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I. Multiple Choice Questions · Q3

Q.A particle is moving with a constant velocity along a line parallel to positive X-axis. The magnitude of its angular momentum with respect to the origin is,

(a) zero
(b) increasing with xx
(c) decreasing with xx
(d) remaining constant
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Step 1. Set up the geometry.

Let the particle move along a line parallel to the positive XX-axis, at some fixed perpendicular distance y0y_0 above (or below) the XX-axis, with constant speed vv (constant velocity means constant magnitude and constant direction). Take the origin OO on the XX-axis.

Step 2. Write the angular momentum about the origin.

L⃗=r⃗×p⃗=r⃗×(mv⃗).\vec L = \vec r \times \vec p = \vec r \times (m\vec v).

Only the component of r⃗\vec r perpendicular to v⃗\vec v contributes, since the component of r⃗\vec r parallel to v⃗\vec v is crossed with a parallel vector and gives zero. The perpendicular component of r⃗\vec r (from the origin to the line of motion) is exactly the fixed distance d=y0d = y_0 — it is the same no matter where along the line the particle currently is, because the line is parallel to the XX-axis at constant height y0y_0.

Step 3. Write the magnitude.

L=mvd=mvy0,L = mvd = mv y_0,

where mm, vv, and y0y_0 are all constants of the motion (mass and speed don't change, and y0y_0 is fixed by the geometry of the straight-line path).

Step 4. Track how LL changes as xx changes.

As the particle moves, its xx-coordinate changes, but d=y0d=y_0 does not — the perpendicular distance from the origin to the line (not to the particle) stays fixed. So L=mvy0L=mvy_0 stays exactly constant throughout the motion.

Step 5. Rule out the other options.

  • (a) zero — would only be true if the line of motion passed exactly through the origin (y0=0y_0=0); in general it does not, so L≠0L\neq0.
  • (b)/(c) increasing/decreasing with xx — would require the perpendicular distance dd to change with the particle's position, but dd is fixed by the (constant) height of the line, not by where along it the particle sits.
✓Final answer

(d) remaining constant

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