no
No, ionic compounds exist as a crystal lattice structure in which positively charged ions are surrounded by negatively charged ions in a repeating pattern. This structure extends in three dimensions, rather than forming discrete molecules.
Ionic compounds typically form ions when dissolved in water or melted, as the strong electrostatic forces between the positively and negatively charged ions prevent them from forming discrete molecules. In the solid state, ionic compounds exist as a lattice of alternating cations and anions held together by ionic bonds.
Yes, that's right. Organic compounds are typically made of covalently bonded molecules, which have weaker intermolecular forces like van der Waals forces or hydrogen bonding compared to the strong electrostatic forces in ionic compounds. This is why organic compounds have lower melting and boiling points than many ionic compounds.
Oh, dude, so like, ionic compounds are made up of ions, which are like charged particles, so they exist as ions in their pure state. And molecular compounds are made up of molecules, which are like groups of atoms held together by chemical bonds, so they exist as molecules in their pure state. It's like, basic chemistry, man.
Elements can exist as molecules when they combine with other elements to form compounds due to the sharing or transfer of electrons, creating stable structures. These molecules are held together by chemical bonds, which can be covalent, ionic, or metallic, depending on the types of elements involved. The formation of molecules allows the elements to achieve a more stable configuration, following the octet rule and minimizing their energy state.
I'm on dat good kush and alcohol.
No, ionic compounds exist as a crystal lattice structure in which positively charged ions are surrounded by negatively charged ions in a repeating pattern. This structure extends in three dimensions, rather than forming discrete molecules.
Ionic compounds typically form ions when dissolved in water or melted, as the strong electrostatic forces between the positively and negatively charged ions prevent them from forming discrete molecules. In the solid state, ionic compounds exist as a lattice of alternating cations and anions held together by ionic bonds.
Yes, that's right. Organic compounds are typically made of covalently bonded molecules, which have weaker intermolecular forces like van der Waals forces or hydrogen bonding compared to the strong electrostatic forces in ionic compounds. This is why organic compounds have lower melting and boiling points than many ionic compounds.
Oh, dude, so like, ionic compounds are made up of ions, which are like charged particles, so they exist as ions in their pure state. And molecular compounds are made up of molecules, which are like groups of atoms held together by chemical bonds, so they exist as molecules in their pure state. It's like, basic chemistry, man.
Elements can exist as molecules when they combine with other elements to form compounds due to the sharing or transfer of electrons, creating stable structures. These molecules are held together by chemical bonds, which can be covalent, ionic, or metallic, depending on the types of elements involved. The formation of molecules allows the elements to achieve a more stable configuration, following the octet rule and minimizing their energy state.
Actually, a single unit of an ionic compound is referred to as a formula unit. Unlike molecules, ionic compounds do not exist as discrete molecules but as an arrangement of ions in a crystal lattice.
some compounds are composed of molecules bound by ionic compounds so no
No. There is no such thing as an "ionic bonded molecule," as molecules, by definition, are helld together by covalent bonds. Ionic compounds are not molecular. Some ionic compounds disassociated in water while others do not.
To the extent the question makes any sense (i.e. very little): no.Crystals of both ionic and covalent compounds exist.
Covalent molecules generally have lower melting points than ionic compounds because the intermolecular forces between covalent molecules are weaker than the electrostatic forces between ions in ionic compounds. This is because covalent molecules are held together by dispersion forces, dipole-dipole interactions, and hydrogen bonding, which are weaker compared to the strong ionic bonds present in ionic compounds.
Covalent molecules with small amounts of argon which is monatomic. All molecules are covalent. Ionic compounds form crystals, not molecules.