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Gases. Kinetic Energy and Temperature Temperature We have to measure temperature of gases in Kelvin Gases below 0°C are still gases and have kinetic.

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Presentation on theme: "Gases. Kinetic Energy and Temperature Temperature We have to measure temperature of gases in Kelvin Gases below 0°C are still gases and have kinetic."— Presentation transcript:

1 Gases

2 Kinetic Energy and Temperature

3 Temperature We have to measure temperature of gases in Kelvin Gases below 0°C are still gases and have kinetic energy Kelvin = Celsius temperature + 273 Equations involving gases include moles or grams –using a temperature like -5°C might result in negative mass! 0 Kelvin means no kinetic energy –No motion –Absolute Zero

4 Diffusion of Gases

5 BOYLE’S LAW VOLUME AND PRESSURE

6 What happened to the helium balloon you lost when you were a kid?

7 ROBERT BOYLE ~1620

8 Pressure of a gas is inversely proportional to its volume ie – volume goes down, pressure goes up!

9

10 BOYLE’S LAW EQUATION P 1 V 1 =P 2 V 2 Suppose a helium balloon had a volume of 2L at 1.0 atm. How big would the balloon become if the pressure was reduced to 0.2 atm? Solve for V 2 = (P 1 V 1 ) / P 2 = (1 x 2)/0.2 = 10.0L Could a balloon stretch to this volume?

11 Barometric Pressure

12 How do you measure pressure? Pounds per square inch – psi Bars and millibars mm of Mercury Inches of Mercury Torrichelli (Torr = 1 mm Hg) Atmospheres (Atm) Pascals (P) 760mm Hg = 760 Torr = 1 atm = 101,325 P 1 bar = 100,000 P 25.4 mm Hg = 1 inch Hg

13 Effect of Temperature on Volume (Charles’ Law) Low Temperature High Temperature

14 The volume of a gas increases with an increase in temperature.

15 As T increases, V Increases Always use Temperature in Kelvin!

16 Why? Kinetic theory of gases Average kinetic energy is proportional to Temperature When Temperature is increased, gas molecules hit walls with greater Force, which increases the pressure BUT if we want keep the pressure constant, volume must increase to return the pressure to normal SO increasing Temperature, increases Volume

17

18 A sample of gas occupies 3.20 L at 125 0 C. At what temperature will the gas occupy a volume of 1.54 L if the pressure remains constant? V 1 = 3.20 L T 1 = 398.15 K V 2 = 1.54 L T 2 = ? T 2 = V 2 x T 1 V1V1 1.54 L x 398.15 K 3.20 L = = 192 K

19 Pressure of a gas in a container Temp (K) of a gas Volume of a gas All influence each other

20 When some property of a gas changes… Combined Gas Law If one property stays constant, it cancels out!

21 Example What is the volume of gas at 2.00 atm and 200.0 K if its original volume was 300.0 L at 0.250 atm and 400.0 K?


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