6.) Based on Serway 42.34 A diode, a 7452 resistor and a battery are all connected in a series circuit, you may assume the diode is forward biased. The diode is at room temperature of 300K and the saturation current of the diode is 1.0μ A. The battery maintains a constant voltage of 2.42V between its terminals. (a) Use Kirchoff's Laws and the diode equation to show that AVbatt - AVD = ISR (eªAVD/BT − 1) 1 (1) (b) Determine the voltage across the diode AVD. [Hint: the equation cannot be solved algebraically, so you'll need to use an iterative technique, a graphical solution, or a numerical solver such as MATLAB's fzero() command]. (c) Determine the current in the circuit.

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6.) Based on Serway 42.34 - A diode, a 7450 resistor and a battery are all connected
in a series circuit, you may assume the diode is forward biased. The diode is at room
temperature of 300K and the saturation current of the diode is 1.0μ A. The battery
maintains a constant voltage of 2.42V between its terminals.
(a) Use Kirchoff's Laws and the diode equation to show that
AVbatt - AVD = ISR (eAVD/₂T - 1)
1
(1)
(b) Determine the voltage across the diode AVD. [Hint: the equation cannot be solved
algebraically, so you'll need to use an iterative technique, a graphical solution, or
a numerical solver such as MATLAB's fzero () command].
(c) Determine the current in the circuit.
Transcribed Image Text:6.) Based on Serway 42.34 - A diode, a 7450 resistor and a battery are all connected in a series circuit, you may assume the diode is forward biased. The diode is at room temperature of 300K and the saturation current of the diode is 1.0μ A. The battery maintains a constant voltage of 2.42V between its terminals. (a) Use Kirchoff's Laws and the diode equation to show that AVbatt - AVD = ISR (eAVD/₂T - 1) 1 (1) (b) Determine the voltage across the diode AVD. [Hint: the equation cannot be solved algebraically, so you'll need to use an iterative technique, a graphical solution, or a numerical solver such as MATLAB's fzero () command]. (c) Determine the current in the circuit.
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