Checking Your Work: Did I Solve #14 Correctly?

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Marcin H said:
I think I did 18A correctly,
What you found is the total resistance of the circuit.
 
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Doc Al said:
What you found is the total resistance of the circuit.
Oh, true... Hmm. So how else can I find the resistance? Should I find the voltage drop across the 20 ohm resistor and then subtract that from the source voltage and use that V in the equation? Or is their a different way.
 
Well, you found the total resistance. The only unknown is R, so solve for it. :smile:
 
Doc Al said:
Well, you found the total resistance. The only unknown is R, so solve for it. :smile:
Oh... lol. I keep over thinking everything. 100-20-60=20ohms. :sorry: I am so used to harder circuits from E&M that now I'm making dumb mistakes over easier problems. It all works out now. Thanks!:biggrin:
 
Doc Al said:
Well, you found the total resistance. The only unknown is R, so solve for it. :smile:
Hello again! Sorry have one last question! I thought I had this right, but then I started thinking about it and I'm not sure anymore. My thought was since the voltage was changing and the current was constant, that the source was a voltage source. I kinda thought of it as you changing the voltage on a power supply or something keeping the current constant. Is that right? I feel like it's not.
New Doc 6_1.jpg
 
Marcin H said:
Hello again! Sorry have one last question! I thought I had this right, but then I started thinking about it and I'm not sure anymore. My thought was since the voltage was changing and the current was constant, that the source was a voltage source. I kinda thought of it as you changing the voltage on a power supply or something keeping the current constant. Is that right? I feel like it's not.
You had it right the first time. Read this: Voltage and Current Sources
 
Doc Al said:
You had it right the first time. Read this: Voltage and Current Sources
I am very confused right now. So are you saying that the graph shows a constant voltage source? My professor said that if you have a constant current, then it is a current source, but i don't think that's right. The slope for the graph on that problem would be zero which means zero resistance. The hyperphysics link agrees with that too. Here are my professors notes:
Screen Shot 2016-01-26 at 11.28.16 AM.png

Edit: Also, I asked this here yesterday and gneill seems to say otherwise.
https://www.physicsforums.com/threads/voltage-or-current-source.854007/#post-5356009
 
Marcin H said:
So are you saying that the graph shows a constant voltage source?
No. Current is on the vertical axis and is constant.

Marcin H said:
My professor said that if you have a constant current, then it is a current source, but i don't think that's right.
Your professor is correct.

Marcin H said:
The slope for the graph on that problem would be zero which means zero resistance.
Note that is is a Current vs Voltage graph, so be careful how you interpret the slope.

Marcin H said:
The hyperphysics link agrees with that too.
Not sure what you mean here. Hyperphysics agrees with your professor (and with me).
 
Doc Al said:
Note that is is a Current vs Voltage graph, so be careful how you interpret the slope.
How can you interpret the slope then? Slope is rise over run, so i/v. Oh, which is not resistance. REsistance is v/i. So what does the slope tell us exactly?
 
Marcin H said:
So what does the slope tell us exactly?
You can think of it as 1/R going to zero.

Or just imagine how you'd draw the v/i graph.
 
Ohhhhhhh. Ok, that makes sense now. I had it flipped. Now makes me question why show the graph like that -_- Oh well. Thanks for clarifying!