Sign In

The total angular momentum of a rigid body can be calculated using the summation of the angular momentum of all the tiny particles rotating in the same plane. Considering all the tiny particles rotating in the x-y plane, the direction of angular momentum of all such particles and that of the rigid body would be perpendicular to the plane of the rotation along the z-axis.

This calculation can get complicated when tiny particles within the rigid body are not rotating in the same plane but have components for rotation along the z-axis. Such particles will have components of their angular momentum perpendicular to the z-axis. The situation becomes easier if the rigid body is symmetrical about the axis of rotation, the z-axis. In such a case, all the angular momentum components perpendicular to the z-axis, from either side of the rigid body, will cancel out. Therefore, if a rigid body has a symmetric axis of rotation, total angular momentum will be the summation of angular momentum of individual tiny particles.

For cases where the axis of rotation is not symmetric, the direction of angular momentum is not along the axis of rotation, but traces a cone around the axis of rotation. That means that there is a net torque acting on the body, even though the angular velocity of the body is constant.

This text is adapted from Openstax, University Physics Volume 1, Section 11.2: Angular Momentum.

Tags
Angular MomentumRigid BodyRotationSymmetryAxis Of RotationTorque

From Chapter 11:

article

Now Playing

11.9 : Angular Momentum: Rigid Body

Dynamics of Rotational Motions

8.5K Views

article

11.1 : عزم الدوران

Dynamics of Rotational Motions

11.8K Views

article

11.2 : حسابات صافي عزم الدوران

Dynamics of Rotational Motions

8.7K Views

article

11.3 : معادلة ديناميكيات الدوران

Dynamics of Rotational Motions

4.8K Views

article

11.4 : المتداول دون الانزلاق

Dynamics of Rotational Motions

3.3K Views

article

11.5 : المتداول مع الانزلاق

Dynamics of Rotational Motions

4.5K Views

article

11.6 : العمل والقوة للحركة الدورانية

Dynamics of Rotational Motions

5.0K Views

article

11.7 : نظرية العمل والطاقة للحركة الدورانية

Dynamics of Rotational Motions

5.6K Views

article

11.8 : الزخم الزاوي: جسيم واحد

Dynamics of Rotational Motions

5.9K Views

article

11.10 : الحفاظ على الزخم الزاوي

Dynamics of Rotational Motions

9.9K Views

article

11.11 : الحفاظ على الزخم الزاوي: التطبيق

Dynamics of Rotational Motions

10.5K Views

article

11.12 : دوران الجزء العلوي غير المتماثل

Dynamics of Rotational Motions

771 Views

article

11.13 : جيروسكوب

Dynamics of Rotational Motions

2.8K Views

article

11.14 : الجيروسكوب: Precession

Dynamics of Rotational Motions

3.9K Views

JoVE Logo

Privacy

Terms of Use

Policies

Research

Education

ABOUT JoVE

Copyright © 2025 MyJoVE Corporation. All rights reserved