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[" 10.Two apherical bodies of mass "M" a...

[" 10.Two apherical bodies of mass "M" and "5M" and magnitude of "F_(3)" so "],[" radil "R" and "2R" are released in free space with initial tergue about "],[" separation between their centres equal to "12R" .If they? "],[" attract each other due to gravitational force on If they "],[" the distance covered by the smaller body before "],[[" (a) "4.5R," (b) "7.5R],[" (c) "1.5R," (i) "2.5R]]

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Two spherical bodies of mass M and 5M and radii R and 2R are released in free space with initial separation between their centres equal to 12 R .If they attract each other due to gravitational force only,then the distance covered by the smaller body before collision is

Two spherical bodies of mass M and 5M & radii R and 2R respectively, are released in free space with initial separation between their centres equal to 12R. If they attract each other due to gravitational force only, then the distance covered by the smallar body just before collision is

Two spherical bodies of mass M and 5M & radii R & 2R respectively are released in free space with initial separation between their centres equal to 12R. If they attract each other due to gravitational force only, then the distance covered by the smallar body just before collision is

Two spherical bodies of mass M and 5M & radii R & 2R respectively are released in free space with initial separation between their centres equal to 12R. If they attract each other due to gravitational force only, then the distance covered by the smallar body just before collision is

Two spherical bodies of mass M and 5M & radii R & 2R respectively are released in free space with initial separation between their centres equal to 12R. If they attract each other due to gravitational force only, then the distance covered by the smallar body just before collision is

Two spherical bodies of masses m and 5 m and radii R and 2R respectively are released in free space with initial separation between their centres equal to 12R. If they attract each other due to gravitational force only then find the distance covered by smaller sphere just before collision