Assertion : R3P=O exists but R3N=O does not exist.
Reason : P is more electronegative than N.
If both assertion and reason are true and reason is the correct explanation of assertion
If both assertion and reason are true but reason is not the correct explanation of assertion
If assertion is true but reason is false
If both assertion and reason are false.
The basic structural. unit and its geometry in silicates is :
SiO2 , tetrahedral
Si , square planar
SiO2 , square planar
Si , tetrahedral
Assertion : Bond energy and bond dissociation energy have identical value for diatomic molecules.
Reason : Greater the bond dissociation energy, less reactive is the bond.
If both assertion and reason are true and reason is the correct explanation of assertion.
If both assertion and reason are true but reason is not the correct explanation of assertion.
If assertion is true but reason is false.
If both assertion and reason are false.
B.
If both assertion and reason are true but reason is not the correct explanation of assertion.
Bond dissociation energy is the energy required to break a particular bond in one mole of a gaseous molecule. Bond energy is the average values of dissociation energies of the same type of bond present in the molecule. Bond energy ofC-H bond in methane is 99.2 kcal/mol.Thus for polyatomic molecules, average bond energy is taken as the dissociation bond energy.
KF combines with HF to form KHF2. This compound contains the species
K+, F- and H+
K+, F- and HF
K+ and [HF2]-
[KHF]+ and F2
The molecules having the same hybridization, shape and number of lone pairs of electrons are
SeF4, XeO2F2
SF4, XeF2
XeOF4, TeF4
SeCl4, XeF4
The M - O- M bond angles in MO (where M is halogen) is in the order
Br2O > Cl2O > F2O
F2O > Br2O > Cl2O
F2O > Cl2O > Br2O
Cl2O > F2O > Br2O
The bond energy is the energy required to :
dissociate one mole of the substance
dissociate bond in 1 kg of the substance
break one mole of similar bonds
break bonds in one mole of the substance
What is binding energy in nucleus , if mass is 0.08181 amu ?
1.2 x 10-4 erg/nucleus
8.2 x 10-4 erg/nucleus
10.2 x 10-4 erg/nucleus
1.9 x 10-4 erg/nucleus