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This Concept Map, created with IHMC CmapTools, has information related to: Lesson 12.5 Task Analysis, Study "Molecular Volume Study "The Van der Waals Equation", Read "Real Gases" Study "Intermolecular Forces", Study "The Van der Waals Equation" When provided with conditions of temperature and pressure, students will, in terms of KMT, formulate possible reasons why a gas would be more likely to behave ideally or non ideally under these conditions, 75% of the time., Study "Intermolecular Forces" When provided with conditions of temperature and pressure, students will, in terms of KMT, formulate possible reasons why a gas would be more likely to behave ideally or non ideally under these conditions, 75% of the time., Study "The Van der Waals Equation" Attend Recitation, Practice Problem: "Non-Ideal Behavior" Given the Van der Waals equation and coefficients, students will analyze why a given gas does not behave ideally, 75% of the time., Practice Problem "Van der Waals Equation" Given the Van der Waals equation and coefficients, students will analyze why a given gas does not behave ideally, 75% of the time., Study "The Van der Waals Equation" Provided with Van der Waals coefficients, students will correctly calculate the pressure of a non-ideal gas, 100% of the time., Study "The Van der Waals Equation" Given compressiblity plots, students will interpret the plot and explain the experimental behavior of real gases, 75% of the time., Complete "Gas Quiz 2 - Unit Quiz" Repeat until mastery score is achieved. Complete "End of Unit Survey", Study "The Van der Waals Equation" Practice Problem "Van der Waals Equation", Attend Recitation Complete Unit 12 ALEKs objective, Study "Intermolecular Forces" Practice Problem: "Non-Ideal Behavior", Study "Intermolecular Forces" Study "Molecular Volume, Complete Unit 12 ALEKs objective Complete "Gas Quiz 2 - Unit Quiz" Repeat until mastery score is achieved., Study "Molecular Volume When provided with conditions of temperature and pressure, students will, in terms of KMT, formulate possible reasons why a gas would be more likely to behave ideally or non ideally under these conditions, 75% of the time., Practice Problem: "Non-Ideal Behavior" When provided with conditions of temperature and pressure, students will, in terms of KMT, formulate possible reasons why a gas would be more likely to behave ideally or non ideally under these conditions, 75% of the time., Complete "End of Unit Survey" Continue to Unit 13, Study "Molecular Volume Practice Problem: "Non-Ideal Behavior", Practice Problem "Van der Waals Equation" Provided with Van der Waals coefficients, students will correctly calculate the pressure of a non-ideal gas, 100% of the time.