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Particle Dynamics ½èÂI°Ê¤O¾Ç |
Space and Time ®ÉªÅ
Inertia ºD©Ê
Motion in One Dimension ¤@ºû¹B°Ê
Motion in Two Dimensions ¤Gºû¹B°Ê
Circular Motion Âà°Ê
Newtons's Law ¤û¹y¹B°Ê©w«ß
Oscillatory Motion ®¶°Ê
Linear Momentum ½u°Ê¶q
Collisions ¸I¼² |
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Rigid Body Dynamics èÅé°Ê¤O¾Ç |
Systems of Particles ½èÂI¨t²Î
Static Equilibrium ÀR¥¿Å
Rotation of a Rigid Object About a Fixed Axis ©T©w¶bÂà°Ê
Rolling Motion Âà°Ê
Angular Momentum ¨¤°Ê¶q
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Work and Energy ¥\»P¯à |
Work and Energy
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Kinetic Energy °Ê¯à
Potential Energy ¶Õ¯à
Conservation of Energy ¯à¶q¦uùÚ |
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Gravitation «¤O |
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Wave ªi°Ê |
Wave ªi
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Superposition «Å|ì²z
Standing Waves ¾nªi |
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Solid Mechanics §÷®Æ¤O¾Ç |
Elasticity¼u©Ê
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Fluid Mechanics ¬yÅé¤O¾Ç |
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Geometric Optics ´X¦ó¥ú¾Ç |
Geometric Optics ´X¦ó¥ú¾Ç
Light
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Polarization °¾·¥¤Æ |
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Thermodynamics ¼ö¤O¾Ç |
Thermodynamics ¼ö¤O¾Ç
Temperature and Heat ·Å«×»P¼ö
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Second Law of Thermodynamics ¼ö¤O¾Ç²Ä¤G©w«ß
Heat Engines ¤ÞÀº
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The Kinetic Theory of Gases ®ðÅé°Ê¤O½× |
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Electromagnetics ¹qºÏ¾Ç |
Electrostatics ÀR¹q¾Ç
Gauss's Law °ª´µ©w«ß
Electric Potential ¹q¦ì¯à
Capacitance ¹q®e
Dielectrics ¹q¤¶½è
Current and Circuits ¹q¬y»P¹q¸ô
Magnetic Fields ºÏ³õ
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Electromagnetic Waves ¹qºÏªi |
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Special relativity
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Michelson-Morley Experiment ÁÚ§Jº¸¥Í-¼¯º¸§Q¹êÅç
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Classical Mechanics¥j¨å¤O¾Ç |
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Wave Mechanics ªi°Ê¤O¾Ç
Atoms ì¤l½×
Nuclear Physics ®Öª«²z
Elementary Particles °ò¥»²É¤l |
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