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C483 EXAMINATION QUESTIONS AND ANSWERS

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C483 EXAMINATION QUESTIONS AND ANSWERS

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C483 EXAMINATION QUESTIONS AND ANSWERS
Solubility - depends on dielectric constant and polarity

like dissolves like

Residue - Monomers in a polymer

Free Energy - Energy Available to do work in a system or reaction

Enthalpy - total heat or energy of a system

entropy - A measure of disorder or randomness.

intramolecular forces - Forces within molecules

H-Bonds

Dipole-Dipole

LDF

van der Waals

Hydrophobic Effect - Exclusion of nonpolar substances from an aqueous solution

Non-polar molecules do not interact wiht H2O

Amphipathic compounds - Compounds with both hydrophobic and hydrophilic portions
(ex. phospholipids in cell membranes)

Auto-Ionizations - H2O "self-ionizes" in solution and "proton jumping" occurs where
water molecules can create a network in solution so that the "acid" is spread out across the
solution and all the water molecules are moving and transferring protons around to create
hydronium

pH - Concentration of hydrogen ions in a solution (-log [H+])

pKa - -log (concentration of products/ concentration of reactants)

pH of strong acid solutions - strong acids completely dissociate in solution



amount and strength of acid affects pH change

, little strong acid in

solution can sometimes change pH more than more weak acid in solution

Weak Acids - do not completely dissociate in solution

lower Ka and higher pKa

Henderson-Hasselbalch - pH = pKa + log[A-][HA]

A- = proton acceptor

HA = proton donor

Ionization State - at different pHs, what is the charge/ionization state of particular
molecules?



ex) phosphate H3PO4 has 3 pKas - 2.2, 7.2, and 12.7

use this information to know the charge of a phosphate at different pHs



ex) @ pH 2.2, phosphate is 50/50 in all protonated/1 deprotonated form and @ pH 4, it is
mostly in its 1 deprotonated (-1 charge) form

titration curves - show the points at which a substance is deprotonated



ex) titration curve of phosphate shows pKas of the molecule at midpoints

Buffer capacity - depends on pKa and concentration of CA/CB mix



effective buffers also do not let the pH of a solution change much

this means they "soak up" the acid or base in solution that would be attempting to change the
pH



the capacity of a buffer is within 1 unit of its pKa of pH on either side

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