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IrinaK [193]
4 years ago
9

Part a classify each solid as a covalent, ionic, metallic, or molecular solid. drag the appropriate items to their respective bi

ns. hints helpreset fullerenespure potassiumfrozen carbon dioxidepotassium iodide covalent ionic metallic molecular
Chemistry
2 answers:
Anna007 [38]4 years ago
6 0

Explanation:

A compound formed due to transfer of electron from one atom to another is known as an ionic compound. An ionic bond is always formed between a metal and a non-metal.

For example, when potassium donates its one valence electron to iodine then it results in the formation of potassium iodide compound.

And, a compound formed by sharing of electrons between the combining atoms is known as a covalent compound.

For example, fullerenes are an allotrope of carbon where sharing of electrons takes places within the carbon atoms.

Hence, fullerenes are covalent compounds.

Metallic compounds are defined as the compounds in which metal atoms of one or more elements are bonded to each other.

For example, pure potassium will contains only atoms of potassium element. Therefore, it is a metallic compound.

A molecular solid is defined as a substance in which the atoms are held together by Vander waal forces. Due to which they have low melting point.

Generally, non-polar compounds leads to the formation of molecular solids.

For example, frozen carbon dioxide is a molecular solid.

Therefore, we can conclude that the given species are classified as follows.

  • Fullerenes - covalent
  • Pure potassium - metallic
  • Frozen carbon dioxide - molecular solid
  • Potassium iodide - ionic
IRISSAK [1]4 years ago
4 0

Fullerene is a covalent solid.

Pure potassium is a metallic solid.

Frozen carbon dioxide is a molecular solid.

Potassium iodide is an ionic solid.

Further Explanation:

Covalent solids

These are held together by covalent bonds and also called network solids. Localized electrons are present in between the bonded atoms. Silica and diamond are examples of such solids.

Ionic solids

These are held together by ionic bonds. These have lattices that are made up of oppositely charged ions. These solids have high melting points. NaCl is an example of an ionic solid.

Metallic solids

These are held together by metallic bonds that are present between metal atoms. These are good conductors of electricity due to the presence of delocalized electrons. Copper, gold, zinc are examples of metallic solids.

Molecular solids

These are groups of molecules held together by intermolecular forces. These have low melting points. These have localized electrons in them. Solid water or ice is an example of a molecular solid.

Fullerene is an allotropic form of carbon. Since carbon compounds are formed by mutual sharing of electrons, fullerene is a covalent solid.

Pure potassium contains only atoms of potassium. Since potassium is a metal, pure potassium is a metallic solid.

Vander Waal forces are responsible to hold the molecules of solid {\text{C}}{{\text{O}}_{\text{2}}}. Therefore frozen carbon dioxide is a molecular solid.

Potassium iodide is formed by the combination of {{\text{K}}^ + } and {{\text{I}}^ - } so ionic bond exists between this molecule. Therefore potassium iodide is an ionic solid.

Learn More:

  1. What type of crystal is rock salt? brainly.com/question/1951877
  2. During which of the following change water molecules form crystal lattice? brainly.com/question/1503216

Answer Details:

Grade: Senior School

Chapter: Solid State

Subject: Chemistry

Keywords: ionic solid, molecular solid, covalent solid, metallic solid, potassium iodide, pure potassium, frozen carbon dioxide, fullerene.

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blsea [12.9K]

Answer:

F

Explanation:

When an atom lose or gain electrons ions are formed.

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Cation:

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Fluorine is present in group seventeen. It has seven valance electrons. It gain one electron to complete the octet and form anion with charge of -1.

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Nuclear fission, for example, releases neutrons and other particles (at very high speeds) that can ionize materials including DNA. This will induce mutations of DNA most of which are usually lethal to organisms. Gamma and X- rays are also produced by fusion reactions and  if exposed to organisms also cause mutations on DNA through double stranded breaks. Therefore, the risk of an accident of a nuclear reactor can have immense ramifications on the ecosystems.

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