Show that if two equivalent hybrid orbitals of the form spλ make an angle θ to each other, then λ = ±(−1/cos θ)1/2. Plot a graph of λ against θ and confirm that θ = 180° when no s orbital is included and θ = 120° when λ = 2.
Use the wavefunction for a H1s orbital to write a valence-bond wavefunction of the form Ψ(1,2) = A(1)B(2) + A(2)B(1) in terms of the Cartesian coordinates of each electron, given that the internuclear separation (along the z-axis) is R.
Describe the bonding in methylamine, CH3NH2, using hybrid orbitals.
Account for the ability of phosphorus to form five bonds, as in PF5.
Account for the ability of phosphorus to form five bonds, as in PF5.
Account for the ability of nitrogen to form four bonds, as in NH4+.
Normalize to 1 the molecular orbital ψ = ψA + λψB in terms of the parameter λ and the overlap integral S. Assume that ψA and ψB are normalized to 1.
Discuss the role of the Born–Oppenheimer approximation in the molecular-orbital calculation of a molecular potential energy curve or surface.
The decomposition of hydrogen iodide and 323K with an initial concentration of HI to be 0.500 M.The reaction followed zero order kinetics with a rate constant of 1.20× 10^(-4)M s^(-1) Calculate the i) half -life of the reaction and ii) rate constant of be 1.20 ×10^(4)M^(3)s^(-1).Calculate the i) half-life of the reaction and ii) the time required for the concentration of HI to reduce to 0.10M
How is order of reaction determined by half-life method? Explain with the help of an example