First order RC: Find Unknown DC Circuit, given current graph

In summary, the conversation discusses a problem involving a DC circuit model with a known source and unknown variables. The solution involves using the equation Tao = R(th)C and performing KVL around the loop. The assumed starting condition is that the capacitor is uncharged. The conclusion is that the working is essentially correct, but there may be some confusion in the wording.
  • #1
iharuyuki
16
1

Homework Statement


upload_2015-4-16_14-29-21.png


Homework Equations


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Tao = R(th) C

The Attempt at a Solution



The unknown DC circuit model consists of a V(th) and R(th)

Tao = (R(th) + 3000) C , total resistance of circuit is R(th) + 3000
0.004 = (R(th) + 3000) (1x10^-6)
R(th) = 1 kOhm

The V(th) should oppose the known source since i(t) goes to 0.
Doing a KVL around the loop clockwise.

-10V + 3000( I ) + I (1000) + V(th) = 0, Voltage across capacitor is 0 since at t=0 it is like steady state.
also, at t=0, I = 0.001 A
then solving gives V(th) = 6V

I get the hunch that the working is wrong but the answer is right by coincidence. Would the working be correct?

Thank you very much.
 
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  • #2
It's basically correct. The problem statement doesn't explicitly say the capacitor starts out uncharged, but that's a reasonable assumption if nothing else is given.

Your wording "at t=0 it's like steady state" isn't all that clear: steady state is clearly not the case at t=0.
What happens at t=0 follows from a second relevant equation: ##Q = CV## which means that at t=0 the voltage drop over the capacitor is zero (-- provided it's uncharged to begin with!).
 

Related to First order RC: Find Unknown DC Circuit, given current graph

1. What is a first order RC circuit?

A first order RC (resistor-capacitor) circuit is a type of electrical circuit that contains a resistor and a capacitor, and is characterized by having only one energy storage element. It is used to filter or delay signals in electronic devices and systems.

2. How do you find the unknown DC circuit in a first order RC circuit?

To find the unknown DC circuit in a first order RC circuit, you will need to analyze the current graph and use Ohm's Law and Kirchhoff's Laws to determine the values of the resistor and capacitor. From there, you can use the appropriate formulas to calculate the voltage and current at different points in the circuit.

3. What is the significance of the current graph in a first order RC circuit?

The current graph in a first order RC circuit represents the flow of current over time. It is a useful tool for understanding the behavior of the circuit and can be used to calculate important parameters such as the time constant, which determines the rate at which the capacitor charges or discharges.

4. What factors affect the behavior of a first order RC circuit?

The behavior of a first order RC circuit is affected by several factors, including the values of the resistor and capacitor, the input voltage, and the type of input signal (DC or AC). The time constant, which is determined by the product of the resistance and capacitance, also plays a significant role in the circuit's behavior.

5. How is a first order RC circuit used in real-world applications?

First order RC circuits are commonly used in electronic devices and systems for various purposes, such as filtering signals, smoothing power supplies, and controlling the timing of signals. They are also used in audio amplifiers, motor control circuits, and many other applications in electronics and electrical engineering.

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