Validity of interconnection in electric circuit

In summary, the conversation discusses a circuit with dependent and independent current sources, and the validity of the interconnection. It also addresses the calculation of total energy developed and the behavior of voltage sources in the circuit. There is a question about whether the dependent current source generates voltage.
  • #1
Emilio
10
0

Homework Statement


79Cs3YG.png


Homework Equations


P=Vi

The Attempt at a Solution


For part a, it looks like the dependent current source (4i1) leads directly to i1, with nothing that could change it. This would mean the interconnection is invalid, right? I can't tell if this circuit is in series or in parallel (is it both?), but I know independent voltage sources can't be parallel, and independent current sources can't be in series. I don't know which one would apply here though.

If the circuit is invalid, then I'm not sure how to find the total energy developed, but I guess it would be P=Vi at each node.
 

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  • #2
There are 2 independent current sources, together pushing how much current downwards to the lower node?
 
  • #3
Ah, so they push 240mA towards the lower node, with 4i1 leaving the node. And that would make i1=60mA.

So then lower node = 0 = 180mA+60mA-4i1 = 180mA+60mA-4(60mA), which means it;s valid?
 
  • #4
Next, address the voltage sources. Do they look okay here?
 
  • #5
At the top node, according to KVL, the net voltage should be 0=v1+v2. But here, the voltages are in the same direction, and are of different magnitudes so they don't cancel out. Does the dependent current source generate voltage as well? I thought it just changed the current.
 
  • #6
Current sources adjust their terminal voltage to whatever is needed in order to force their designated current through the circuit.
 

Related to Validity of interconnection in electric circuit

1. What is interconnection in an electric circuit?

Interconnection in an electric circuit refers to the connection between different components or elements of the circuit. It allows for the flow of electricity and enables the circuit to function properly.

2. How is the validity of interconnection determined in an electric circuit?

The validity of interconnection in an electric circuit is determined by ensuring that the connections between components are secure and free of any loose or faulty connections. It also involves checking the continuity of the circuit and ensuring that all components are connected in the correct sequence.

3. Why is the validity of interconnection important in an electric circuit?

The validity of interconnection is crucial in an electric circuit as it ensures the proper functioning of the circuit and prevents any potential hazards such as short circuits or electrical fires. It also ensures the efficiency and reliability of the circuit.

4. What are some common issues that can affect the validity of interconnection in an electric circuit?

Some common issues that can affect the validity of interconnection in an electric circuit include loose or corroded connections, incorrect wiring sequence, and faulty components. Environmental factors such as moisture or temperature changes can also impact the validity of interconnection.

5. How can the validity of interconnection be maintained in an electric circuit?

The validity of interconnection can be maintained by regularly inspecting and tightening connections, ensuring proper wiring sequence, and using high-quality components. It is also important to follow safety protocols and handle electrical components with care to avoid damaging the interconnections.

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