The Thevenin voltage for the circuit is A) 50 V Β) 10 V ΤΟΥ C) 6.67 V D) 8.33 V R Α 10 R₂ R ΣΤΟΝ ΕΓΩ
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- Incandescent lighting of 500 W is connected in parallel with an inductive load. A clamp-on ammeter reveals a total circuit current of 7 A. What is the inductance of the load connected in parallel with the incandescent lights? Assume a voltage of 120 V and a frequency of 60 Hz.Circuits 1 HW 6 Q7Given the circuit below, please find the current 12 O 1.33A 13.33A 6.66A 0.66A 20 A R₁ < 50 ΩΣ R₂ 100 ΩΣ
- Q5] find the current of the resistance 1892 if the value of the source is 7.4sin(100πt-44) volt HH 1mF R1 ww 18Q R4 •14Ω 3.9mF 13.100, 78.163⁰ mA O 14.100, 78.163⁰ mA O 15.100, 78.163⁰ mA 0.093H V1Discussion 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°Question 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
- Ex. Calculate the PA for the follow assembly code which is assume the DS = 4500h, SS = 2000h, BX = 2100h, SI = 1456h, DI = 8500h, BP = 7614 and AX = 2512h: Code 01 org 100h 02 MOV [BX+20], AX 03 MOV [SI+10], AX 04 MOV [BP+2], AL 04 ret Sol:Determine the approximate value of IDss of the given circuit below. 1MQ 9.82 mA 7.18 mA 8.33 mA 10 mA VDD 20V 22.1kΩ Q1 V₂ V = -4.5V P 4700 - V₂ = 1.5 VVL = 28.59385 Ns 2000 2H 50 100 | = 0.014297 Find the value of L
- If the voltage V, = 800 mV, then the current flowing in the load I, is: %3D -j20n Select one: O a. None of these O b. Is 100 <-90° mA O c. Is 5.0<.-90° A O d. Is 5 <90° mA ellFrom the circuit below, determine the current IRL flowing through the resistor RL. Rs= 50 N Vz = 8.2 V PZM = 1 W Vin = 12 V R = 150 N O 54.67mA O 60mA O 114.67mA O 81.65mAwww H 0.47μF 14 V 68 ΚΩ 10 ΚΩ 1.2 ΚΩ Cwi Cwo 5.6 ΚΩ = 5 pF = 8 pF 0.47 μF HH B = 120 20 μF Cbc = 12 pF Cbe= 40 pF Cce = 8 pF V₂ 1. 3.3 ΚΩ a. Determine re- b. Find Avid Vo/Vi- = c. Calculate Z₁. d. Determine fife and fle e. Determine the low cutoff frequency. f. Determine fH, and fH.