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Heat & Thermo Important Shtuff © 2015 D Taylor. Heat & Thermodynamics Or, “Let’s try to remember all that stuff we learned last year, K!”

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Presentation on theme: "Heat & Thermo Important Shtuff © 2015 D Taylor. Heat & Thermodynamics Or, “Let’s try to remember all that stuff we learned last year, K!”"— Presentation transcript:

1 Heat & Thermo Important Shtuff © 2015 D Taylor

2 Heat & Thermodynamics Or, “Let’s try to remember all that stuff we learned last year, K!”

3 Mini-LAB 100 Revs. MEASURE  T MEASURE  T. -Record on WhiteBd -Discuss

4 Basic LAWS 0 th Law 0 th Law – Two systems individually in thermal equilibrium with a 3 rd system are in equilibrium with each other. – Sorta like If A=B & B=C, then A=C

5 13-2: Thermal Expansion

6

7 13-4 Gas Laws Ideal Gas Laws – Boyle’s Law (1700) P 1 V 1 =P 2 V 2 – Charles’ Law V 1 /T 1 =V 2 /T 2 – Guy-Lusacs Law P 1 /T 1 =P 2 /T 2 Put them all together and…

8 Which means?

9

10 13-4: Kinetic Theory

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12 Basic Stuff Kinetic Theory – Look on pg 452+ for pix & examples

13 U 13-4: Derivation of U

14 AP2 Ch14 Heat & Heat Transfer EZ PZ

15 14.2 Temperature Change and Heat Capacity Heat transfer : Fig 14-4

16 Calorimetry Since heat, Q, is a form of E… Q L = Q G  Q Total = 0 = mc  T So,

17 Calorimetry Q L = Q G Phase Change So,

18 14.4: Heat Transfer Methods

19 Ch15: Thermodynamics Or, “Let’s try to remember all that stuff we learned last year, K!”

20 Figure 15.3 WRONG!

21 Basic LAWS 1 st Law 1 st Law U f QW – Internal energy of a system changes from an initial value U i to a final value U f due to heat Q and work W:  U U f – U i Q + W  U = U f – U i = Q + W Q>0 0 when system gains heat & <0 when it loses heat. W>0 0 when work is done ON system & <0 when gas does work.

22 Q IN > 0 Q OUT < 0

23 W ON > 0 W BY < 0

24 Using the 1 st LAW 2500J of heat is added to a system, and 1800J of work is done on the system. Find change in internal energy of the system?

25 Using the 1 st LAW Work done on a system in one cycle?

26 – T of 3 mol is reduced from 540K to 350K by adding 5500J of heat to it. Find  U & W done by or on gas.

27 – T of 3 mol is reduced from 540K to 350K by adding 5500J of heat to it. Find  U & W done by or on gas. by or on gas?

28 Using the 1 st LAW Work done on or by a gas?

29

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31 Basic LAWS 2 nd Law 2 nd Law – Heat flows from a substance at higher temp to a substance at lower temp and does NOT flow in the reverse direction. Ever.

32 Carnot (IDEAL) Engine

33

34 Basic LAWS 3rd Law 3rd Law – Absolute Zero is impossible to reach in a finite number of steps.


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