1. What is unique about metallic bonding compared to other states of matter? a. Metals feature relatively small intermolecular forces b. Metals feature a delocalized "sea of electrons" c. Metals and durable d. Metals have electrons in d-orbitals 2.What is meant by a "unit cell" in a crystal lattice? a. It represents one formula unit b. It's the simplest repeating unit of the crystal c. It's 2 dimensional d. It has a mass of 1 g/mol 3. How many vertices (corners) are on a simple cubic cell? a.1 b.2 c.4 d.8 4. If a cell has 1 of an atom on each of the 6 faces of its unit cell, and each of these atoms are shared equally by two adjacent unit cells, how many of this atom are contained within a single unit cell. a. 1 b.3 c.6 d.12 5.Face centered cubic (FCC) is the most densely packed cubic unit cell, with 74% of space occupied by atoms. What is another name for the FCC unit cell? a. Simple cubic b. Cubic Closest Packing c. Densest Simple Unit d. Hexagonal Closest Packing
1. What is unique about metallic bonding compared to other states of matter? a. Metals feature relatively small intermolecular forces b. Metals feature a delocalized "sea of electrons" c. Metals and durable d. Metals have electrons in d-orbitals 2.What is meant by a "unit cell" in a crystal lattice? a. It represents one formula unit b. It's the simplest repeating unit of the crystal c. It's 2 dimensional d. It has a mass of 1 g/mol 3. How many vertices (corners) are on a simple cubic cell? a.1 b.2 c.4 d.8 4. If a cell has 1 of an atom on each of the 6 faces of its unit cell, and each of these atoms are shared equally by two adjacent unit cells, how many of this atom are contained within a single unit cell. a. 1 b.3 c.6 d.12 5.Face centered cubic (FCC) is the most densely packed cubic unit cell, with 74% of space occupied by atoms. What is another name for the FCC unit cell? a. Simple cubic b. Cubic Closest Packing c. Densest Simple Unit d. Hexagonal Closest Packing
1. What is unique about metallic bonding compared to other states of matter? a. Metals feature relatively small intermolecular forces b. Metals feature a delocalized "sea of electrons" c. Metals and durable d. Metals have electrons in d-orbitals 2.What is meant by a "unit cell" in a crystal lattice? a. It represents one formula unit b. It's the simplest repeating unit of the crystal c. It's 2 dimensional d. It has a mass of 1 g/mol 3. How many vertices (corners) are on a simple cubic cell? a.1 b.2 c.4 d.8 4. If a cell has 1 of an atom on each of the 6 faces of its unit cell, and each of these atoms are shared equally by two adjacent unit cells, how many of this atom are contained within a single unit cell. a. 1 b.3 c.6 d.12 5.Face centered cubic (FCC) is the most densely packed cubic unit cell, with 74% of space occupied by atoms. What is another name for the FCC unit cell? a. Simple cubic b. Cubic Closest Packing c. Densest Simple Unit d. Hexagonal Closest Packing
1. What is unique about metallic bonding compared to other states of matter?
a. Metals feature relatively small intermolecular forces
b. Metals feature a delocalized "sea of electrons"
c. Metals and durable
d. Metals have electrons in d-orbitals
2.What is meant by a "unit cell" in a crystal lattice?
a. It represents one formula unit
b. It's the simplest repeating unit of the crystal
c. It's 2 dimensional
d. It has a mass of 1 g/mol
3. How many vertices (corners) are on a simple cubic cell?
a.1
b.2
c.4
d.8
4. If a cell has 1 of an atom on each of the 6 faces of its unit cell, and each of these atoms are shared equally by two adjacent unit cells, how many of this atom are contained within a single unit cell.
a. 1
b.3
c.6
d.12
5.Face centered cubic (FCC) is the most densely packed cubic unit cell, with 74% of space occupied by atoms. What is another name for the FCC unit cell?
a. Simple cubic
b. Cubic Closest Packing
c. Densest Simple Unit
d. Hexagonal Closest Packing
Definition Definition Substance that constitutes everything in the universe. Matter consists of atoms, which are composed of electrons, protons, and neutrons. Different atoms combine together to give rise to molecules that act as a foundation for all kinds of substances. There are five states of matter based on their energies of attraction: solid, liquid, gases, plasma, and BEC (Bose-Einstein condensates).
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