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Physics: Post your doubts here!

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Smart Question
Beta has Range of Energies and it also Has high speed and Would be Deflected by Electrons in Orbitals? How many marks for This question? :)
I didnt give the link for this one ;) .And by the way m.s REJECTS high speed sorry :p .
β-particles have a range of energies
β-particles deviated by (orbital) electrons
β-particle has (very) small mass
(any two sensible suggestions, 1 each, max 2) B2 [2]
Do not allow β-particles have negative charge or β-particles have high speed [2] marks
 
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Umm..I dont find any.I think its okay.U tel.?
Umm umm I cant make out! it must be correct :)
Just 3 golden minutes PLEASE ! xD
The time period of the stationary wave is 20ms. After 5 ms, it would be a straight horizontal line, drawn on the dotted line. Take a look at this animation and you will understand the logic

Standing_wave_2.gif


usama321 :D
 
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Umm umm I cant make out! it must be correct :)

The time period of the stationary wave is 20ms. After 5 ms, it would be a straight horizontal line, drawn on the dotted line. Take a look at this animation and you will understand the logic

Standing_wave_2.gif


usama321 :D
okay and now from where and how you got 20ms and what is meant by 5ms is 1/4 of the cycle I didn't get it HOW !
 
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the question says that the radius of the second raindrop is less than the first.
and F=6pi*D*R*v
if the radius for the second is less the frictional force acting on it is also less.
and Density=m/v
both the rain drops have the same density but the mass if the second is approx one-cube of that of the first bcoz the radius is less.

the difference in mass is much greater than the difference in frictional force. so, when if the equation
mg-f=ma
the acceleration of the second will be less than the first. so the slope of the second graph will be below that of the first. and as the mass of the second drop is less the weight (downward force) will b less and it will reach terminal velocity earlier than the first. so the graph will reach a lower constant value earlier.
 
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