Home
Class 11
PHYSICS
A neutron of mass 1.67xx10^(27) kg movin...

A neutron of mass `1.67xx10^(27)` kg moving with a speed of `3xx10^(6)ms^(-1)` collides with a deutron of mass `3.34xx10^(-27)` kg which is at rest. After collision, the neutron sticks to the deutron and forms a triton. What is the speed of the triton?

Promotional Banner

Similar Questions

Explore conceptually related problems

A block of mass 1 kg moving with a speed of 4 ms^(-1) , collides with another block of mass 2 kg which is at rest. If the lighter block comes to rest after collision, then the speed of the heavier body is

A neutron having a mass 1.67 xx10^(-27) kg and moving at 10^(8) ms^(-1) collides with a deuteron at rest and sticks to it if the mass of deuteron is 3.34 xx10^(-27) kg find the speed of the combination

A body of mass 5 xx 10^(3) kg moving with speed 2 m/s collides with a body of mass 15 xx 10^(3) kg inelastically & sticks to it. Then loss in K.E. of the system will be :

A body of mass 5 xx 10^(3) g kg moving with speed 2 m/s collides with a body of mass 15 xx 10^(3) kg inelastically & sticks to it. Then loss in K.E. of the system will be :

A proton of mass 1.66 xx 10^(-27) kg is moving with kinetic energy 5 xx 10^(-27) J .What is the wavelength of proton ?

A neutron moving with a speed of 10^6 ms^(-1) suffers a head - on collision with a nucleus of mass number 80. What is the fraction of energy retained by the neutron?

A neutron having a mass of 1.67 xx 10^(-27) kg and moving at 10^(8) m//s collides with a deuteron at rest and sticks to it. If the mass of the deuteron is 3.33 xx 10^(-27) kg then the speed of the combination is