|\ |\ |\ |\ |\ |\
Consider the structure of methane. Why are the four sp3
|\ |\ |\ |\ |\ |\ |\ |\ |\ |\
hybridized orbitals separated as far as they can be from one
|\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\
another? - CORRECT ANSWERS ✔✔- bond angle is 109.5 degrees
|\ |\ |\ |\ |\ |\ |\ |\ |\
- drawing of sp3 hybridized methane
|\ |\ |\ |\ |\
- an atom will exist in the lowest energy state with the greatest
|\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\
frequency
- the most relaxed state will occur with the highest probability
|\ |\ |\ |\ |\ |\ |\ |\ |\ |\
- repulsive force
|\ |\
Briefly describe the two major techniques typically used to
|\ |\ |\ |\ |\ |\ |\ |\ |\
determine the structure of a biological macromolecule. -
|\ |\ |\ |\ |\ |\ |\ |\
CORRECT ANSWERS ✔✔- nucelar magnetic resonance (NMR)
|\ |\ |\ |\ |\ |\
- nuclear overhauser effects (NOE)
|\ |\ |\ |\
- distance between to protons using the transfer of resonant
|\ |\ |\ |\ |\ |\ |\ |\ |\ |\
energy
- graph of dampened sine wave
|\ |\ |\ |\ |\
- graph of excited vector + transmitter cell
|\ |\ |\ |\ |\ |\ |\
- x-ray crystallography
|\ |\
- x-rays scattered through a protein crystal
|\ |\ |\ |\ |\ |\
- constructive and deconstructive interference is an additive
|\ |\ |\ |\ |\ |\ |\ |\
scale and isn't absolute
|\ |\ |\
- drawing of light wave hitting and scattering on a lattice
|\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\
structure
,In a simple way, how is quantum mechanics used to determine
|\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\
the energy (and structure) of a molecule? Provide an explanation.
|\ |\ |\ |\ |\ |\ |\ |\ |\
- CORRECT ANSWERS ✔✔- HY = EY
|\ |\ |\ |\ |\ |\ |\
- the lowest energy state has the highest probability
|\ |\ |\ |\ |\ |\ |\ |\
- how to calculate the lowest energy
|\ |\ |\ |\ |\ |\
Explain the significance of the key general equation. Define the
|\ |\ |\ |\ |\ |\ |\ |\ |\ |\
Hamiltonian operator and wavefunction. - CORRECT ANSWERS |\ |\ |\ |\ |\ |\ |\
✔✔- HY = EY |\ |\ |\
- Schrodinger equation predicts the most probably structure
|\ |\ |\ |\ |\ |\ |\
- find the lowest energy state, most probable
|\ |\ |\ |\ |\ |\ |\
- electron probability distribution
|\ |\ |\
- the variables are each a matrix defining all points in space
|\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\
because they can all potentially hold an atom or bond|\ |\ |\ |\ |\ |\ |\ |\ |\
Write out the Boltzmann's distribution law and define all the
|\ |\ |\ |\ |\ |\ |\ |\ |\ |\
parameters. - CORRECT ANSWERS ✔✔- state equation |\ |\ |\ |\ |\ |\
- state purpose of equation
|\ |\ |\ |\
- connection to equilibrium constant k
|\ |\ |\ |\ |\
- states occupied based on energy available
|\ |\ |\ |\ |\ |\
What is the relation between probability of a given state and the
|\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\
corresponding energy? (Hint: what happens to the distribution |\ |\ |\ |\ |\ |\ |\ |\
when energy is increased?) - CORRECT ANSWERS ✔✔- as
|\ |\ |\ |\ |\ |\ |\ |\ |\
probability of state (S) increases, probability of states (R) |\ |\ |\ |\ |\ |\ |\ |\ |\
decrease
, - lowest energy states are the most stable and the most likely to
|\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\
be occupied
|\
- deltaEvib/KbT
|\
- total vibrational states are exhibited
|\ |\ |\ |\ |\
- distribution is greater when energy is increased
|\ |\ |\ |\ |\ |\ |\
- lower energy to fight random walk and can't get molecules into
|\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\ |\
or out of pocket states
|\ |\ |\ |\
Given the molecular mechanics master equation, describe what
|\ |\ |\ |\ |\ |\ |\ |\
each term means. - CORRECT ANSWERS ✔✔- define Vtot
|\ |\ |\ |\ |\ |\ |\ |\
- first chunk is potential energy of bonds stretching
|\ |\ |\ |\ |\ |\ |\ |\
- second chunk is bent angles/bond bending
|\ |\ |\ |\ |\ |\
- third chunk is dihedral angles
|\ |\ |\ |\ |\
- fourth chunk is Van der Waals interaction energy
|\ |\ |\ |\ |\ |\ |\ |\
- q is charge
|\ |\ |\
- the last chunk is hydrogen bonding
|\ |\ |\ |\ |\ |\
Describe the Lennard-Jones potential energy function and
|\ |\ |\ |\ |\ |\ |\
contrast it with the hydrogen bonding potential energy function.
|\ |\ |\ |\ |\ |\ |\ |\ |\
Explain how each depends on the inter-atomic distance. -
|\ |\ |\ |\ |\ |\ |\ |\ |\
CORRECT ANSWERS ✔✔- Lennard-Jones potential energy function
|\ |\ |\ |\ |\ |\
- VLJ = E4Eij[(oij/rij)12-(oij/rij)6]
|\ |\ |\
- Van der Waals interactions
|\ |\ |\ |\
- hydrogen bonding potential energy
|\ |\ |\ |\
- exponent is larger
|\ |\ |\
- atoms must be closer to experience the force
|\ |\ |\ |\ |\ |\ |\ |\