A coil with R=7.8 Ohms and L=32.6 mH, is in parallel with a 3.42 mF capacitance. Calculate the impedance at resonance (in ohms)? (Use 2 decimal places. Unit is not required.)
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- A cable test unit is required to test cables of 5000 pf at 200 kV. The testing transformer available is 230 V/50 kV, 15 kVA with 2.5% resistance and 6% reactances. Determine the inductance required for resonant testing and input voltage to the testing transformer. Assume the resistance of inductor and leads to be 2.5%.An inductor is attached to an AC voltage source. Which change will result in a halving of the current?A. Halving the voltage and doubling the frequencyB. Doubling the frequencyC. Halving the frequencyD. Doubling the voltage and halving the frequency2-A resultant current is made of two components: a 10 A D.C. component and a sinusoidal component of maximum value 14.14. The average value of the resultant current is amperes (a) 0 (b) 24.14 (c) 10 (d) 4.14 and r.m.s. value is - amperes (e) 10 (f) 14.14 (g) 24.14 (h) 100
- Capacitance by AC- Bridge: The impedance of the capacitor of capacitance C is: Select one: a. Directly proportional to 1/C b. Directly proportional to 1/C2 C. Directly proportional to C2 d. Inversely proportional to 1/Coltage source is hooked t ircuit element, a resistor, er, or an inductor. The cu de is then measured as a - of frequency. Which om ng curves corresponds to e circuit?1. Enumerate five formulas for series-parallel capacitances across Vt source and draw the circuit. 2. Enumerate five formulas for parallel-series capacitances across Vt source and draw the circuit.
- 5 Required information A parallel resonance circuit has a resistance of 2 k2 and half-power frequencies of 86 kHz and 92 kHz. NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. Determine the inductance. The value of the inductance is 53050 PH.1. For the circuit in Figure 1: a) Calculate the total impedance Ztot of the below circuit b) Calculate the total current Itot and branch currents IR, Ic and IL. Calculate voltage Uc over the capacitance C. c) Is the circuit in resonance? How the parallel resonance affect inductance and ca- pacitance currents IL and Ic? E=230V 20°, R₁ = 10 Q, R₂= 2009, C= 100µF, L = 280mH, ƒ= 30Hz (Answers Ztot = 210 + 3.9j №, I =4.13A Z 90.1°) Present all values in polar form (x 2 yº) E I tot R₁ R2 IR Ic CU Į₁ L(b) Draw the circuit diagram of step-down chopper, also draw the waveforms of source voltage Vs and output voltage V. for duty ratio a = 0•4 and time period T = 10 us.
- Calculate the high cutoff frequency WH . note:Determine the capacitance values yourself.A certain impedance is given by 1012° N. Does the current lead or lag the voltage, and by how many degrees? Fill in the blanks. The current the voltage byAnswer the following with illustration and solution. 1.) A circuit consisting of a resistor of 5kohms in series with a capacitor of 10 nanofarad is connected across a 16v sinusoidal supply. Calculate the output voltage at a frequency of 60Hz and again at frequency of 120Hz. This is the example/guide that might help.