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Properties of matter
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Can be observed without destroying matter(property without changing what the substance is)
Physical property
Matter that cant be observed without destroying matter
Chemical property
Physical property that does not belong to an isolated atom and an example
Bulk property(not an isolated atom, it is a collection of matter) ex: density
Physical property that depends on the amount of matter and it’s example
Extensive property(single atom) ex: mass
Physical properties that doesn’t depend on the amount of matter
Intensive property. Ex: density
Density
A physical property that measures how much mass is packed into a given space or volume.
Mass
A fundamental measure of the amount of matter or "stuff" contained in an object, substance, or particle.
Examples of chemical property
Flammability and Reactivity(changes into a completely different kind of matter.
Reactivity
The ability of matter to combine chemically or react with other substances (such as water, air, or acids).
Falmmability
The ability of matter to catch fire, burn, and sustain combustion in the presence of oxygen.
Properties of metals
Luster, malleable, solid, ductile, and conductive.
Properties of Metalloids
Luster, semi conductive, not ductile, not malleable, and not durable.
Properties of Nonmetals
Brittle solid, gaseous, not durable, not malleable, and not conductive.
Intensive property
Does not depend on the amount of matter in a sample. Ex: boiling point and temperature.
Extensive property
Does depend on the amount of matter. Ex: weight, density, length, and volume.
Physical property
Observed with senses, determined without destroying matter.
Chemical property
Indicates how a substance reacts with something else, matter will be changed into a new substance after the reaction.
Bulk property
An emergent physical characteristic that belongs to a macroscopic assembly of bonded atoms or molecules, not to an isolated atom. Ex: electrical conductivity and density
Atomic property
Measureable in a single isolated atom. Ex: atomic mass and number of valence electrons.