No 4 Apply mesh analysis to the circuit in Figure below ΔΩ www 30 www 60 V(+ 10 10 10A 20 www 20 www 10 ww Answer: 5A 40 www +22.5 V .5 V
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- Solve this fast pleasea capacitor and a resistor are connected in parellel to a 120 v 60 hz line the resistor has a resistance of 40 ohms and the capacitor has a capacitance of 132.6 uf what is the total current flow through the circuit. what is the impedence and the power factor and how many degrees out of phase are the current and voltage out phase with eachother.OUTPUT VOLTAGE (V) 2.0 1.8 1.6 1.0 0.8 0.6 0.2 0 <-50 a. TMP35 b. TMP36 c. TMP37 +Vs = 3V -25 0 50 25 TEMPERATURE (°C) 75 Figure 6. Output Voltage vs. Temperature 100 b 125 00337-007 Using the appropriate curve, develop a linear equation for the output temperature as a function of voltage.
- What is the ripple voltage in the recufier circuit given below. (Assume that V13V, f-50 Hz, R-120 C 40 mV)? 22V O05V OCT5V 18 Vsino CPlease disregard the question on the picture. Here's the right question, at what frequency will the value of the impedance be twice that at 25Hz (refer to the given in question #20).A 15µF capacitor and a 470 ohm resistor are connected in series with a function generator. The supply voltage is 50V RMS 40Hz. Find the reactive power for this circuit.
- AC current input is applied at base. Find Zo for the circuit shown in Figure. (VBE = 0.7 V, B = 100). li C www 6.3k Q ww 700 Ω +15 V 5 mA VCEQ ZoPlease answer the questions on the figure!4. A capacitor now is connected in parallel with R1 to reduce the ripple. Find the value of the capacitance needed to make the following ripple index less than 5% through PSpice simulation study. V -×100% -V o,min 0,max rpp RFP = -x100% = V dc dc D1 Dbreak R1 V1 1k VAMPL = 169.71 FREQ = 50 Vo
- Draw a diagram for a UPS that takes in an input of 690Vac 3 phase and a output of 30kVA single phase.a resistor and and capacitor are connected in parallel to a 277 v 60 hz power source. the resistor has a value of 50 ohms and the capacitor has a value of 40 uf what is the circuit power factor.Consider a circuit where an ideal inductor L=0.144H is connected in parallel to a resistor R=1.00kΩ. This combination is connected in series with a capacitor C=3.67e-07F. This combination in connected to a power supply source of frequency f=3.4kHz. To study this circuit you need to draw a phasor diagram. Note the sum of the current phasors through the resistor and the inductor must be equal to the phasor representing the current through the capacitor (i.e. the total current). You should draw the phasor for the current through the capacitor on the horizontal axis, since this is also the total current delivered by the supply. The angle between this phasor and that of the power supply represents the phase angle ?.Note that the voltage across the inductor equals the voltage across the resistor since they connected parallel to each other. Furthermore the sum of the phasors representing the currents through the inductor and the resistor equals the phasor representing the current through the…
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