4) Find the Norton equivalent of the following circuit. 5 µF 4 cos(200t+30°) A ele 10 H www 2 ΚΩ b
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- When the switch is in position 1, the circuit will charge the capacitor. Find the Thevenin Equivalent Circuit for the charge phase and determine the time constant (Rh*C) for the charge phase.Find Ib Ic Vce Vb Vc Vrb Vre and Vrc B=100Plz solve within 30min I vill give definitely upvote and vill give positive feedback thank you
- B=1005. Suppose the following circuit is left open for a long time. 5000 22 24 V (a) What is the facial curren What is the carte II What is the ches What is the not the pos 80mF when we close thei 90s after we close the switch? dissipe the resistor 90s arter ene capacitor ons after we close the suit Close the switchi difference across the spacitor 008 after we close the switch across the resisto we close the swit 12 the potential (g) What is the energy stored in the capacitor 90s after we close the switch? (h) What is the energy dissipated by the resistor during the first 90s since the switch is closed?can you help me understand this process? Not really understanding because of the unknown values for the inductors/coils
- Just b)Take eo=1.6×10-19JV, k=1.381×10-23JK Question 4 : A solar cell (photovoltaic cell) has an open circuit voltage value of 0.5 V with a reverse saturation current density of J0=1.9×10-9Am2. The temperature of the cell is 25℃, the load voltage is 0.55 V. The solar irradiation is 900 Wm2, determine (c) The power output of the cell per unit area considering this load voltage 0.55 V, and the current output density of (b), and (d) The efficiency of the solar cell.Take eo=1.6×10-19JV, k=1.381×10-23JK Question 4: A solar cell (photovoltaic cell) has an open circuit voltage value of 0.5 V with a reverse saturation current density of J0=1.9×10-9Am2. The temperature of the cell is 25℃, the load voltage is 0.55 V. The solar irradiation is 900 Wm2, determine (a) The current output density, Js. (b) The current output density, Js if we were to find the maximum power condition at the load voltage. (c) The power output of the cell per unit area considering this load voltage 0.55 V, and the current output density of (b), and (d) The efficiency of the solar cell.

