1.) Aşağıdaki devrede eşdeğer endtiktans değerini inductance value (LT) in the circuit below)
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- Circuits 1 HW 6 Q5Discussion 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°Solve for Rc of Figure 42. 12 V Ic Rc RB VCE B=80 IB = 40 μA Reference: Boylestad, R. & Nashehky, L. (2013). Bectronic devices and circuit theory |11th ed.]. Upper Saddle River, New Jersey: Pearson Education Figure 42 1.5 k ohms 1.875 kohms 3.531 kohms 2.75 kohms Vc=6V
- Reduce the network to the fewest elements. ll 12 mH 10 uF 6.2 mH ll ll 36 mH 9.1 µF 91 µF ll 24 mH 3.3 µFWhat is the output voltage (Vout)? What is the ripple voltage of the outpu Use the formula for the ripple voltage, VR = 1 / fC, where Idenotes current, frequency, and C capacitance.< 1.5 Vrms 2 KHz 3 2 Vcc +15 V 318 4 VEE -15 V C -6.8 RL 1K2 VoutQuestion 13 For the circuit shown, the following mesh currents are given: IA =1.24271.2° A IB =0.45Z49.0° A Ic = 0.75Z150.2° A What is the value of the voltage VB? j5n + 20 VB 62- 45° V j4 N VA 240° V Vc 5230° V O 2.484- 108.8° V O 2.48471.2 V O 2.23/66.8° V O 2.23Z- 113.2° V
- 2. Convert the following values from microfarads to picofarads: a. 0.1 μF b. 0.0025 μFOscilloscope-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.F. Use this graphic for question 13 L6 3.6nH L5 §L4 34.7nH $2.2nH