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synthesisFR

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ALOS I HAVE GENERAL QUESTIONS
- can we state AM GM inequalities greater than three (and even quote the general term?) if the question doesnt give it to us.
- how to not fail in mechanics? i cant do any question that involves mf those pulley string stuff or that plane stuff or anything where u need to have physics knowledge. once a question had a pulley pulling two pulleys and i wanted to die.
- in projectile motion if they give it to us in vector form can we just convert to x y form? its easier in x y form and less annoying to draw that stupid as vector i j sign shi
 
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cossine

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ALOS I HAVE GENERAL QUESTIONS
- can we state AM GM inequalities greater than three (and even quote the general term?) if the question doesnt give it to us.
- how to not fail in mechanics? i cant do any question that involves mf those pulley string stuff or that plane stuff or anything where u need to have physics knowledge. once a question had a pulley pulling two pulleys and i wanted to die.
- in projectile motion if they give it to us in vector form can we just convert to x y form? its easier in x y form and less annoying to draw that stupid as vector i j sign shi
Interesting, it seems like you can't use AM-GM inequality without proof going by Terry Lee textbook. Personally I think you should be able to use it without proof.
 

scaryshark09

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- how to not fail in mechanics?
be better

- in projectile motion if they give it to us in vector form can we just convert to x y form? its easier in x y form and less annoying to draw that stupid as vector i j sign shi
yes. do what you want. if you get the answer the hsc marker dgaf
 

carrotsss

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- don’t think so but it doesn’t take very long anyway
- have confidence
- yes
 

synthesisFR

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- don’t think so but it doesn’t take very long anyway
- have confidence
- yes
confidence isnt gonna resolve those wierd ahh forces for me now it it

btw for the simple harmonic motion questions.
like where they say a tide starts at 10 metre and high tide at 16 bla bla blah
u can instead of setting centre of motion at 13 u can set that as zero right
then the extremeties would be +- 3? i like doing it that way with COM at zero
 

carrotsss

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confidence isnt gonna resolve those wierd ahh forces for me now it it

btw for the simple harmonic motion questions.
like where they say a tide starts at 10 metre and high tide at 16 bla bla blah
u can instead of setting centre of motion at 13 u can set that as zero right
then the extremeties would be +- 3? i like doing it that way with COM at zero
you can set anything at zero but why
 

synthesisFR

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you can set anything at zero but why
its better


ALSO for SMH
can we state v^2 = n^2 ... yeah that formula or do we have to prove it first before using
and do i have to find all the values like n, a and stuff by making the equations or can i just instantly make the V^2 equation and then just use that instead?
 

carrotsss

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its better


ALSO for SMH
can we state v^2 = n^2 ... yeah that formula or do we have to prove it first before using
and do i have to find all the values like n, a and stuff by making the equations or can i just instantly make the V^2 equation and then just use that instead?
I’d say prove it
 

synthesisFR

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Screen Shot 2023-09-10 at 10.08.24 pm.png
for part C i know you would:
- find what time P1 reaches this terminal velocity
- then equate this time with part b) to solve for the velocity of particle 2 right.

BUT IK THIS MIGHT BE A STUPID QUESTION BUT HEAR ME OUT WHAT IF YOU
- find WHERE P1 reaches this terminal velocity
- find the v(x) equation for P2
- and then equate the x for both to find the velocity of P2.
would you also be able to do that?
 

carrotsss

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View attachment 39655
for part C i know you would:
- find what time P1 reaches this terminal velocity
- then equate this time with part b) to solve for the velocity of particle 2 right.

BUT IK THIS MIGHT BE A STUPID QUESTION BUT HEAR ME OUT WHAT IF YOU
- find WHERE P1 reaches this terminal velocity
- find the v(x) equation for P2
- and then equate the x for both to find the velocity of P2.
would you also be able to do that?
yeah I guess so
 

scaryshark09

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BUT IK THIS MIGHT BE A STUPID QUESTION BUT HEAR ME OUT WHAT IF YOU
- find WHERE P1 reaches this terminal velocity
- find the v(x) equation for P2
- and then equate the x for both to find the velocity of P2.
would you also be able to do that?
yeah maybe it would work, but why would you do that when you an use part b
 

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