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courses:order20:eeorder20 2018/08/30 10:17 courses:order20:eeorder20 2018/09/03 06:18 current
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  : **Hour 7: [[..:order20:eeorder20:eemb|Math Bits - Probably more derivatives]]**   : **Hour 7: [[..:order20:eeorder20:eemb|Math Bits - Probably more derivatives]]**
      * //Surfaces Activity: "Squishability" of Water Vapor//       * //Surfaces Activity: "Squishability" of Water Vapor//
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==== Unit:  First Law of Thermodynamics ==== ==== Unit:  First Law of Thermodynamics ====
  : **Hour 8: [[..:order20:eeorder20:eeheatandtemp|Heat and Temperature]]**   : **Hour 8: [[..:order20:eeorder20:eeheatandtemp|Heat and Temperature]]**
-    * Intro to Thermodynamic Properties +    * //Lab: Ice Calorimetry Lab// 
-      * //Lab: Ice Lab I// +    * //SWBQ: Comparing Thermodynamic Properties// 
-    * Comparing Thermodynamic Properties +   * //Lecture: Dulong and Petit Rule//
  : **Hour 9: [[..:order20:eeorder20:eefirstlaw|The first law]]**   : **Hour 9: [[..:order20:eeorder20:eefirstlaw|The first law]]**
    * QUIZ     * QUIZ
-    * Lecture: Jargon+    * //Activity: Comparing the System and Surroundings// 
 +    * //Lectures: Jargon//
      *Intensive and Extensive       *Intensive and Extensive
      *T, S, V, p, U       *T, S, V, p, U
      *Work, Heat       *Work, Heat
      *The First Law       *The First Law
-    * Snapping a Rubber Band+    * //Lecture: Snapping a Rubber Band//
  : **Hour 10: [[..:order20:eeorder20:eenameexpone|Connecting thermal derivatives with experiment]]**   : **Hour 10: [[..:order20:eeorder20:eenameexpone|Connecting thermal derivatives with experiment]]**
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  : **Hour 11: [[..:order20:eeorder20:eeicelabtwo|Heat capacity and latent heat]]**   : **Hour 11: [[..:order20:eeorder20:eeicelabtwo|Heat capacity and latent heat]]**
-    * //Lab: Ice Lab II//+    *//Lab: Ice Lab II//
-  : This should go somewhere around here once things get rearranged:+FIXME  : This should go somewhere around here once things get rearranged:
    * //Heat Capacity of Water Vapor//     * //Heat Capacity of Water Vapor//
-  : **Hour 12: [[..:order20:eeorder20:eeelevator|Mechanical cycles]]**+  : **Hour 12: [[..:order20:eeorder20:eeelevator|Mechanical cycles]]** FIXME Needs Content
    * Elevators     * Elevators
    * //Small Group Activity: The Elevator Cycle//     * //Small Group Activity: The Elevator Cycle//
-  : **Hour 13: [[..:order20:eeorder20:eepvtsplots|Heat, work, and processes]]**+  : **Hour 13: [[..:order20:eeorder20:eepvtsplots|Heat, work, and processes]]** FIXME Needs Prereqs
    * Work     * Work
    * Heat     * Heat
    * Using $p V$ and $T S$ Plots     * Using $p V$ and $T S$ Plots
-  : **Hour 14: [[..:order20:eeorder20:eesimplecurve|A simple cycle]]**+  : **Hour 14: [[..:order20:eeorder20:eesimplecurve|A simple cycle]]** FIXME Needs Prereqs
    * Analyzing a Simple Curve     * Analyzing a Simple Curve
  : **Hour 15: Holiday**   : **Hour 15: Holiday**
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    * Name the Experiment II (Heat and/or First Law)     * Name the Experiment II (Heat and/or First Law)
-  : **Hour 17: [[..:order20:eeorder20:eethesecondlaw|The second law]]** +  : **Hour 17: [[..:order20:eeorder20:eethesecondlaw|The second law]]** FIXME Needs Prereqs 
-    *Lecture: Jargon+    *Lectures: Jargon
