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Angular momentum, torques, conservation of angular momentum, spinning neutron stars, stellar collapse
(MIT OpenCourseWare – Massachussetts Institute of Technology, 2016)
Angular momentum, torques, conservation of angular momentum, spinning neutron stars, stellar collapse
(MIT OpenCourseWare – Massachussetts Institute of Technology, 2011)
Angular momentum, torques, conservation of angular momentum, spinning neutron stars, stellar collapse
(MIT OpenCourseWare – Massachussetts Institute of Technology, 2011)
Angular momentum, torques, conservation of angular momentum, spinning neutron stars, stellar collapse
(MIT OpenCourseWare – Massachussetts Institute of Technology, 2016)
A demonstration of the conservation of the orbital angular momentum of Earth
(American Institute of Physics, 2015-12)
We describe a simple but quantitative experiment to demonstrate the conservation of angular momentum. We measure the correlation of the apparent radius and angular velocity of the Sun with respect to the stars, due to the ...
An exact conserving algorithm for nonlinear dynamics with rotational DOFs and general hyperelasticity. Part 1: Rods
(SPRINGER, 2008)
A fully conserving algorithm is developed in this paper for the integration of the equations of motion in nonlinear rod dynamics. The starting point is a re-parameterization of the rotation field in terms of the so-called ...
An exact conserving algorithm for nonlinear dynamics with rotational DOFs and general hyperelasticity. Part 2: shells
(SPRINGER, 2011)
Following the approach developed for rods in Part 1 of this paper (Pimenta et al. in Comput. Mech. 42:715-732, 2008), this work presents a fully conserving algorithm for the integration of the equations of motion in nonlinear ...