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Physics 17 Online
OpenStudy (anonymous):

physics question l will provide some images ....

OpenStudy (anonymous):

OpenStudy (experimentx):

If acceleration is constant then \( a_1 = a_2 = a_3 = ...=a_n= k \) average acceleration = \( \frac{a_1 + a_2 + a_3 ... + a_n}{n} = \frac{nk}{n} = k \)

OpenStudy (experimentx):

for second equation, put \( v_2 = v\) and \( v_1 = u\) , if it the even starts at time zero, \( t_1 = 0 \) and \( t2 = t \)

OpenStudy (experimentx):

the picture is description of second picture.

OpenStudy (experimentx):

4 th picture ... you know how to take average between two things right?? you must be joking!!!

OpenStudy (anonymous):

no no i'm not joking ... i have just started studying physicss.. haahahahahahaahah :) :) i want to get to Electronics Engineering level :)

OpenStudy (experimentx):

5 th picture, put \( x_ 1 = x_0 \) and \( x_2 = x \) and if the event starts at t=0, then t1 = 0 and put t2 = t

OpenStudy (anonymous):

but if even don't start at t =0 ... is it special case t = 0 ?

OpenStudy (experimentx):

last last picture is combination of two two equations!! put the value of v from fist equation ... you will get this equation.

OpenStudy (experimentx):

then you have t2 - t1 = t

OpenStudy (anonymous):

why we need to get this equation ?

OpenStudy (experimentx):

?? these are the equations of motion ??

OpenStudy (anonymous):

are you asking or telling.. i'm confused ... u used question marks

OpenStudy (experimentx):

i am telling your ... these are the basic equation of motion. and since 't' is the difference of time, it doesn't matter much. because we know velocity if u at t1

OpenStudy (experimentx):

BRB

OpenStudy (anonymous):

sure.. :) :) thanks i got alot .. :) thankssssssssssssssssssssss :) @experimentX

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