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Temperature
Measure of the average kinetic energy of a system's molecules
Thermal Energy
Total internal energy of a substance due to particle motion and interactions
Heat
Energy transferred from a hot object to a cold object due to a temperature difference
Thermal Equilibrium
State in which objects in contact have the same temperature and no net heat transfer
Kelvin Scale
Temperature scale that starts at absolute zero (no molecular motion)
Absolute Zero
Lowest possible temperature where particle motion stops (0 K)
Zeroth Law of Thermodynamics
If A and B are each in thermal equilibrium with C, then A and B are in equilibrium with each other
First Law of Thermodynamics
Energy cannot be created or destroyed, only transferred or transformed
Second Law of Thermodynamics
Heat flows naturally from hot to cold, and entropy always increases
Entropy
Measure of disorder or randomness in a system
Specific Heat
Amount of energy required to raise 1 kg of a substance by 1 K (or 1°C)
Heat of Fusion
Energy required to melt 1 kg of a solid at constant temperature
Heat of Vaporization
Energy required to change liquid to gas at constant temperature
Phase Change
Change of matter from one state to another without temperature change
Why temperature stays constant during a phase change
Energy is used to break or form bonds, not increase particle speed
Solid
Particles vibrate in place; definite shape and volume; lowest entropy
Liquid
Particles move past each other; definite volume, no definite shape
Gas
Particles move freely; no definite shape or volume; highest entropy
Conduction
Heat transfer by direct contact between particles (mostly solids)
Convection
Heat transfer by movement of fluids (liquids and gases)
Radiation
Heat transfer by electromagnetic waves; no contact required
Fluid
Substance that can flow and deform under stress (liquids and gases)
Pressure
Force applied per unit area (P=F/A)
Pascal's Principle
Pressure applied to a confined fluid is transmitted equally in all directions
Bernoulli's Principle
As fluid speed increases, pressure decreases
Archimedes' Principle
Buoyant force equals the weight of the displaced fluid
Buoyant Force (floating object)
Equal to the object's weight
Density
Mass per unit volume; determines whether an object floats or sinks
Viscosity
Resistance of a fluid to flow (higher viscosity = thicker fluid)
Buoyancy
The upward force a fluid exerts on an object placed in it
Buoyant Force
The upward force that opposes gravity when an object is in a fluid
Displaced Fluid
The volume of fluid pushed aside by an object placed in it
Floating Condition
An object floats when the buoyant force equals the object's weight
Sinking Condition
An object sinks when its weight is greater than the buoyant force
Density and Floating
Objects less dense than the fluid float; more dense objects sink
Equal Density Condition
If the density of the object equals the density of the fluid, the object is suspended
Buoyant Force on a Floating Object
Equal to the object's weight, not zero
Buoyant Force on a Submerged Object
Equal to the weight of the displaced fluid
Why larger objects can float
They displace more fluid, increasing the buoyant force
Apparent Weight
The reduced weight of an object in a fluid due to buoyant force
What is the process of solid turning into liquid?
Melting
What is the process of liquid turning into solid?
Freezing
What is the process of liquid turning into gas?
Vaporization (evaporation or boiling)
What is the process of gas turning into liquid?
Condensation
What is the process of solid turning directly into gas?
Sublimation
What is the process of gas turning directly into solid?
Deposition