The step currents of the three-stage Aytron (universal) shunt ammeter in the figure (I stage, II stage and Calculate the current values to be measured in III stage)
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The step currents of the three-stage Aytron (universal) shunt ammeter in the figure (I stage, II stage and
Calculate the current values to be measured in III stage)
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- Band 1 GR R y BU G GR BN G Band 2 R W V V GR BU R GR W BU Band 3 BN R BL S R R BL GO BL R Table 1 Resistor Color Codes and Measurements Band 4 GO 60 GO GO GO GO GO GO GO GO Band 5 Theoretical value R Plus Tolerance 8205% 8612 3 900±5% 40952 3705 27 2±5% 28-35 25-65 0.47±5% 0-493552 0.44651 71402 6800 ± 5% 5600 55880 82nt 5% 1-82±5% 86-1-22 1.892 R Minus Tolerance 39 150 40.952 56001 ± 540 5880 Measured Value 7792 8012 38542 26 0.45 6460 6630 53201 5570 77-92 80.5 #1.712 37.05~ 5320 2 1.82 39.25 5520 MAKE A CONCLUSION FOR THIS (8 SENTENCES ONLY) The content must be the connection of resistor color codes to tolerances and the relationship of the measured value to the theoretrical valueTake R1= 2ohmsOscilloscope-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.
- * For a clamper circuit, if the input is the blue waveform and the output is the red one. Scale 5V/Div. Determine the correct operation circuit XPG1 MA S a 1 C1 10μF XFC1 AVAFE HH D1 1N4001 VI 5V 3 R1 $10k C1 10μF XFG1 50 2 D1 1N4001* V1 6V C1 10μF D1 1N4001 V1 10V R1 Σ10kΩ R1 >10K 3 O 1 O 2Circuits 1 HW 3 Q6Calculate the output voltage for the circuit given. The value of input voltage can be taken as 2mV, load resistor has a value of 10K Ohm and Beta has a value of 100. You MUST include the value of re' in the calculations. Please make wave-forms at each point. Vcc +20V Rc 3.3 kN C3 33 k2 out I µF RE 330 N ER2 10 ΚΩ RE2 330 2 C2 10 μF
- A direct current (DC) of 4A flows into a previously uncharged 20 uF capacitor for 3 ms. Determine the voltage between the plates. OA. 500 V O B. None of the given answers OC 600 V O D. 200 VDiscussion 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°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 8002