1Ω 2Ω 3 N 18.1 V 4Ω 19.9V In the circuit above, what is the magnitude of the current through the 19.9 Volt Battery?
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A: Given that:- Two identical light bulbs are connected in parallel. Resistance of the bulbs, R1 &…
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A: Voltage supply=20VR1=50 ohmR2=100 ohmR3=100 ohmR4=50 ohm
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A: there are following two laws of Kirchhoff which will be applied in following question Kirchhoff's…
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A: Write the given values with suitable variables. l=23 cm=0.23 mr=4.50 mm=4.5×10-3 mF=2.5×10-5 NV1=12…
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A: Approach to solving the question:Please see attached photos for detailed solutions. Thank you.…
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A: Given data: Resistance RA = 100 Resistance RB = 50 Resistance RC = 100 Resistance RD = 50 Total…
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A: Since you have asked multiple question, we will solve the first question for you. If youwant any…
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A: R1 = 5 ohm R2 = 3 ohm R3 = 4 ohm R4 = 6 ohm V1 = 7 V V2 = 2 V V3 = 4 V V4 = 6 V
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Q: The current ia in the circuit shown in the figure is 4.0 mA . (Figure 1) {2 ΚΩ 1 ΚΩ 3 ΚΩ www Σ4 ΚΩ
A: Given, The current, ia=4mAia=4×10-3A Now, -2i0+1×ia+4×ia+3×ia=02i0=8ia2i0=8×4i0=16mA
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A: Given data The potential difference across the battery is V = 12 V The magnitude of the resistance…
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A: The circuit diagram is shown below.
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A: Potential difference V = IR
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Q: What is the total power delivered by the power supply shown in the circuit below? 2 kQ - 10 V>4 kQ>…
A: Solution:Consider the given circuit:
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A: Given data: Battery emf (ε) = 3.53 V Resistor R1 = 69.44 Ω Resistor R2 =61.16 Ω Required: The…
Q: r = 1.0 2 E = 18 V R= 6.6 2 r = 2.0 2 E = 12 V
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Q: The emts in the figure below are &₁7.00 V and ₂ = 21.0 V. The resistances are R - 16.50, R₂-31.50,…
A: Given:- The two voltages are given as V1=7.0 V V2= 21.0 V R1= 16.5 ΩR2= 31.5 ΩR3= 46.0 ΩR4= 58.0 Ω…
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A: voltage of battery is Vb = 10 V Resistance R1 = 2.5 Ω , R2 = 15 Ω , R3 = 10 Ω , R4 = 5 Ω
Q: In the circuit shown, the potential difference between A and B is 1V M ww 1Ω ww 2V 10Ω. wwB C 3V N…
A: according to the given circuit,i1=v1R1=1 Ai2=V2R2=2 Ai3=V3R3=3 A
Q: What will be the value of the current I in the circuit EA 2 V 30 Ω 30 2 B 30 2
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