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Yes, it is molecular , and has an 8 membered ring structure

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What is the type of compound of Se2S6?

Se2S6 is a molecular compound composed of selenium (Se) and sulfur (S) atoms. It consists of two selenium atoms and six sulfur atoms, indicating a covalent bonding arrangement. This compound is often classified as a chalcogenide, which is typical for compounds formed from elements in group 16 of the periodic table. Its structure and properties are of interest in materials science and chemistry.


What is the compound bonding of Se2S6?

The compound Se2S6 is a covalent compound made up of selenium (Se) and sulfur (S) atoms. In this compound, selenium forms a diatomic molecule (Se2) and reacts with six sulfur atoms. The bonding is mainly covalent, as both selenium and sulfur atoms share electrons to achieve a stable electron configuration.


What is the name of Se2S6?

Selenium Hexasulfide


Is Se2S4 covalent in chemistry?

Selenium sulfides have covalent bonds.


What is meant by covalent and the ionic bond in the chemistry?

A covalent bond occurs when atoms share outer electrons.


What are three major bond in chemistry?

covalent hydrogen and ionic


What molecule is OPN in chemistry?

It is covalent in nature because it is formed by mutual sharing of electrons.


What type of chemistry bond is H-Cl?

The bond chlorine-hydrogen is polar covalent.


How many covalent bonds does germanium form in chemistry?

Germanium typically forms four covalent bonds in chemistry. It has four valence electrons, so it tends to share these electrons with other atoms to complete its octet structure.


Why Covalent bond between silver and germanium breaks at room temperature?

Ask your Chemistry teacher about this.


What is a covalent band?

There is no term "covalent band" in chemistry. Perhaps you meant "covalent bond," which is a chemical bond that involves the sharing of electron pairs between atoms. Covalent bonds are typically strong and often found in molecules.


Is the polarity of nitrogen-oxygen covalent bond neutral?

http://www.sparknotes.com/chemistry/organic1/covalentbonding/section1.html