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Heat and Temperature

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Page 1: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Heat and Temperature

Page 2: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Objectives

• Heat • Temperature• Absolute Zero• Fahrenheit, Celsius and Kelvin Scales• Methods of Energy Transfer• Conductors and Insulators• Specific Heat• Heating Systems• Cooling Systems

Page 3: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Heat

• The transfer of energy from the particles of one object to those of another object due to a temperature difference between the two objects

Page 4: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Temperature

• A measure of the average kinetic energy of all the particles within an object

Page 5: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

• Are heat and temperature the same thing?

Page 6: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Thermometer• A device that measures

temperature

• Liquid thermometers– Mercury – Alcohol

Page 8: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Celsius Scale

• Based on the number ten

• 0 °C = water freezes• 100 °C = water boils• Used in many

foreign countries and by most scientists Anders Celsius

(1701-1744)

Swedish Astronomer

Page 9: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Kelvin Scale

• Based on the metric scale and the number ten• Developed to eliminate negative temperatures• Used by many scientists, especially if they work

with extremely low temperatures• 0 K = -273 °C• 273 K = water freezes• 373 K = water boils• NO degree sign!

Page 10: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Absolute Zero• The temperature at which an

object’s energy is minimal.

• -273.15 °C

• 0 Kelvin

…and we think the Artic Circle is cold!!!

But Mom, why can’t I wear shorts

today? It’s supposed to be

254 Kelvin!

Page 11: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Convert °C to °F

Fahrenheit temperature = (9/5 x Celsius temperature) + 32.0

TF = 9/5t + 32.0

Example:

Convert 20 °C to degrees Fahrenheit

Page 12: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Convert °F to °C

Celsius Temperature = 5/9(Fahrenheit temperature – 32.0)

t = 5/9(TF – 32.0)

Example:

Convert 212 °F to degrees Celsius

Page 13: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Convert °C to Kelvin

Kelvin temperature = Celsius temperature + 273

T = t + 273

Example:

Convert 10 °C to Kelvin

Page 14: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Assignment

• Page 328 Practice Problems– Write the questions– Show your work!

Page 15: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Energy Transfer

• Conduction

• Convection

• Convection Current

• Radiation

• Conductor

• Insulator

Page 16: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Conduction

• The transfer of energy as heat between particles as they collide within a substance or between two objects in contact.– Objects must have direct contact

Page 17: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Convection

• The transfer of energy by the movement of fluids with different temperatures.

Page 18: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Convection Current

• The flow of a fluid due to heated expansion followed by cooling and contraction.

Page 19: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Convection Currents

• Vital to the earth– Weather– Ocean currents – Magma currents– Tectonic Plate movement

Page 20: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Radiation

• The transfer of energy by electromagnetic waves.

Page 21: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Conductor

• A material through which energy can be easily transferred as heat.

Page 23: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Using Heat

• Heating systems

• Cooling systems

• Refrigerant

Page 24: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Heating System

• Any device or process that transfers energy to a substance to raise the temperature of the substance.

Page 25: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Cooling System

• A device that transfers energy as heat out of an object to lower its temperature.

Page 26: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Refrigerant

• A substance used in cooling systems that transfers large amounts of energy as it changes state.

Page 27: Heat and Temperature. Objectives Heat Temperature Absolute Zero Fahrenheit, Celsius and Kelvin Scales Methods of Energy Transfer Conductors and Insulators

Review

• Conduction• Convection• Convection current• Radiation• Conductor• Insulator• Heating System• Cooling System