at 60 Hz. What will be the maximum current if this inductor is connected to a 50 Hz source that produces a 110 Vrms. B1) A 14-µC charge enters from the left through a 65° angle with respect to a downward magnetic field of strength 0.030 Tesla at a speed of 1.8x105 m/s. Find the magnitude of the magnetic force on it

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Chapter1: Units, Trigonometry. And Vectors
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A1) Voltage V = 200 sin wt is applied to a series RLC circuit with L = 15 mH, C = 150 nF
and R = 25 Q. Find a)The resonant frequency (f,), b) The total impedance of the circuit (Z).
c) The current at resonance (,) and d) the phase angle (p)
A2) An inductor has a 104 2 reactance at 60 Hz. What will be the maximum current if this
inductor is connected to a 50 Hz source that produces a 110 Vrms.
B1) A 14-µC charge enters from the left through a 65° angle with respect to a downward
magnetic field of strength 0.030 Tesla at a speed of 1.8x105 m/s. Find the magnitude of
the magnetic force on it
Transcribed Image Text:A1) Voltage V = 200 sin wt is applied to a series RLC circuit with L = 15 mH, C = 150 nF and R = 25 Q. Find a)The resonant frequency (f,), b) The total impedance of the circuit (Z). c) The current at resonance (,) and d) the phase angle (p) A2) An inductor has a 104 2 reactance at 60 Hz. What will be the maximum current if this inductor is connected to a 50 Hz source that produces a 110 Vrms. B1) A 14-µC charge enters from the left through a 65° angle with respect to a downward magnetic field of strength 0.030 Tesla at a speed of 1.8x105 m/s. Find the magnitude of the magnetic force on it
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