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Physics: Post your doubts here!

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so max height reached by ball is when v = 0 m/s
so find the max height reached using (v^2) = (u^2) + 2as
0 = (11 sin 45)^2 + (2*-10*s)
s = 3.025 m
so ball goes just over the wall.
Hope it is clear.

I love you.
BE AWARE OF THAAT
 
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didnt understand this part

what has been found is the min possible area of the cr0ss-section. what is needed is the max area of cross-section,
so to find the max area of cross-section just take the original area and subtract the min area from it.
you'll obtain the max area.
hope it is clear, if not do not hesitate to ask.
 
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so max height reached by ball is when v = 0 m/s
so find the max height reached using (v^2) = (u^2) + 2as
0 = (11 sin 45)^2 + (2*-10*s)
s = 3.025 m
so ball goes just over the wall.
Hope it is clear.

Can you explain ""(2*-10*s)"" ? and thanks
 
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ASA
can anyone please explain why gravitational potential is always negative inside the gravitational field?
 
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can anyone please explain why gravitational potential is always negative inside the gravitational field?

To move the unit mass away from the gravitational field in the first place, +ve work is done. So when the reverse is done, ie. unit mass is moved from infinity, where the g.potential is zero to a point inside the gravitational field, work is gotten out, or -ve work is done. Or lets say that when ur moving from max gravitational field...to min...to zero >> infinity, the gp is poisitve. so if you go in the opp direction which is the correct definition, the gp will become more and more negative. hope that helps
 
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To move the unit mass away from the gravitational field in the first place, +ve work is done. So when the reverse is done, ie. unit mass is moved from infinity, where the g.potential is zero to a point inside the gravitational field, work is gotten out, or -ve work is done. Or lets say that when ur moving from max gravitational field...to min...to zero >> infinity, the gp is poisitve. so if you go in the opp direction which is the correct definition, the gp will become more and more negative. hope that helps
thnx alot:D
 
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principle of conservation of momentum states that provided no external force act , the momentum of a sytem is conserved.
since in the system of ball and earth , a force of gravitation is acting tht causes acceleration or change in momentum, the law of conservation does not apply.
 
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you did not mention what part of question 5 you did not understand. anyhow i will explain the first one in thich it says that T2 lags behind a phase diff. 60 degrees
there is a rule : phase diff.(theta) = (t/T) X 360 . thetais given as 60 degrees. T is time period for one oscilation and t is difference of T between two waves.
you sould substitute for t and the answer will give you the amount by which T2 is behind T1.
simply draw T2 now !

i hope you understood (y)
 
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principle of conservation of momentum states that provided no external force act , the momentum of a sytem is conserved.
since in the system of ball and earth , a force of gravitation is acting tht causes acceleration or change in momentum, the law of conservation does not apply.
Doesn't the principle say that two objects needs to collide? If it is so, can we say since ball is not in contact with any other object, the principle doesn't support the answer?
 
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principle of conservation of momentum states that provided no external force act , the momentum of a sytem is conserved.
since in the system of ball and earth , a force of gravitation is acting tht causes acceleration or change in momentum, the law of conservation does not apply.
thnx! :)
 
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