Assertion : A man sitting in a closed cabin which is falling freely does not experience any gravity.
Reason : Inertial and gravitational mass are equivalent .
Assertion : A man sitting in a closed cabin which is falling freely does not experience any gravity.
Reason : Inertial and gravitational mass are equivalent .
Reason : Inertial and gravitational mass are equivalent .
A
If both Assertion & Reason are true and the reason is the correct explanation of the assertion.
B
if both assertion and reason are true but reason is not the correct expalanation of the assertion
C
if assertion is true , but reason is false
D
both assertion and reason are false statements.
Text Solution
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The correct Answer is:
B
If an man inside a lift which is falling frelly i.e, with acceleration, g, the relative accleration of the man with respect to the lift.
= acceleration of man with respect to earth (g)
- acceleration of lift with respect to earth, g `=g=0`. Assertion is correct.
The statement given by the reason is correct but not what is given is the reason for the assertion
= acceleration of man with respect to earth (g)
- acceleration of lift with respect to earth, g `=g=0`. Assertion is correct.
The statement given by the reason is correct but not what is given is the reason for the assertion
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The force of interaction between the molecules of same substance is called cohesive force hile force of interaction between molecules of different substances is called adhesive force . Both the forces are attracive and have a range of about 10 A . If we consider a molecule . A well inside a liquid we find that it is equally attracted by the surrounding molecules in all the directions ( with a sphere of radius 10 Å ) and so it does not experience any resultant force . On or near the surface of a liquid , the molecules do not exist on the free side and so a molecule ( say B ) experiences a resultant force vertically downwards into the liquid . For this reason , the molecules of the surface have a tendency to go into the liquid . Thus , the surface tends to contract and gives rise to surface tension . As surface molecules like B experience a net downward force of cohension and have tendency to go down , so in increasing the area of the surface more molecules are to be shifted to the surface from inside . Thus , more mechnical work will have to be done against the net downward force of cohension . This work is stored by the molecules in the surfaces as potential energy called free surface energy . Furthermore , molcules like P , in contact with the liquid will stick to the solid surface , i.e will meet it if the force of adhesion A is greater than net force of cohension C . The liquid will not the solid surface if C gt A Also , molecules like Q at the surface in contact with the solid will experience a net force of cohension C_(R) . If adhesion A is greater then cohension C_(R) , the resultant force will be F . As the liquid can't support tangential force , F must be perpendicular to the surface of the liquid . So , the menisus will be concave and the angle of contact will be acute ( gt 90^(@)) . However , if adhesion is lesser than cohension , the resultant force F will be directed into the liquid and so the menisus ( which is perpendicular to F as liquid support tangential force ) will be convex and the angle of contact will be obtuse ( gt 90^(@)) A liquid particle B , which is present in the vicinity particle A can exert a force on A if the distance of B from A is
The force of interaction between the molecules of same substance is called cohesive force hile force of interaction between molecules of different substances is called adhesive force . Both the forces are attracive and have a range of about 10 A . If we consider a molecule . A well inside a liquid we find that it is equally attracted by the surrounding molecules in all the dirctions ( with a sphere of radius 10 Å ) and so it does not experience any resultant force . On or near the surface of a liquid , the molecules do not exist on the free side and so a molecule ( say B ) experiences a resultant force vertically downwards into the liquid . For this reason , the molecules of the surface have a tendency to go into the liquid . Thus , the surface tends to contract and gives rise to surface tension . As surface molecules like B experience a net downward force of cohension and have tendency to go down , so in increasing the area of the surface more molecules are to be shifted to the surface from inside . Thus , more mechnical work will have to be done against the net downward force of cohension . This work is stored by the molecules in the surfaces as potential energy called free surface energy . Furthermore , molcules like P , in contact with the liquid will stick to the solid surface , i.e will meet it if the force of adhesion A is greater than net force of cohension C . The liquid will not the solid surface if C gt A Also , molecules like Q at the surface in contact with the solid will experience a net force of cohension C_(R) . If adhesion A is greater then cohension C_(R) , the resultant force will be F . As the liquid can't support tangential force , F must be perpendicular to the surface of the liquid . So , the menisus will be concave and the angle of contact will be acute ( gt 90^(@)) . However , if adhesion is lesser than cohension , the resultant force F will be directed into the liquid and so the menisus ( which is perpendicular to F as liquid support tangential force ) will be convex and the angle of contact will be obtuse ( gt 90^(@)) The free suface energy , stored in the surface is because of work done
A spherical planet far out in space has a mass M_(0) and diameter D_(0) . A particle of mass m falling freely near the surface of this planet will experience an accelertion due to gravity which is equal to
A spherical planet far out in space has a mass M_(0) and diameter D_(0) . A particle of mass m falling freely near the surface of this planet will experience an accelertion due to gravity which is equal to
A spherical planet far out in space has a mass M_(0) and diameter D_(0) . A particle of mass m falling freely near the surface of this planet will experience an accelertion due to gravity which is equal to
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