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How did Physics M/J '17 52 go?

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I thought the first question was a bit tricky (to be handled with care), and the intercept produced large variations but overall, I guess it was okay.
 
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I thought the first question was a bit tricky (to be handled with care), and the intercept produced large variations but overall, I guess it was okay.
question 1 was alot trickier, I spent literally 10 minutes on planning what to do , but question 2 was easy.
 
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Question 1 what did you guys write?
Omg for question 2, my gradient was 0.139 but my y intercept was around 5.something but the error in the y-intercept was huge!!! For percentage errors in the end I got 11% in E and 111% in Q. Many people in my school got those answers but Idk.. the errors are quite large.


Exactly. Error in the intercept was pretty big. I got around 50% for Q. Mine was around yours for E

I wrote r as independent and f as dependent. What about you?
 
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question 1 was alot trickier, I spent literally 10 minutes on planning what to do , but question 2 was easy.

I understand. I was unsure about the IV and DV for quite a while.

Something else that was weird was they already gave an expression for K. But I guess we needed to write the one through the gradient, right?
 
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Question 1 what did you guys write?
Omg for question 2, my gradient was 0.139 but my y intercept was around 5.something but the error in the y-intercept was huge!!! For percentage errors in the end I got 11% in E and 111% in Q. Many people in my school got those answers but Idk.. the errors are quite large.
gradient same. E also close enough. Q wrong.
 
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no
What did you get for Q? And what was your y - intercept and uncertainty in y - intercept?
What about q1?
not sure about question 1, I took frequency Independent variable. and I varied it by using oscilloscope. I kept mast constant. I kept decreasing the freq which after rotation, my mass started to move more farther away from center. which tells me that r=1/f
 
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no

not sure about question 1, I took frequency Independent variable. and I varied it by using oscilloscope. I kept mast constant. I kept decreasing the freq which after rotation, my mass started to move more farther away from center. which tells me that r=1/f
You cant vary frequency through the oscilloscope. You measure frequency through it. Frequency can be varied using a signal generator or through the motor itself
 
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I messed up Q2. I used x2-x1/y2-y1 to find the gradient instead of vice versa. Now my Y-intercept, value of E and value of Q and all the uncertainties are wrong because of that stupid mistake
 
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Hey what did you write for q1??
Independent r
Dependent f
Mass constant
Connect motor to a dc circuit
Connect oscillocope aroubd the motor
Connect the motor to the turn table
Place mass on the table and measure r with ruler and set square
Slowly increase frequency until the mass just moves. Observe using pressure pad and motion sensor
 
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I understand. I was unsure about the IV and DV for quite a while.

Something else that was weird was they already gave an expression for K. But I guess we needed to write the one through the gradient, right?
yeah you just had to tell tht about K.
 
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Independent r
Dependent f
Mass constant
Connect motor to a dc circuit
Connect oscillocope aroubd the motor
Connect the motor to the turn table
Place mass on the table and measure r with ruler and set square
Slowly increase frequency until the mass just moves. Observe using pressure pad and motion sensor
you my friend defo getting A*. MA SHA ALLAH.
 
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I got y-intercept around 7. Uncertainty around 3.

And yes, also smooth surface anyone? For q1.
 
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Independent r
Dependent f
Mass constant
Connect motor to a dc circuit
Connect oscillocope aroubd the motor
Connect the motor to the turn table
Place mass on the table and measure r with ruler and set square
Slowly increase frequency until the mass just moves. Observe using pressure pad and motion sensor


And measure mass with balance.
 
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