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- Show solution thanks1. Using Series-Parallel concept, Find the following for the given circuit. The value of the power supply and resistances are given in Page-4. a) the current supplied by the source b) the voltage drops across each resistor c) the r dissipated by R3 R1=45kn R2=2kn R3=22kQ R4=14kn R5=17kn R6=85kn V1=24 v R₁ R₂ V₁ R₂ R₂ R₂Given the circuits below, express the KCL and KVL equations, and solve for the current along and voltage across each resistor using the Branch Current Method and Mesh Current Method.
- The following are the readings taken while conducting an experiment on a wind turbine. what will be the value of open circuit voltage, if the short circuit current is 0.472 A, Maximum power point voltage is 5.32 V, Maximum power point current is 0.111 A and the fill factor is 0.599? Select one: a. 2080 mV b. 2.08 mV c. 8020 V d. 80.2 VSOLVE THE FOLLOWING PROBLEMS COMPLETELY A 20-ohm resistance is connected in parallel with a 60-ohm resistance. Another set, 80-ohmandanunknown resistor are also connected in parallel. The two sets are connected in series. If thesupplyvoltage is 120 V , find the ohmic value of the unknown resistance so the voltage across thefirst setis twice as much that of the second set.45 Which of the statements for the circuit below are correct? Thanks to I- C1 and C2 capacitors, the voltage gain of the circuit increases. Capacitors II - C1 and C2 are coupling capacitors and provide isolation function between AC and DC voltages in the oudut of circuit. thithe Thanks to III - RE resistance, the voltage gain of the circuit increases. Thanks to the IV - RE resistance, the stability of the circuit increases. V- C3 Capacitor is a bypass capacitor and prevents loss of voltage gain. Capacitor VI - C3 is the coupling capacitor and has no effect on the voltage gain in the circuit. VII - The greater the value of the source internal resistance Rs, the lower the voltage gain. VIII - The greater the value of any RL load to be added to the circuit, the lower the voltage gain. Vcc Rc R1 C2 B RE Please choose one: O a. III, IV, V, VI and VII O b. II, III, IV, V and VII O c. I, II, III, IV, V, VI, VII and VIII O D. IV, V, VI, VII and VIII O to. I, II, III, IV, V, VI and VII O f. I,…
- solve for VL and IL using superposition. Look all the pictures . I have done and I dont know why when i use the nodal analysis and the node equation they gave. I got difference voltage value. Can you please help me to do this ? Thanks..c) Two batteries A and B are connected in parallel and load of 100 is connected across their terminals. A has an e.m.f of 12V and an internal resistance of 2 N; B has an e.m.f of 8V and internal resistance of 1 . Use Kirchhoff's laws to determine the values of currents flowing in each of the batteries and external resistance. Also determine the potential difference across the external resistance.Find the mesh currents in the figure below
- Topic: Direct Current Circuit which contains Open and Short Circuit, Series and Parallel Circuit, Current Divider Principle, Voltage Divider Prinicple, and Delta-Wyne Connection. Determine the value of VT and I. Note: DRAW THE DIAGRAMIn an electrical circuit four resistors are connected in parallel and their equivalent resistance is 50ohms. Find the value of each resistors if the currents through each impedance are 0.8, 0.4, 0.6 and 0.2 ampere.Two batteries, A and B, are connected in parallel and an 80 ohm resistor is connected across thebattery terminals. The e.m.f. and the internal resistance of battery A are l00V and 5 ohm respectively,and the corresponding values for battery B are 95V and 3 ohm respectively. Find (a) the value anddirection of the current in each battery and (b) the terminal voltage