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183_notes [2022/12/20 19:32] hallstein183_notes [2023/12/19 20:51] (current) hallstein
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 === Week 4 ===  === Week 4 === 
- 
-== Modeling Contact Interactions: The Ball & Spring Model of Solids == 
-  * [[:183_notes:freebodydiagrams|Free Body Diagrams]] 
-  * [[:183_notes:model_of_solids|Matter & Models of Solids]] 
-  * [[:183_notes:model_of_a_wire|Modeling a Solid Wire: springs in series and parallel]] 
-  * [[:183_notes:youngs_modulus|Young's Modulus]] 
- 
-=== Week 6 === 
  
 == Modeling Motion with Non-Constant Forces: Springs == == Modeling Motion with Non-Constant Forces: Springs ==
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   * [[:183_notes:impulseGraphs|Impulse Graphs]]   * [[:183_notes:impulseGraphs|Impulse Graphs]]
   * [[:183_notes:springMotion|Non-constant Force: Springs & Spring-like Interactions]]   * [[:183_notes:springMotion|Non-constant Force: Springs & Spring-like Interactions]]
 +  * [[:183_notes:freebodydiagrams|Free Body Diagrams]]
  
 == Modeling Contact Interactions: The Ball & Spring Model of Solids == == Modeling Contact Interactions: The Ball & Spring Model of Solids ==
 +  * [[:183_notes:model_of_solids|Matter & Models of Solids]]
 +  * [[:183_notes:model_of_a_wire|Modeling a Solid Wire: springs in series and parallel]]
 +  * [[:183_notes:youngs_modulus|Young's Modulus]]
 +
 +=== Week 5 ===
 +
 +== Modeling Contact Interactions: Friction ==
   * [[:183_notes:friction|Contact Interactions: The Normal Force & Friction]]   * [[:183_notes:friction|Contact Interactions: The Normal Force & Friction]]
  
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-=== Week === +=== Week === 
 == Modeling Curved Motion == == Modeling Curved Motion ==
  
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   * [[183_notes:center_of_mass|Center of Mass Motion]]   * [[183_notes:center_of_mass|Center of Mass Motion]]
  
-=== Week 8  === +=== Week === 
 == Modeling Energy Transfer in Single Particle Systems: Total Particle Energy & Work ==  == Modeling Energy Transfer in Single Particle Systems: Total Particle Energy & Work == 
  
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   * [[183_notes:rest_mass|Changes of Rest Mass Energy]]   * [[183_notes:rest_mass|Changes of Rest Mass Energy]]
  
-=== Week 9 ===  
  
-== Fall Break + Group Project 2 ==+=== Week 8 === 
  
-=== Week 10 === +== SPRING BREAK == 
 + 
 + 
 +=== Week 9: === 
  
 == Spring Potential Energy == == Spring Potential Energy ==
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   * [[:183_notes:colliding_systems|Collisions - Momentum and Energy]]   * [[:183_notes:colliding_systems|Collisions - Momentum and Energy]]
-  * [[:183_notes:discovery_of_the_nucleus|Discovery of the Nucleus]] 
  
-=== Week 11 === + 
 + 
 + 
 +=== Week 10 === 
  
 == Modeling Energy Transfer in Multi-Particle Systems: Internal Energy & Heat Exchange == == Modeling Energy Transfer in Multi-Particle Systems: Internal Energy & Heat Exchange ==
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   * [[183_notes:system_choice|Choosing a System Matters]]   * [[183_notes:system_choice|Choosing a System Matters]]
   * [[183_notes:energy_dissipation|Dissipation of Energy]]   * [[183_notes:energy_dissipation|Dissipation of Energy]]
-  * [[183_notes:center_of_mass|Center of Mass Motion]] 
-  * [[183_notes:energy_sep|Separating Energy in Multi-Particle Systems]] 
-  * [[183_notes:rot_KE|Rotational Kinetic Energy and the Moment of Inertia]] 
  
-=== Week 12 ===  
  
-== Modeling Energy Transfer in Multi-Particle Systems: Point Particle and Real Systems ==+=== Week 11 === 
  
 +== Modeling Energy Transfer in Multi-Particle Systems: Point Particle and Real Systems ==
 +  * [[183_notes:center_of_mass|Center of Mass Motion]]
 +  * [[183_notes:energy_sep|Separating Energy in Multi-Particle Systems]]
 +  * [[183_notes:rot_KE|Rotational Kinetic Energy and the Moment of Inertia]]
   * [[183_notes:pp_vs_real|Point Particle and Real Systems]]   * [[183_notes:pp_vs_real|Point Particle and Real Systems]]
 +  * [[183_notes:proof_of_pp|Proof of the Point Particle- Energy Principle]]'
 +
  
 +=== Week 12 ===
 == Modeling the Colliding of Systems == == Modeling the Colliding of Systems ==
  
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   * [[:183_notes:discovery_of_the_nucleus|Discovery of the Nucleus]]   * [[:183_notes:discovery_of_the_nucleus|Discovery of the Nucleus]]
  
-=== Week 13, 14 15 ===+=== Weeks 13 & 14 ===
  
 == Modeling Rotational Motion  == == Modeling Rotational Motion  ==
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  • by hallstein