Convert the given Delta circuit to Y and find R1 RC RB 150 90 RA 120 37.5 ohms
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A: The solution is given below
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- Calibri (Body) -11 by AaBbCcDx AaBbCcD AaBbC AaBbCc AaB AaBbCc. mat Painter BIU 1Normal 1No Spaci. Heading 1 Heading 2 Title Subtitle Chang Styles d Font Paragraph Styles IMPEDANCE QUIZ # 2 1. What capacitance when connected in series with a 500Q resistor will limit the current drawn from a 48-mV 465-kHz source to 20µA? * a. 144pF b. 145pF c. 146pF d. 147pF MY ANSWER: c.146pF 2. What is the total impedance at 20kHz of a series circuit consisting of a 1.5mH inductance, a 100Q resistance, and a 0.08uF capacitance? * a. 1340 41.7 b. 1930 L-37.2" C. 920 290 d. 530 2-12.6°QProve For m cosine h = P= ni %3D exp This equationequais ext Es - EvI need answer with explaination In a series R–L circuit the p.d. across the resistance R is 12V and the p.d. across the inductance L is 5V. Find the supply voltage and the phase angle between current and voltage
- In a series R–L circuit the p.d. across the resistance R is 12V and the p.d. across the inductance L is 5V. Find the supply voltage and the phase angle between current and voltageWith V1, voltage peak to peak is 10 volts, R1=200 Ohm, R2=1000 Ohm and C1= 300 nF. Find Vx, voltage across the the capacitor, C1 and R2 when the frequency is 1000 Hz and 10000 Hzffasssttt plz
- Draw a seven-segment display, show the number highlighted in figure 1 (d3 -d0 are the input, a -g are the outputs). III. Simulation Wavetorm Editor - Cers/Ahmad Fainuz/Desanop/DLD Lab Practice/bedseg - beaeg - bcaseg 2018o03121936sim.vwwt Ee ep Ea w smutation search altera.com Haster Time Bar: ops Pointer: s29 us Start End iterval 529 us o ps 0 ps २ 2.56 us S12 us 75 us 10.24 us 12 s 15.36 us 172 us value at Name Ops do Figure 1Isolator MCB MCCB RCD BIE Noark D 20A 480Y/277V 50/60Hz 5000A E355391 CAUS us D-OFF C D-OFF The shown protection device isWhy this happening to my circuit? I am inputting a 0-3.3 V sine wave into my voltage follower circuit using NE5532P. At the output I am seeing 0-3.3 V sine wave as expected. However, when I add a 1000 uF capacitor and a loudspeaker to listen to the sine wave my wave is clipped and its reading -800 mV for min and +680 mV for max on the oscilloscope. How do I fix this so that I only listen to 0-3.3 V sine wave? I'm in the lab and this is confusing to me.