Exercise 2.1
In which of the following examples of motion, can the body be considered approximately a point object:
(a)
a railway carriage moving without jerks between two stations.
(b)
a monkey sitting on top of a man cycling smoothly on a circular track.
(c)
a spinning cricket ball that turns sharply on hitting the ground.
(d)
a tumbling beaker that has slipped off the edge of a table.
Not cross-checked
This solution has not been cross-checked against the answer printed in NCERT.
NCERT’s answer
(a), (b)
A body counts as a "point object" only when its own size is too small to matter next to the distances involved in describing its motion. If turning the object's size or shape "on" or "off" does not change the path you'd draw for it, you may shrink it to a point and ignore everything about its internal structure — spin, orientation, tumbling. If the object's size, spin, or orientation is itself part of what is happening, it cannot be reduced to a point.Check each case against that test.(a) A railway carriage moving without jerks between two stations
The carriage is a few metres long, but the distance between stations is kilometres — the ratio of carriage-length to path-length is negligible. "Without jerks" also means every part of the carriage moves together, with no internal rotation or relative motion between its parts that would need tracking separately. Nothing about the carriage's own size or shape changes how you'd describe its journey from one station to the other.
This body can be treated as a point object.(b) A monkey sitting on top of a man cycling smoothly on a circular track
Over one lap of a circular track, the path length (the track's circumference) is again far larger than the size of the man-and-monkey system. "Sitting" and "cycling smoothly" mean the monkey has no motion relative to the man — the two move as a single rigid body with no internal jerks to account for. So, exactly as in (a), the whole system's extent is negligible against the distance it travels.
This body can be treated as a point object.(c) A spinning cricket ball that turns sharply on hitting the ground
Here the sideways deviation of the ball after it bounces is caused directly by its spin — by rotation about its own axis. That rotation, and the ball's own size (which sets how the spin couples to the ground through friction), is not something you can discard: it is the very thing responsible for the sharp turn you are trying to describe. Shrinking the ball to a point would erase the effect you are asked to explain.
This body cannot be treated as a point object.(d) A tumbling beaker that has slipped off a table edge
"Tumbling" means the beaker is rotating end-over-end as it falls — its orientation is changing continuously and matters (for instance, to how and where it lands). Since the fall height is comparable to the beaker's own size, and the tumbling motion depends on that size and shape, the beaker's extent cannot be ignored.
This body cannot be treated as a point object.Answer: The railway carriage (a) and the monkey-cyclist system (b) can be treated as point objects, since their own size is negligible compared to the distances they travel and neither shows any internal rotation. The cricket ball (c) and the tumbling beaker (d) cannot, because their spin/tumbling — which depends on their own size and shape — is essential to describing their motion.