005 (part 1 of 2) A generator has a terminal voltage of 117 V when it delivers 10 A, and 95 V when it delivers 20.9 A. Calculate the emf. Answer in units of V. 006 (part 2 of 2) Calculate the internal resistance. Answer in units of 2.
Q: 1. Consider the circuit shown below. Let ɛ = 36 V, Rị = 4.8 N, R, = 7.2 N, and R3 = 14.4 N. (a) What…
A: Combination of parallel resistance RAB = 4.8×7.2×14.4/(4.8×7.2 + 7.2×14.4 + 4.8 ×14.4) RAB = 2.4Ω
Q: 001 If the emf of a battery is 21 V and a current of 44 A is measured when the battery is shorted,…
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Q: 56.0 V 19.0 2 AV2 Consider the circuit above where AV1 = 46.3 volts and AV2 = 78.9 volts. If you…
A: Given that=∆V1 =46.3 V ∆V2= 78.9 V Resistance = R = 19 Ohms…
Q: A typical television dissipates 275 W when it is plugged into a 120 V outlet. a). Find the…
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Q: Consider a circuit shown in the figure. If the resistors are R1= 20 N, R2=40 Q, and the emf is ɛ=3…
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Q: 2) A. A A lamp (bulb) is connected to an electric cell (battery) and it lights. The lamp is then V A…
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Q: 8. For the circuit shown below, determine the value of the unknown resistor R3 and the potential…
A: Solution:-Given that
Q: A 1500-W heater is designed to be plugged into a 120-V outlet. Part A What current will flow through…
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Q: ww
A: Please see the answer in Step 2
Q: Use the circuit on the right. Calculate the Voltage Drop [AV, {v}] over the Capacitor after 35.0…
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Q: 16. In the circuit shown in Figure emf = 50 V and C = 2.0 µF the capacitor is initially uncharged.…
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Q: 2. Now assume that C'eq = 10 μF and the voltage across this new equivalent capacitance is v (t) = 5…
A: The new equivalent capacitance is The voltage across the equivalent capacitance at time t is;Part…
Q: The figure shows a simple RC circuit consisting of a 100.0-V battery in series with a 10.0-µF…
A: Given: Vo=100vC=10.0μF=10*10-6 Ft=2.0 sV=41 V (voltage across capacitor)
Q: a. Find the current ₁ and ₂ in the following circuit. b. Find the voltage difference across the 2 C.…
A: Required current I1 and I2 voltages across different resistors.
Q: 5- Consider the circuit shown in Figure 4. The emf source has negligible internal resistance. The…
A: Given that Resistances are R1 = 6 ΩR2 = 4 Ω Capacitance is C = 9 μF Charge on capacitor is Q = 36…
Q: 12. Charge stored in a capacitor is Q = 13. Power delivered to a circuit by the battery is P = 14.…
A: The charge stored in a capacitor is product of potential difference and capacitance, i.e. Q=CV
Q: 1. What are the magnitude and direction of the current in the 20 Q resistor in the circuit diagram?…
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Q: A 12 V battery has an internal resistance of 3 Ω. It is connected in series with a 6 Ω resistor…
A: The objective of the question is to sketch the given circuit and calculate the current and voltage…
Q: 4A. I measured the resistance of a cold incandescent light bulb (20 °C) to be 133 . This particular…
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Q: 4A. I measured the resistance of a cold incandescent light bulb (20 °C) to be 133 2. This particular…
A: Given data: The power consumed by bulb is P=60 W. Voltage provided is V=120 V.
Q: Given the circuit and currents i1=0.026A, i2=-0.0142A, and i3=0.0154, Find change in voltage from…
A: Electric Circuit is given in the question.
Q: 7. Determine the equivalent capacitance of the following circuit. You must draw the circuit while…
A: Step 1: Step 2: Step 3: Step 4:
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- 1. Consider the circuit shown below. Find V₁, 12, and 13. 1₁ = 2 A R₁ = 120 EV₁ ✓ V 12 VA ΓΑ 13 R₂ = 60 R₂ = 50 ww all Hint: Use Kirchhoff's Laws to analysze this circuit. Label all currents through all the resistors. V₁ = 12= 13= V₂ = 21 V9. [-/1 Points] DETAILS SERCP10 18.P.037. What minimum number of 45 W lightbulbs must be connected in parallel to a single 210 V household circuit to trip a 48.0 A circuit breaker? lightbulbs Submit AnswerFor the following, put all final answers in the +20V table below or sketch a similar table. a. Solve for the equivalent resistance of the 20 circuit. Put your final answer in the table. b. Solve for the voltage across and the current 12 Q 10 through each resistor in the circuit. Fill in the table. 20 Ω Equivalent Resistance = Resistor (2) AV| (V)| |I| (A) Ω 1 2 5 12 20
- 35. Consider the circuit illustrated below. (A) Find each of the currents. A C B 3.0 Ω 3.0 Ω 24 V 21 V 18 V 6.0 Ω D (B) What numerical value, with units, does the voltmeter read? (C) Rank the electric potential at points A, B, C, and D.7. A 277-V emf is connected to the terminals A and B. Here,V = 277V, R1 = 15 Ω, and R2 = 19Ω. What is the current in the 15-Ω resistor? ___ACalculate the unknown resistance, R, of Figure Q2 if the current passing through it is 8 A. Find also the voltage across the parallel part of the circuit and the power (P = IV) consumed by the 500 resistor. 10 A 10 Ω 50 Ω Figure Q2 R [Answers: 12.5 2; 100V; 200W ]
- Consider the circuit shown below. The terminal voltage of the battery is V = 18.00V. Find the equivalent resistance of the circuit. R₁ = 4.00 2 alıla V = 18.00 V R3 = 4.00 2 a. 3.00Ω O b. 1.50Ω O c. 9.00 O d. 0.670 R₂ = 1.0033. Three resistors A, B, and C are connected in series to a 120 V supply. If the resistor A = 60 Ω and the voltage across resistor B = 40 v when the current is 1/2 A, what is the resistance of resistor C in Ω2. a) What is the total resistance of the circuit? b) What is the current through the 100 Ω resistor? c) What is the power dissipated in the 100 Ω resistor? please hand write it or make it very clear to understand
- 27.81. Find the equivalent capacitance across the terminals of the circuit in Fig. 2.32. C1 C2 2.7 µF 2.7 μF 100 μFC3 10 µF=C4 Figure 2.32 Circuit for Problem 1.See the above circuit diagram to answer the question. The battery voltage is, V = 89.5 V; R1 = 51 Ohms; R2 = 115 Ohms; R3 = 146 Ohms; R4 = 79 Ohms; R5 = 59 Ohms; and R6 = 69 Ohms. How much current flows through resistor R4? 0.232A 0.163A 0.395A 0.099A