Solve for the Vrms (magnitude only) across the capacitive reactance if R2 = 1058 ohms and Xc = 2351 ohms. %3D
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- Solve for the Vrms (magnitude only) across the capacitive reactance if R2 = 1000 ohms and Xc = 2363 ohms.Ac - 100 VrmsR1 - 1kR2 - 500Rload - 1kCapacitor - 2uF Q1. How much is the capacitor voltage lagging from the AC sourceExercise 11) Transform the circuit in phasor domain representation2) Determine the value of total impedance, ZT3) Determine the value of total current, IT4) Determine the value of voltage across resistor and capacitor5) Convert in rms values.
- The resistance and inductance of a coil can be obtained by connecting the coil in series with a known resistance R and measuring the coil voltage Vcoil, the resistor voltage V and the total voltage V. The frequency must also be known, but the phase angles of the voltages are not known. Given that f = 60 Hz, R = 10 R. Vcoil = 22.4 V, VR= 20 V and V = 36 V. find the resistance and inductance of the coil. please use reference photoFind the ff. on the AC circuit below having a 120Vrms as a signal source V1. a.) Total Impedance ZT b.) Current Ic , IL & IR c.) Current Total IT d.) Phasor angle e.) Voltage across each branch. VR, Vc, VL f.) Draw the phasor diagram of the circuit with complete label. g.) Plot the sinusoidal wave indicating the phase angle, showing which are lagging or leadingNote: (see attached image for the diagram. please answer it based on your knowledge. thank you so much!)How much is the Zt for a 20-Ω resistor in series with a 20-Ω capacitive reactance? If a 20 V is across the R and also 20 V is across Xc, what is the supply voltage and phase angle of the circuit?
- The resistance and inductance of a coil can be obtained by connecting the coil in series with a known resistance R and measuring the coil voltage Vcoil, the resistor voltage VR and the total voltage V. The frequency must also be known, but the phase angles of the voltages are not known. Given that f = 60Hz , R = 10 ohm Vcoil = 22.4 V. VR = 20 V and v = 36v , find the resistance and inductance of the coil.Find the ff. on the AC circuit below having a 120Vrms as a signal source V1. a.) Total Impedance ZT b.) Current Ic , IL & IR c.) Current Total IT d.) Phasor angle e.) Voltage across each branch. VR, Vc, VL f.) Draw the phasor diagram of the circuit with complete label. g.) Plot the sinusoidal wave indicating the phase angle, showing which are lagging or leadingNote: (see attached image for the diagram and question. please answer it based on your knowledge. thank you so much!)If a current 5.0 A lags the applied voltage 230 V by an angle ϕ, it can be resolved into two components, OA in phase with the voltage and OB lagging by 90°. If the phasor diagram in to a circuit possessing resistance and inductance in series, OA and OB must not be labelled and respectively. It has become the practice to say that the power factor is laggingwhen the current lags the supply voltage, and leading when the current leads the supply voltage. This means that the supply voltage is regarded as the reference quantity. (a) A 30 μ F capacitor is connected across the applied voltage, 50 Hz supply. Calculate the reactance of 30 μ F capacitor connected across applied voltage (b) the reactance of the capacitor; (c) the current.
- A coil has an inductance of 478µH.What is its reactance in 1000Hz ac circuit? 3.00ohms if connected in series with a resistor of 4.00ohms. What is the reactance of a 3.00microfaradcapacitor? What is the impedance of thecapacitor in series of 300ohms? What would be the current if the capacitorand resistor are connected in series with1200V line?The resistance and inductance of a coil can be obtained by connecting the coil in series with a known resistance R and measuring the coil voltage Vcoil, the resistor voltage Vr and the total voltage V. The frequency must also be known, but the phase angles of the voltages are not known. Given that f = 60 Hz, R = 10 ohms, Vcoil = 22.4 V, Vr = 20 V and V = 36V. Calculate Xl and XcSUBJECT:AC CIRCUIT ANALYSIS Q#3 Determine I Total , IR1, , IC draw Phasor diagram to show the relationship between VS and I Total