Determine the current in the circuit below in mA. Use Current = Voltage/Resitance. ΔV=1.2V 2 kΩ
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Determine the current in the circuit below in mA. Use Current = Voltage/Resitance.
ΔV=1.2V
2 kΩ
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- For the circuit shown in the figure below, use KVL to solve for unknown voltages Vc, VE, VG, VH . Give all your answers in volts. + - VA=5 V + Vo= 6 V - + A G VG + - Vg=7 V + + Ve - В E H VH - Vc + + VF=16 V – C +The combined electrical resistance R of two resistors R1 and R2, connected in parallel, is given by the equation below, where R, R1, and R2 are measured in ohms. R1 and R2 are increasing at rates of 0.9 and 2.0 ohms per second, respectively. 1 = 1 + 1 At what rate is R changing when R1 = 37 ohms and R2 = 87 ohms? (Round your answer to three decimal places.)Discharging Capacitor In the circuit below, the time required (s) for the charge on the capacitor to drop to 37% of its value after the switch is closed is 0.8 s. If R = 750 ohms, what is C in μF (microfarad)? R +9 Submit Answer Tries 0/20
- In the circuit shown above, determine the voltage of the source V1 if V2 = 38.5 V, R1 = 191 ohms, R2 = 113 ohms, and R3 = 108 ohms and the current through R1 is 0.687 A.For a given circuit, L = 7 mH, R = 0, C = 20 nF, and E=0. Find the equation relating the charge and the time if q = 105 C and i = 0 when t = 0. Choose the correct equation below. O A. q 100,000 cos 84,515t O B. q= cos 84,515t O C. q 100,000 sin 84,515t O D. q = 100,000 cos 0.0845tCalculate the total resistance between X and Y. Simplify the circuit.
- Please provide the correct answer. Keep in mind it is asking for two significant figures. 195 and 190 are incorrect.An electric current transports 360. µC of charge in 224. milliseconds. Calculate the size of the electric current. Be sure your answer has the correct unit symbol and 3 significant digits.Given the circuit below, determine the magnitude of the current through the 20-volt source.
- Problem 19: Consider a 1.36 kW short circuit through a 0.095 resistance. What voltage is involved in the short circuit, in volts? AV=IConsider the circuit shown in figure, For R1=6000, R2-9000, V1-6 V and 11-0.39 A, using Kirchhoff's laws and Ohm's law find the following: R1 Il o R2 VI VO (voltage difference on R2)= Power on 1= Power on R1= Power on R2= Power on V1%DFind the equivalent resistance of the following circuit, using the values below. Give your answer in Ohms. R₁ = 1.50 S 2 R₂=2.40 2 R3 3.20 2 R₁=4.70 2 24.96.91.88 R₁ www R₂ ww R₁4 ww +1, 12V R₂ www W