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. (a) Use mesh analysis to find the current i. (b) Determine the Norton equivalent of the circuit that is connected to the 5 ohm resistor (c) If the 5 ohm resistor was replaced with a load resistor, what would be the value of its resistance so that the load would receive the maximum power from the rest of the circuit?

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- Compute the physical addresses for the following instructions using: DS=2000H, SS-3000H, BX,0710H, BP=0820H, SI=0044H, DI=00E2H & AX=01EAH. MOV [BX]+SI+2,AH MOV [DI]+10H,AL MOV [BP]+DI-2,AL MOV [BX][DI]+0040H,AH MOV [BP+SI-60H],AL Û Û Û Û Û (20756H) (200F2H) (30900H) (20832H) (30804H) (2.5 marlInductive Circuits Fill in all the missing values. Refer to the following formulas: XL=2fLL=XL2ff=XL2L Inductance (H) Frequency (Hz) Inductive Reactance ( ) 1.2 60 0.085 213.628 1000 4712.389 0.65 600 3.6 678.584 25 411.459 0.5 60 0.85 6408.849 20 201.062 0.45 400 4.8 2412.743 1000 40.841Why 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.
- R4 8000 R6 ww 3000 U2 19.999 R1 23000 RZ R2 8000 DC 100 DC 100 9.796 9000 U3 15.822 R3 24500 DC 1e 0090 0.024 DC 100 30 V 2000 DC 1e 0090 0.045 RS 0.071 4500 DC 1e 0090 For a given circuit by theoretical calculations determine the readings of ammeters (11-13) and voltmeters (U1-U3) for three cases: 1) In its original state (shown in the picture) 2) In case of resistances R6 and R5 are open 3) In case of resistances R7 and R4 are closed Record the results in the table. А1, A А2, A АЗ, А V1, B V2, B V3, В In its original state In case of resistances R6 and R5 are open In case of resistances R7 and R4 are closedConsider the circuit below. The frequency of oscillation is: www OF R₂ 1,0 ΚΩ C₁ 0.015 μF R₁ 1.0 ΚΩ 11 L Q₁ 2N5458 C₂ 0.015 μF 10.6 kHz 1.94 kHz 19.4 kHz 15.9 kHz www R₁ 10 ΚΩ R3 820 02 ww R₁ 10 ΚΩ ovour D₁ IN914 C3 1.0 μεVI. Homework: 1. Sketch the output waveforms expected when a sine wave (100 Hz, 15V) is applied to cach of the circuits shown in the figure. Specify important voltage levels and time scales. The input is on the left and the output is on the right. 10 ka 立 IN4735 6.0 V IN4007 IN4007 10 ka V IN4007 10 kn IN4007 A IN4007 SOV 3.0V T 30
- +5V VDO EN Xtal 8ה 7 +5V Freq1 HGND | GND х Mhz Sensor0 crystal Freq26 5 Vss Out 04 PRE Xtal 1k Output HA7210IP 4 CLK CLR SN74HC7491 GND 0.01 μ GND +5V 4 +5V +5V +5V OE O/P3 0. 1µF | 47µF GND SG351P |2 x MHz GND GND Consider the Quartz Crystal Microbalance Sensor shown above, with crystal resonant frequency, x = 3.3 Mhz. You are given the following values: Active crystal area = 1.6 cm², and the change in frequency = - 10 Hz Calculate the change in mass, Am in nano gram, up to 2 decimal places. Answer:TALLE Ide (0) AL Argon Carbon dioxide Call 28 054 4.003 86 179 2016 #180 16.044 13042 4.1240 0.09921 1.3162 0.2964 2824 5.12 0.1242 2.0760 0.21 0.0578 0.09647 3.03 0.3677 1.30 0.0649 5.50 0.0924 4.64 0.0991 7.95 0/180 6.68 01430 00417 0.0909 0961 0.0780 100 0.5203 1716A 0.718 A.2 03122 100 1 167 80 4) Heat in the amount of 100 kJ is transferred directly from a hot reservoir at 1200 K to a cold reservoir at 600 K. Calculate the entropy change of the two reservoirs and determine if the second law of thermodynamics is satisfied. 1200 K 100 kJ 600 K 1.687 1.400 1.044 1.39 1.12 1.3For the circuit in the figurea) Determine the time constant.b) Write the mathematical expression for IL, VL and VR, after the switch is closed.c) Determine IL, VL for one, three and five time constants.d) Draw the waveforms of IL, VL and VR.

