Yes, N2H2 has lone pairs. Each nitrogen atom in N2H2 has one lone pair of electrons.
Trigonal Planar bent!
inorganic
N2H2, also known as diazene, is highly flammable and reactive. It can easily ignite in contact with air and is considered a hazardous material due to its ability to catch fire and explode. Extreme care should be taken when working with N2H2 to prevent accidents.
Using the stoichiometry of the equation, for every 1 mole of N2H2, 3 moles of O2 are needed. The molar mass of N2H2 is 32 g/mol and O2 is 32 g/mol. First, calculate the moles of N2H2 from 215g, then use the mole ratio to find the moles of O2 needed, and finally convert that to grams.
The intermolecular forces present in N2H2 are dipole-dipole interactions. These forces result from the unequal sharing of electrons between nitrogen and hydrogen atoms in N2H2, creating partial positive and negative charges on the molecule. The dipole-dipole interactions are relatively weak compared to other intermolecular forces like hydrogen bonding.
Bent
Dinitrogen hexahydrogen. Though you're unlikely to find it in nature, as the bonding of nitrogen to itself does not leave the 6 valence electrons necessary for the hydrogen molecules to also bond and form the compound.
The strongest intermolecular force in hydrazine (N2H4) is hydrogen bonding. This is due to the presence of hydrogen atoms bonded to nitrogen, creating a significant dipole-dipole interaction between the molecules. Hydrogen bonding is stronger than other IMF such as van der Waals forces in hydrazine.
Radius of an any given orbit r = n2h2/4pi2mze2 m = mass of an electron e = charge of an electron z = constant by Rajeshkumar Sangani RGU IIIT Basar Email:rajesh_iiit2009@yahoo.com
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The molar mass of ammonia (NH) is approximately 17.03 g/mol. To get a molar mass of 30.04 g/mol, we need to determine how many times the empirical formula must be multiplied by a whole number. 30.04 / 17.03 ≈ 1.76, so the molecular formula would be NH₂.