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Gases. Kinetic molecular theory of gases Kinetic energy (KE) is the energy a particle has as a result of its molecular movement. KE=1/2(molar mass)velocity
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Chapter 13 States of Matter. Section 13.1 The Nature of Gases OBJECTIVES: OBJECTIVES: Describe the assumptions of the kinetic theory as it applies to
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DO NOW: 1.Convert 770 mm Hg atm 2.Convert 100,900 Pa atm mm Hg
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Chapter 4 – Atmospheric Pressure and wind. Recall: Pressure General Characteristics Pressure is defined as force per unit area
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I. Physical Properties. Real vs. Ideal Gases: b Ideal gas = an imaginary gas that conforms perfectly to all the assumptions of the kinetic-molecular theory
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Sit down and get ready for the test, I will hand them out when the bell rings. You have until 8:10 DMA 3/21/11
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Instructor: Dr. Orlando E. Raola Santa Rosa Junior College Chapter 5: Properties of Gases Chemistry 1A General Chemistry
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Chapter 22 Section 1 Review Page 554 (1-8) 1. Describe the composition of dry air at sea level. Nitrogen = 78% Nitrogen = 78% Oxygen = 21% Oxygen = 21%
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Measuring the Pressure of a Gas and Gas Laws of Boyle, Charles and Avogadro Chemistry 142 B Autumn Quarter, 2004 J. B. Callis, Instructor Lecture #13
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Chapter 8 Air Pollution & Energy Use Lecture 13. Properties and Motion of the Atmosphere Air Pollutants and Sources –Acid rain –Particulates –Aerosols
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Vocabulary: Solid Liquid Gas Kinetic Molecular Theory Kinetic energy Kelvin Degrees Celsius Torr mm Hg Pascals Atmospheres Pressure Vapor Pressure Phase
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Gases An Exploration in Ideal Gas Behavior Loosely adapted from: Philip Dutton University of Windsor, Canada and Martin Silberberg
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