      *Second Law       *Second Law
      *Reversible and Irreversible       *Reversible and Irreversible
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      *Quasistatic       *Quasistatic
-  : **Hour 18: [[..:order20:eeorder20:eefreeexpansion|Entropy, expansion, and the Second Law]]**+  : **Hour 18: [[..:order20:eeorder20:eefreeexpansion|Entropy, expansion, and the Second Law]]** FIXME Needs Prereqs
    * Free expansion not-quiz     * Free expansion not-quiz
    * Discussion of not-quiz     * Discussion of not-quiz
-  : **Hours 19-20: [[..:order20:eeorder20:eelegendre|Legendre Transformations]]**+  : **Hours 19-20: [[..:order20:eeorder20:eelegendre|Legendre Transformations]]** FIXME Needs Prereqs
    * [[..:activities:eeact:eembpdmlegendretransforms|Legendre Transformations on PDM]]     * [[..:activities:eeact:eembpdmlegendretransforms|Legendre Transformations on PDM]]
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    * Maxwell Relations     * Maxwell Relations
    * Maxwell Relation Activities     * Maxwell Relation Activities
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-  - (HardSphereFluid) \textit{What goes here?}{{page>homework:ph423questions:hardspherefluid}} 
-    - {{page>homework:ph423questions:hardspherefluida}} 
-      * {{page>homework:ph423solutions:hardspherefluidsola}} 
-    - {{page>homework:ph423questions:hardspherefluidb}} 
-      * {{page>homework:ph423solutions:hardspherefluidsolb}} 
-    - {{page>homework:ph423questions:hardspherefluidc}} 
-      * {{page>homework:ph423solutions:hardspherefluidsolc}} 
-    - {{page>homework:ph423questions:hardspherefluidd}} 
-      * {{page>homework:ph423solutions:hardspherefluidsold}} 
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-  - (SimpleCycleII) \textit{What goes here?}{{page>homework:ph423questions:simplecycleII}} 
-    - {{page>homework:ph423questions:simplecycleIIa}} 
-      * {{page>homework:ph423solutions:simplecycleIIsola}} 
-    - {{page>homework:ph423questions:simplecycleIIb}} 
-      * {{page>homework:ph423solutions:simplecycleIIsolb}} 
-    - {{page>homework:ph423questions:simplecycleIIc}} 
-      * {{page>homework:ph423solutions:simplecycleIIsolc}} 
-    - {{page>homework:ph423questions:simplecycleIId}} 
-      * {{page>homework:ph423solutions:simplecycleIIsold}} 
-    - {{page>homework:ph423questions:simplecycleIIe}} 
-      * {{page>homework:ph423solutions:simplecycleIIsole}} 
  : **Hour 22 [[..:order20:eeorder20:eenameexpthree|Applying Maxwell relations to experiments]] **   : **Hour 22 [[..:order20:eeorder20:eenameexpthree|Applying Maxwell relations to experiments]] **
    * Name The Experiment III     * Name The Experiment III
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-  - (IsothermalAdiabaticCompressibility) \textit{What goes here?}{{page>homework:ph423questions:isothermaladiabaticcompressibility}} 
-    - {{page>homework:ph423solutions:isothermaladiabaticcompressibilitysol}} 
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-  - (NonIdealGas) \textit{What goes here?}{{page>homework:ph423questions:nonidealgas}} 
-    * {{page>homework:ph423solutions:nonidealgassol}} 
  : **Hours 23-24: [[..:order20:eeorder20:eebandlab|Using a Maxwell relation to make an entropy change]] **   : **Hours 23-24: [[..:order20:eeorder20:eebandlab|Using a Maxwell relation to make an entropy change]] **
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  : **Hour 25: [[..:order20:eeorder20:eesometimesalwaysnever|Identifying physical laws governing relationships]] **   : **Hour 25: [[..:order20:eeorder20:eesometimesalwaysnever|Identifying physical laws governing relationships]] **
