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| * '''Lecture 2''', ~-Jan 9-~: <<la("L02-SHO.pdf", "Simple harmonic oscillation (SHO)")>> | * ~+'''Lecture 5'''+~, ~-Jan 20-~: <<la("L05-Waves-Sound.pdf", "Waves, Sound")>> |
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| * '''Lecture 1''', ~-Jan 7-~: <<la("L01-Hookes-Law.pdf", "Hooke's law and SHM")>> | * ~+'''Lecture 4'''+~, ~-Jan 20-~: <<la("L04-Waves.pdf", "Waves")>> * ~+'''Lecture 3'''+~, ~-Jan 13-~: <<la("L03-SHO.pdf", "SHO, continued")>> {{{#!wiki comment * <<color(Correction)>>: $>$ → $\ge$ in Eq 3.5.—~-''<<DateTime(2015-01-12T12:27:11-0800)>>''-~ }}} * ~+'''Lecture 2'''+~, ~-Jan 9-~: <<la("L02-SHO.pdf", "Simple harmonic oscillation (SHO)")>> * ~+'''Lecture 1'''+~, ~-Jan 7-~: <<la("L01-Hookes-Law.pdf", "Hooke's law and SHM")>> {{{#!wiki comment * <<color(Additions)>>: Right after Eq 1.5, $\ddot x$ is explained. In the Homer box of page 6, $\nu$ is defined.—~-''<<DateTime(2015-01-06T16:18:00-0800)>>''-~ }}} |
Lecture Notes
Lecture 5, Jan 20: Waves, Sound
Lecture 4, Jan 20: Waves
Lecture 3, Jan 13: SHO, continued
Correction: $>$ → $\ge$ in Eq 3.5.—1:27PM, Jan 12, 2015
Lecture 2, Jan 9: Simple harmonic oscillation (SHO)
Lecture 1, Jan 7: Hooke’s law and SHM
Additions: Right after Eq 1.5, $\ddot x$ is explained. In the Homer box of page 6, $\nu$ is defined.—5:18PM, Jan 06, 2015
Physics 5B UCSC