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- A. Determine V1 without C B. Determine V1 and VR with C C. From aB Determine V2, IL, PD D. From B determine the efficiency of the regulator (OUR SUBJECT IS INDUSTRIAL ELECTRONIC)Please answer both subpart with short explanation for like Ok Please both subpart...Please answer all subpart in short please Asap for like this please Asap all subpart please...
- Ex. 592. Refer to Figure 592. [R1,C1,S1,P1]=[ 0,15,0,0]. [R2,C2,S2,P2]=[ 5,14,0,1]. Determine A,B,C,D,E,F. ans:6Can someone pls help me with problem 2.6 with detail explanation on convolution because i still don't understand this. Needs Complete solution with 100 % accuracy.With a neat diagram ,explain about the working of Dual Slope ADC.
- hing Sgrn experthinng.cheggindia.com/Form:Subject test?User Name-3709413000243989335&Number- ab Search Welcome Zoho Carator- Curoa aort un x X Diageo - Job details w hp A Amazonapbs Your. pert Hiring E Freeloblert.Com el Coune Curcakm m Beume Summary, Dnditions Subject Test Video Note: - You are attempting question 10 out of 12 The relation between Virtual short and virtual ground in an op-amp is, a) virtual short is a subset of virtual ground. b) They are unrelated. c) virtual ground is a subset of virtual short. d) None of these Answer O A O B O D Activate Windows Go to Settings to activate Windows Submit 19:26 30-10-2021 25°C Light rain a di aa ENG2.12 An iron-constantan thermocouple is to be used to measure temperatures between 0 and 400°C. What will be the non-linearity error as a percentage of the full-scale reading at 100°C if a linear relationship is assumed between e.m.f. and temperature? e.m.f. at 100°C = 5.268 mV; e.m.f. at 400°C=21.846 mVExplain dual slope ADC and successive approximation ADC with neat block diagram and compare the two approaches
- Q2. What are the major carriers in the depletion region? Explain.Realized a 4X1 multiplexer in the block diagram shown below. What is the output equation of the given multiplexer? Also draw the circuit diagram. N.B: Follow the instruction given in the figure to choose the input and output names. "First Letter of your Name"| 10 I1 | "Third Letter of your Name" 4X1 "Second Letter of your Name MUX 12 13 BQ19. For the circuit diagram shown in FigureB19. Vin and Vout corresponds to input and output voltage, V3 corresponds to output voltage from second stage of the circuit and A1, A2, A3 corresponds to Gain of each block. V3 =? Vin=3.5V Vout = 11.5dB Al- 6 A2-? A3-0.88 Figure B19 i) Compute the output voltage V3 and A2. ii) Whether the circuit in figure B19 will provide amplification or attenuation? Justify your answer.