-    * Sometimes Always Never True (1st half)+    * Sometimes Always Never
  : **Hours 26-28: Holiday**   : **Hours 26-28: Holiday**
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    *  Fairness Function and Probability     *  Fairness Function and Probability
      * //Kinesthetic Activity: Students as Molecules/       * //Kinesthetic Activity: Students as Molecules/
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-  - (ThermodynamicPotentialsAndMaxwellRelations) PRACTICE \textit{What goes here?}{{page>homework:ph423questions:thermodynamicpotentialsandmaxwellrelations}} 
-    - {{page>homework:ph423questions:thermodynamicpotentialsandmaxwellrelationsa}} 
-      * {{page>homework:ph423solutions:thermodynamicpotentialsandmaxwellrelationssola}} 
-    - {{page>homework:ph423questions:thermodynamicpotentialsandmaxwellrelationsb}} 
-      * {{page>homework:ph423solutions:thermodynamicpotentialsandmaxwellrelationssolb}} 
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-  - (TwoLevelSystem) \textit{What goes here?}{{page>homework:ph423questions:twolevelsystem}} 
-    - {{page>homework:ph423questions:twolevelsystema}} 
-      * {{page>homework:ph423solutions:twolevelsystemsola}} 
-    - {{page>homework:ph423questions:twolevelsystemb}} 
-      * {{page>homework:ph423solutions:twolevelsystemsolb}} 
-    - {{page>homework:ph423questions:twolevelsystemc}} 
-      * {{page>homework:ph423solutions:twolevelsystemsolc}} 
-    - {{page>homework:ph423questions:twolevelsystemd}} 
-      * {{page>homework:ph423solutions:twolevelsystemsold}} 
-    - {{page>homework:ph423questions:twolevelsysteme}} 
-      * {{page>homework:ph423solutions:twolevelsystemsole}} 
  : **Hour 30: [[..:order20:eeorder20:eeentropy|Maximizing Entropy]]**   : **Hour 30: [[..:order20:eeorder20:eeentropy|Maximizing Entropy]]**
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    * Weighted Averages     * Weighted Averages
    * Derive Boltzman Ratio and connect to Thermo ($U = \sum p_iE_i$)     * Derive Boltzman Ratio and connect to Thermo ($U = \sum p_iE_i$)
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-  - (BoltzmannRatio) \textit{What goes here?}{{page>homework:ph423questions:boltzmannratio}} 
-    - {{page>homework:ph423questions:boltzmannratioa}} 
-      * {{page>homework:ph423solutions:boltzmannratiosola}} 
-    - {{page>homework:ph423questions:boltzmannratiob}} 
-      * {{page>homework:ph423solutions:boltzmannratiosolb}} 
-    - {{page>homework:ph423questions:boltzmannratioc}} 
-      * {{page>homework:ph423solutions:boltzmannratiosolc}} 
-    - {{page>homework:ph423questions:boltzmannratiod}} 
-      * {{page>homework:ph423solutions:boltzmannratiosold}} 
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-  - (NucleusInMagneticField) \textit{What goes here?}{{page>homework:ph423questions:nucleusinmagneticfield}} 
-    - {{page>homework:ph423questions:nucleusinmagneticfielda}} 
-      * {{page>homework:ph423solutions:nucleusinmagneticfieldsola}} 
-    - {{page>homework:ph423questions:nucleusinmagneticfieldb}} 
-      * {{page>homework:ph423solutions:nucleusinmagneticfieldsolb}} 
-    - {{page>homework:ph423questions:nucleusinmagneticfieldc}} 
-      * {{page>homework:ph423solutions:nucleusinmagneticfieldsolc}} 
  : **Hour 32: Free**   : **Hour 32: Free**

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