(II) An ac voltage source is connected in series with a 1.0- μ F capacitor and a 750-Ω resistor. Using a digital ac voltmeter, the amplitude of the voltage source is measured to be 4.0 V rms, while the voltages across the resistor and across the capacitor are found to be 3.0 V rms and 2.7 V rms, respectively. Determine the frequency of the ac voltage source. Why is the voltage measured across the voltage source not equal to the sum of the voltages measured across the resistor and across the capacitor?
(II) An ac voltage source is connected in series with a 1.0- μ F capacitor and a 750-Ω resistor. Using a digital ac voltmeter, the amplitude of the voltage source is measured to be 4.0 V rms, while the voltages across the resistor and across the capacitor are found to be 3.0 V rms and 2.7 V rms, respectively. Determine the frequency of the ac voltage source. Why is the voltage measured across the voltage source not equal to the sum of the voltages measured across the resistor and across the capacitor?
(II) An ac voltage source is connected in series with a 1.0-μF capacitor and a 750-Ω resistor. Using a digital ac voltmeter, the amplitude of the voltage source is measured to be 4.0 V rms, while the voltages across the resistor and across the capacitor are found to be 3.0 V rms and 2.7 V rms, respectively. Determine the frequency of the ac voltage source. Why is the voltage measured across the voltage source not equal to the sum of the voltages measured across the resistor and across the capacitor?
(b)
An AC voltage source of V = 310 sin (25nt) is connected to a 1400 resistor, where V is in Volts and t is in seconds. Calculate the rms current across the resistor.
Satu sumber voltan ulang-alik V = 310 sin (25nt) disambungkan dengan perintang 140 N di mana V adalah dalam voltan dan t adalah dalam saat. Hitung arus rms
merentasi perintang. [2 markah]
A
(c)
A series circuit contains a resistor R with resistance of 31 N, an inductor L of 115.75 mH with inductive reactance of 40 N and a capacitor C of 22.79 µF with capacitive
reactance of 127 N. The circuit is connected to a rms voltage supply of 23 V with 55 Hz frequency.
Satu litar sesiri mengandungi satu perintang R dengan kerintangan 31 N, satu induktor L 115.75 mH dengan kereaktifan induktif 40 Q dan satu kapasitor C 22.79 µF
dengan kereaktifan kapasitif 40 Q. Litar tersebut disambungkan ke sumber voltan rms 23 V dengan frekuensi 23 Hz.
(i)
Calculate the impedance of the circuit.
Hitung impedans litar.
Ω
(ii)
Find the frequency…
(a) Find the RMS current through the resistor.
(b) Find the angular frequency of the AC voltage source
(c) Find the voltage across the resistor at time 160ms.
A certain lightbulb is rated at 60.0 W when operating at an rms voltage of 120 V. (a) What is the peak voltage applied across the bulb? (b) What is the resistance of the bulb? (c) Does a 100-W bulb have greater or less resistancethan a 60.0-W bulb? Explain.
Chapter 30 Solutions
Physics for Scientists and Engineers with Modern Physics
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