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New answer posted

7 months ago

0 Follower 28 Views

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Payal Gupta

Contributor-Level 10

This is a short answer type question as classified in NCERT Exemplar

let initial velocity Vi

Distance travelled in time t= xi

For the graph

tan θ = vi/xi= vi-v/x

V= -vix/xi+Vo

Acceleration, a = dv/dx= -vidx/xidt

So a= -viv/xi= - v i x i ( - v i x i x + v i )

New answer posted

7 months ago

0 Follower 11 Views

P
Payal Gupta

Contributor-Level 10

This is a short answer type question as classified in NCERT Exemplar

When the ball dropped from the building u1=0, u2=40m/s

Velocity of the dropped ball after time t

V1=u1+gt

V1 = gt

For ball thrown up u2=40m/s

Velocity of the ball after time t

V2=u2-gt

=40-gt

Relative velocity =v1-v2

=gt- [-40-gt]=40m/s

New answer posted

7 months ago

0 Follower 17 Views

P
Payal Gupta

Contributor-Level 10

This is a short answer type question as classified in NCERT Exemplar

When the ball dropped from the building u1=0, u2=40m/s

Velocity of the dropped ball after time t

V1=u1+gt

V1 = gt

For ball thrown up u2=40m/s

Velocity of the ball after time t

V2=u2-gt

=40-gt

Relative velocity =v1-v2

=gt- [-40-gt]=40m/s

New answer posted

7 months ago

0 Follower 8 Views

P
Payal Gupta

Contributor-Level 10

This is a short answer type question as classified in NCERT Exemplar

speed of first car = 18km/h

Speed of second car = 27km/hr relative with respect to each other is 18+27=45km/h

Distance between cars = 36km

Time = d i s t a n c e b e t w e e n c a r s r e l a t i v e s p e e d = 36/45=0.8h

Distance covered by bird = 36 (0.8)=28.8km

New answer posted

7 months ago

0 Follower 9 Views

P
Payal Gupta

Contributor-Level 10

This is a short answer type question as classified in NCERT Exemplar

(a) x (t)=x0 (1- e - γ t )

V (t)=dx/dt= x (t)=x0 γ ( e - γ t )

A (t)= x ( , t)=x0 ( γ 2 e - γ t )

(b) when t=o x (t)= x (t)=x0 (1- e - 0 )= x (t)=x0 (1-1)=0

x (t) is maximum when t=

x (t) is maximum when t= 0

v (t) is maximum when t= 0 , v (0)=x0 γ

v (t) is maximum when t= ,  v ( )=0

a (t) is maximum when t= , a ( )=0

a (t) is maximum when t= 0 , a ( 0 )=-x0 γ 2

New answer posted

7 months ago

0 Follower 28 Views

P
Payal Gupta

Contributor-Level 10

This is a short answer type question as classified in NCERT Exemplar

It is clear from the graph that displacement x is positive throughout . ball is dropped from height and its velocity increases in downward direction due to gravity pull. In this condition v isnegative but acceleration of the ball equal to acceleration due to gravity.

velocity time graph

Acceleration time graph

New answer posted

7 months ago

0 Follower 9 Views

P
Payal Gupta

Contributor-Level 10

This is a short answer type question as classified in NCERT Exemplar

When speed becomes constant then acceleration will be zero

a=dv/dt=0

But here a=g-bv

Clearly from above equation as speed increases acceleration will decrease . at a certain speed say vo, acceleration will be zero and speed will remain constant.

Hence So g=bv

so v= g/b

New answer posted

7 months ago

0 Follower 4 Views

P
Payal Gupta

Contributor-Level 10

This is a short answer type question as classified in NCERT Exemplar

x (t)=A+B

Let A>B and

Now velocity is equal to x (t)=dx/dt=-B

So a (t)= dv/dt= B

Above condition are satisfied by the equation.

New answer posted

7 months ago

0 Follower 24 Views

P
Payal Gupta

Contributor-Level 10

This is a short answer type question as classified in NCERT Exemplar

(a) The equation we use here is x= 1-sint

So velocity = dx/dt=1-cost

Acceleration =sint

When t=o x=o

When t=, x=

When t=0.x= 2

(b) x=sint so velocity becomes v=cost as displacement and velocity contain sin and cos so equation is periodic.

New answer posted

7 months ago

0 Follower 18 Views

P
Payal Gupta

Contributor-Level 10

This is a short answer type question as classified in NCERT Exemplar

If effect of gravity is neglected then ball moving uniformly turned back with same speed when a ball hit it. Acceleration of the ball is zero just before it hits the bat and due  to the repulsive force it gets accelerated.

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