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What are three properties of non-metals?
How a mineral can be scratched.
Mass cannot be created nor destroyed.
Drawn into wire.
malleable, ductile, luster
Hammered into sheets.
100 cm3
95 g
usually gases, poor conductors of electricity, low melting point
What does DUCTILE mean?
How a mineral can be scratched.
Mass cannot be created nor destroyed.
Drawn into wire.
malleable, ductile, luster
Hammered into sheets.
100 cm3
95 g
usually gases, poor conductors of electricity, low melting point
What does MALLEABLE mean?
How a mineral can be scratched.
Mass cannot be created nor destroyed.
Drawn into wire.
malleable, ductile, luster
Hammered into sheets.
100 cm3
95 g
usually gases, poor conductors of electricity, low melting point
What is the defintion of the Law of Conservation of Mass?
How a mineral can be scratched.
Mass cannot be created nor destroyed.
Drawn into wire.
malleable, ductile, luster
Hammered into sheets.
100 cm3
95 g
usually gases, poor conductors of electricity, low melting point
What does HARDNESS mean?
How a mineral can be scratched.
Mass cannot be created nor destroyed.
Drawn into wire.
malleable, ductile, luster
Hammered into sheets.
100 cm3
95 g
usually gases, poor conductors of electricity, low melting point
What are three properties of metals?
How a mineral can be scratched.
Mass cannot be created nor destroyed.
Drawn into wire.
malleable, ductile, luster
Hammered into sheets.
100 cm3
95 g
usually gases, poor conductors of electricity, low melting point
Calculate the following: M = ? V = 19 cm3 D = 5 cm3
How a mineral can be scratched.
Mass cannot be created nor destroyed.
Drawn into wire.
malleable, ductile, luster
Hammered into sheets.
100 cm3
95 g
usually gases, poor conductors of electricity, low melting point
Calculate the following: M = 500 D = 5 g/cm3 V = ?
How a mineral can be scratched.
Mass cannot be created nor destroyed.
Drawn into wire.
malleable, ductile, luster
Hammered into sheets.
100 cm3
95 g
usually gases, poor conductors of electricity, low melting point
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