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AsH3 is Arsenic hydride.

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lenpollock

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1y ago

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Related Questions

What is the name for AsH3?

The chemical name for AsH3 is arsenic trihydride, also known as arsine.


Does AsH3 follow the octet rule?

No, AsH3 does not follow the octet rule. Arsenic, the central atom in AsH3, can expand its valence shell to hold more than eight electrons in bonding.


What is the name of the binary compound with the formula AsH3?

The name of the binary compound with the formula AsH3 is arsine.


What is the oxidation number of H in AsH3?

The oxidation number of hydrogen is almost always 1 and should be so in AsH3.


How do you find the H charge in AsH3?

The Arsenic in AsH3 typically has a plus one charge. Therefore the H must have a -1 charge to create the compound.


Is AsH3 polar or non-polar?

AsH3, also known as arsine, is a polar molecule. This is due to the asymmetrical arrangement of the hydrogen atoms around the central arsenic atom, creating an uneven distribution of charge within the molecule.


What is the oxidation number for each atom in AsH3?

In AsH3, arsenic (As) has an oxidation number of -3 since hydrogen (H) is always assigned an oxidation number of +1 in compounds.


How many bonding orbitals are in AsH3?

3 because that is the number of bonds it has already


Why is the boiling point of AsH3 lower thanNH3?

The boiling point of a compound is influenced by its molecular weight and intermolecular forces. AsH3 has a lower boiling point than NH3 because it is a lighter molecule (lower molecular weight) and has weaker hydrogen bonding interactions between its molecules compared to NH3, which has stronger hydrogen bonding.


Which will diffuse faster AsH3 or HCN?

HCN will diffuse faster due to its lower molecular weight.


Which boiling point is higher PH3 or AsH3?

The boiling point of AsH3 (Arsine) is higher than that of PH3 (Phosphine) due to the higher molecular weight of AsH3 compared to PH3. Stronger Van der Waals forces of attraction between molecules in AsH3 result in higher boiling point.


Bonding scheme of ash3 in hybridization?

The bonding in AsH3 involves the hybridization of the arsenic atom. Arsenic in AsH3 uses sp3 hybridization, where the 3p orbital and all three 3d orbitals combine with the 4s orbital to form four equivalent sp3 hybrid orbitals. These hybrid orbitals overlap with the 1s orbitals of the three hydrogen atoms to form three sigma bonds, resulting in a trigonal pyramidal molecular geometry.