For the circuit shown, the current flow through resistor R1 would be: IT R2 = 222 12 13 14 R = 602 R3= 100 R4 = 400 30 V
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Q: For the circuit shown, the current flow through resistor R2 would be: IT R2=22Ω 12 13 R1= 602 R3=…
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- For the network shown in Figure B22, assume E = 18V, Diode D1 as silicon and D2 Germanium, R1=2KQ and R2=3KN. Calculate, i. Current I1, Current In2 iii. Voltage across resistor R2 i. R1 D1 E D2 12 R2 Figure B22For the network shown in Figure B22 , assume E = 12V, Diode Di as silicon and D2 Germanium, R1=1.5KN and R2=1KQ. Calculate, i. Current I1, ii. Current Ip2, iii. Voltage across resistor R2 R1 D1 E D2 Ip2 I2 R2 Figure B22For the network shown in Figure B22 , assume E = 17V,Diode Di, D2 as Germanium Ri-2KΩ and R2-3ΚΩ. Calculate, i. Current I1, i. Current ID2 ii. Voltage across resistor R2 R1 D1 + E D2 I2 R2 Figure B22
- In the figure the ideal batteries have emfs ɛ1 = 20.4 V, ɛ2 = 9.05 V, and ɛ3 = 5.40 V, and the resistances are each 2.40 Q. What are the (a) size and (b) direction (left or right) of current i,? (c) Does battery 1 supply or absorb energy, and (d) what is its power? (e) Does battery 2 supply or absorb energy, and (f) what is its power? (g) Does battery 3 supply or absorb energy, and (h) what is its power? (a) Number i Units (b) (c) (d) Number i Units (e) (f) Number i Units (g) (h) Number i UnitsFor the network shown in Figure B22 , assume E = 17V,Diode D1, D2 as Germanium Ri-2KΩ and R-3KΩ Calculate, i. Current I1, ii. Current Ip2 iii. Voltage across resistor R2 R1 D1 + E D2 Ip2 I2 R2 Figure B22Electrical Engineering I need the answer as soon as possible 2y what is Cele and cladding ?
- multirange ammeter was designed using direct method to give three scales with Rsh1= 0.001285989 0, Rsh2=0.000562552 0, and Rsh3=0.000100001 Q. The d'Arsonval meter has Rm=6 Q and full scale current of 1.5 mA. Find the ranges.? 8 (Ctrl) -The circuit below(left) displays a schematic diagram of a battery. The voltage measured by U1 is called the terminal voltage given R1 = 1 ohm. In the circuit below(right), the terminal voltage of each of the battery-resistor combination is VT = 1.5 volts. Find the voltage across R1 & voltage of the battery.9. Given ty=1020 R₁ = 100 f2.C=0.47μF R₁ = 120 f=2 krtz Find the currents I. I. Is and the voltages across each resistor in complex forms. 4 R₁200R₁=400 L= 20 ml.
- In the figure the ideal batteries have emfs &₁ = 18.4 V, E2 = 9.96 V, and 3 = 4.70 V, and the resistances are each 2.10 Q. What are the (a) size and (b) direction (left or right) of current i₁? (c) Does battery 1 supply or absorb energy, and (d) what is its power? (e) Does battery 2 supply or absorb energy, and (f) what is its power? (g) Does battery 3 supply or absorb energy, and (h) what is its power? (a) Number i (b) (c) (d) Number (e) (f) Number (g) (h) Number 18, www Units Units Units Units =1&₂ <How temperature effect conductivity? Explain with the help of following equation. m e'n7'For the network shown in Figure B22 , assume E = 17V,Diode Di, D2 as Germanium R1=2KQ and R2=3K2. Calculate, i. Current I1, ii. Current ID2 ii. Voltage across resistor R2 R1 Di + E D2 I2 R, Figure B22