Analysis: Example 7.4: Numerical example with voltage 4 Ω 10 V V1 V 2 5 A 6Ω 10 2
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- Hi i need 7.133P poblem "Microelectronic Circuits" by Sedra smith solved thanksA battery with EMF of 7V and an internal resistance, r=0.08 is connected to a load resistance R=240. Determine its terminal voltage. r www + M Ra utility company plans to connect a total of 20 uf of capacitance to a 7200 v line at 60 hertz to make this connection the capacitors will be connected in series what is the capacitance of each capacitor what is the minimu ac voltage of each capacitor what is the current flow of the circuit and what is the kvar rating of each capacitor.
- Two capacitors having voltage 2F and 4F are connected in series. This combination is connected to a 100V supply, calculate the voltage across the 2F capacitor. a) 66.67V b) 33.33V c) 100V d) 0V2) a) For the circuit below, what is the charge on each of the capacitors once steady state conditions are reached? b) What is the reading on the ammeter after 3 ms? 120 v A 2 uf 2000 2 3000 2 3 ufThe R-L Circuit: An inductor with an inductance of 2.50 H and a resistance of 7.00 n is connected to the terminals ofa battery with an emf of 6.00 V and an internal resistance of 1.00 n. What is the rate ofincrease of current at the instant when the current is 0.500 A? A) 0.8 A/s B) 0.6 A/s C) 0.4 A/s D) zero E) None of the above.
- 32 12 VFRT→ 162 12 2 Figure 7.1 See Figure 7.1. What is the current through the 30 resistor? 1.33 A 0.33 A 2.0 A O 1.0 AA battery is comprised of 4 cells connected in parallel, each cell has an EMF with 1.5V and an internal resistance of 600.00 mΩ. There is no load connected to the terminal. Solve for Rint.The terminal voltage of a battery is 13.5 v when 5 A current enters its positive terminal, but when a 5 A current leaves its positive terminal, the terminal voltage becomes 11.5 v. Determine the EMF and internal resistance of this battery. (8 = ?, r =?)
- AV I R₁ A C₁ B C₂ R₂Solve the following. Values:N=3M=7L=6K=4J=6PROBLE M 7.15 Determine VOUT versus vIN for the circuit shown in Figure 7.8 Assume that the MOSFET operates in saturation and is characterized by the paramete K and VT. What is the value of VOUT when VỊN = 0? PROBLEM 7.16 Determine vo versus vị for the circuit shown in Figure 7.8 Assume that the MOSFET operates in saturation and is characterized by the paramete K and VT. What is the value of vo when vj = = 0?