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Physics 1 Lecture 3: Rotation and angular momentum Prof. Dr. U. Pietsch

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Physics 1

Lecture 3: Rotation andangular momentum

Prof. Dr. U. Pietsch

Angle, Q, angular velocity, w

w = dQ/dt

Vector quantity

Relation between linear and angular variables

tangential acceleration radial acceleration

Rotational Inertia

kinetic energy : K = ½ I w²

I = Σ mi ri² = ʃ r² dm

Rotational Inertia of a uniform rod

Torque

t = r F sinf

Newton´s 2nd law

Rolling + Translation

K = ½ I w² + ½ M v²

Angular momentum

Angular momentum of a rigid body

l=r p sin 90° = r Dm v

lz = l sin Q = (r sin Q)(Dm v)

Lz =w (Σ Dmi r┴² )

L = I w

Newton´s 2nd law

Conservation of angular momentum

Print 318 + 319

Next chapter 15, 412, see script

Angular momentum in quantum mechanics

the magnitude of angular momentum, L

can have only the values, l = 0,1..,n-1,

where n is principal quantum number.

Different projections of L with respect to

z-axis define the magnetic quantum

number , ml : - l,…0,..+l,

compared to classical physics only

discrete values of L are possible in QM