Week
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Topics
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Teaching and Learning Methods and Techniques
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Study Materials
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1. Week
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Real gases: Intermolecular interactions, deviations from the ideal gas assumption, equations of state of real gases, real gases, liquids and solids, fixed internal energy event (Event Joule), the constant enthalpy (izentalpik) event (Event Joule Thomson), heat capacity, fugacity (effective pressure).
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Lecture
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Presentation (Including Preparation Time)
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2. Week
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Real gases: Intermolecular interactions, deviations from the ideal gas assumption, equations of state of real gases, real gases, liquids and solids, fixed internal energy event (Event Joule), the constant enthalpy (izentalpik) event (Event Joule Thomson), heat capacity, fugacity (effective pressure).
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Lecture
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Presentation (Including Preparation Time)
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3. Week
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Real gases: Intermolecular interactions, deviations from the ideal gas assumption, equations of state of real gases, real gases, liquids and solids, fixed internal energy event (Event Joule), the constant enthalpy (izentalpik) event (Event Joule Thomson), heat capacity, fugacity (effective pressure).
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Lecture
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Presentation (Including Preparation Time)
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4. Week
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Real gases: Intermolecular interactions, deviations from the ideal gas assumption, equations of state of real gases, real gases, liquids and solids, fixed internal energy event (Event Joule), the constant enthalpy (izentalpik) event (Event Joule Thomson), heat capacity, fugacity (effective pressure).
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Lecture
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Presentation (Including Preparation Time)
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5. Week
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Real gases: Intermolecular interactions, deviations from the ideal gas assumption, equations of state of real gases, real gases, liquids and solids, fixed internal energy event (Event Joule), the constant enthalpy (izentalpik) event (Event Joule Thomson), heat capacity, fugacity (effective pressure).
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Lecture
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Presentation (Including Preparation Time)
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6. Week
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Real gases: Intermolecular interactions, deviations from the ideal gas assumption, equations of state of real gases, real gases, liquids and solids, fixed internal energy event (Event Joule), the constant enthalpy (izentalpik) event (Event Joule Thomson), heat capacity, fugacity (effective pressure).
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Lecture
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Presentation (Including Preparation Time)
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7. Week
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Real gases: Intermolecular interactions, deviations from the ideal gas assumption, equations of state of real gases, real gases, liquids and solids, fixed internal energy event (Event Joule), the constant enthalpy (izentalpik) event (Event Joule Thomson), heat capacity, fugacity (effective pressure).
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Lecture
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Presentation (Including Preparation Time)
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8. Week
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Real gases: Intermolecular interactions, deviations from the ideal gas assumption, equations of state of real gases, real gases, liquids and solids, fixed internal energy event (Event Joule), the constant enthalpy (izentalpik) event (Event Joule Thomson), heat capacity, fugacity (effective pressure).
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Lecture
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Presentation (Including Preparation Time)
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9. Week
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Mixtures: Concentrations, partial molar properties, Gibbs phase rule, Nernst law of dispersion, solid-liquid and liquid-liquid equilibria, Henry, Raoult and Dalton Laws, liquid-gas equilibrium (absorption and desorption) , liquid-vapor balance (distillation), solid-liquid balance: solubility and crystallization, numerical properties, non-electrolyte real mixtures,
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Lecture
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Presentation (Including Preparation Time)
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10. Week
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Mixtures: Concentrations, partial molar properties, Gibbs phase rule, Nernst law of dispersion, solid-liquid and liquid-liquid equilibria, Henry, Raoult and Dalton Laws, liquid-gas equilibrium (absorption and desorption) , liquid-vapor balance (distillation), solid-liquid balance: solubility and crystallization, numerical properties, non-electrolyte real mixtures,
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Lecture
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Presentation (Including Preparation Time)
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11. Week
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Mixtures: Concentrations, partial molar properties, Gibbs phase rule, Nernst law of dispersion, solid-liquid and liquid-liquid equilibria, Henry, Raoult and Dalton Laws, liquid-gas equilibrium (absorption and desorption) , liquid-vapor balance (distillation), solid-liquid balance: solubility and crystallization, numerical properties, non-electrolyte real mixtures,
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Lecture
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Presentation (Including Preparation Time)
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12. Week
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Mixtures: Concentrations, partial molar properties, Gibbs phase rule, Nernst law of dispersion, solid-liquid and liquid-liquid equilibria, Henry, Raoult and Dalton Laws, liquid-gas equilibrium (absorption and desorption) , liquid-vapor balance (distillation), solid-liquid balance: solubility and crystallization, numerical properties, non-electrolyte real mixtures,
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Lecture
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Presentation (Including Preparation Time)
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13. Week
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Mixtures: Concentrations, partial molar properties, Gibbs phase rule, Nernst law of dispersion, solid-liquid and liquid-liquid equilibria, Henry, Raoult and Dalton Laws, liquid-gas equilibrium (absorption and desorption) , liquid-vapor balance (distillation), solid-liquid balance: solubility and crystallization, numerical properties, non-electrolyte real mixtures,
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Lecture
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Presentation (Including Preparation Time)
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14. Week
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Mixtures: Concentrations, partial molar properties, Gibbs phase rule, Nernst law of dispersion, solid-liquid and liquid-liquid equilibria, Henry, Raoult and Dalton Laws, liquid-gas equilibrium (absorption and desorption) , liquid-vapor balance (distillation), solid-liquid balance: solubility and crystallization, numerical properties, non-electrolyte real mixtures,
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Lecture
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Presentation (Including Preparation Time)
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