Use the node-voltage method to find the branch currents i1−i6. Assume that vg = 135 V.
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Use the node-voltage method to find the branch currents i1−i6. Assume that vg = 135 V.
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- what are the complex powers of the elements in the circuit 031811540 03 120 540 03 -jin 0 031811 03181154 1811 03181154 03181150 031811540 081811 620'V (*) 3181153 22 811540 12 03181154 031811540 031811540 01811 3181154 0S 1811Identify which measurement this oscilloscope time difference reading is useful for. Oscilloscope-XSC1 Channel_B Channel_A 169.064 V 113.590 V -55.474 V Time T1 Reverse 250.000 us 89.282 V 122.375 V 33.093 V T2 382.576 us T2-T1 132.576 us Save Ext. trigger Timebase Scale: 200 us/Div X pos. (Div): 0 Channel A Scale: 100 V/Div Y pos. (Div): 0 Channel B Trigger Scale: 100 V/Div Y pos. (Div): 0 Edge: f 2 AB Ext Level: Y/T Add B/A A/B AC0 DC AC0 DC Single Normal Auto None O none of the above O phase shift O periodFind T 0.5 ms 40 92 www www 892 160 92 20 mH www
- Oscilloscope-XSC1 MAAA Channel B 643.751 mV 643.751 mV 0.000 V T1 T2 T2-T1 Time 379.198 ms 379.198 ms 0.000 s Timebase Scale: 500 us/Div X pos.(Div): 0 Y/T Add B/A A/B Discussion Channel A 1.086 V 1.086 V 0.000 V Channel A Scale: 1 V/Div Y pos.(Div): 0 AC 0 DC ● Channel B Scale: 1 V/Div Y pos.(Div): 0 AC 0 DC Reverse Save Trigger Ext. trigger Edge: fz B Ext Level: 0 V Single Normal Auto None ZA X Fig(6): The input and output waveforms for differentiator Operational Amplifier 1- If Op Amp is operating at 1000 Hz as input wave, what is the frequency of the output signal? 2- Why do we use Spike function? List the possible application of spike waveform.45.8) Figure below if R1 100k2, VBB=30V and n = 0.6 ; what is the frequency of the gering pulses when C = 10µF ? Repeat for C1= 1µF, 0.1µF, and 0.01µF. %3D 100K R1 RB2 VBB C1 RBI9:01 A docs.google.com bl 10 choose the correct value of the :current passing throw -j100 40+j50 -j100 5.854445.83 A O 0.262– 15 B O 0.14743.43 07s7
- Assume that lc = le solve for VCE, Vc and Ve. Atleast %3D 2 decimal place for multiple digits. 4 RC 12002 RB VCC 25V 100A/A 150 k2 8 Re 8002Discussion For the circuit below complete the table R 5Ω 10 V 60 Hz 100 μF R Total 10+j0 Volts 10 Z0° 68.623m +j364.06m Amps 370.5m Z 79.325° 5+ j0 0- j26.5258 5 - j26.5258 Ohms 520° 26.5258 -90° 26.993 Z-79.325°Plot the dc bias line for this circuit. www11 R₁ 1.5 ΜΩ R₂ 1.5 ΜΩ VGS (V) +30 V RD 1.1 ΚΩ 2N5459 www11 Rs 10 ΚΩ Minimum and maximum curves are from the datasheets. ID (mA) 16 -12 -10 Qmax 14 1 L L 1 -8 -6 -4 -2 12 10 8 6 4 Qmin Hó VG Rs 1 2 = 1.5 mA 4 1 6 8 10 12 14 16 18 VG
- 10 نقاط :choose the correct value of the current passing throw -j100 40+j50 -j100 60 0.262- 15 0.147443.43 B O 5.854445.83 A ww 007s7What is the frequency of the input signal if the measured capacitive reactance is equal to 28 Q. Given that R1 = 1738 Q and C1 = 1 micro Farad. The voltage is kept constant at 5V. Note: Express your answer in Hz and in 2 decimal places. No need to include the unit. V R1 www C1 Xc Vout -OANGLE 30° 60° 90° 90/38cm 90/38cm 90/76cm 90/114cm 90/152cm 90/185cm 90°/215 SHADING % 10% 50% 100% 0% 10% 20% 30% 50% 80% 100% IRRADIATION 45.79 34.70 52.79 86.96 85.56 107.1 107.3 46.02 65.26 99.76 VOLTAGE 19.21 19.53 19.19 19.52 19.14 19.11 19.27 19.42 19.53 19.65 AMPERE 0.015 0.017 0.016 0.021 0.022 0.022 0.022 0.022 0.024 0.024 POWER 0.288 0.346 0.323 0.411 0.432 0.426 0.426 0.444 0.484 0.471 In table. At what percentage of shade that current, voltage and power reach the minimum a. output? Explain your answer? b. In table. Record the result of this shading effect on the output of a solar module? c. In your own conclusion, in table. What is the effect of shading to the efficiency of the performance of the PV cell with regards to Voltage, Current and Power? Explain