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Column Chromatography

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Detailed handwritten notes for Analytical Chemistry Chapter 23 — Chromatography. Covers column chromatography, retention factors, selectivity, theoretical plates, HETP, Van Deemter equation, and resolution formulas. Includes full Gas Chromatography section with TCD, FID, and ECD detectors plus sample prep methods. Color-coded and exam-ready. Perfect for analytical chem midterms and finals!

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Chapter 23 chromatography Mobile Phase

Chromatogram Flow
chromatography rate speed
:
column of the




u
Cluent mobile mobile phase
:
phase & mixture
passing
↓ S M
Em tri trz
through a column


column : mL/min
stationary phase retention time
* volume

↓ * linear cm/min




>
eluate : mobile & mixture
phase components

retention allows for determination
depends upon

1) size of
analyte

2) for SP tm dead time
=
affinity unretained components
rate of
3) temperature - = retention time component determine
migration
4) pH t =
adjusted retention


5) pressure time
(tr-ty)
6) Flow rate



7) diameter of SP
retention factor
wet
t & related

ratio of
8) column diameter of volume of SP
the time that
up
the solute spends in the
relative retention/selectivity factor




s
stationary phase to w =
W
&

awas
= t P
-




the time it spends in



mobile *
no separation the phase solve for
top
* * determine
used to determine the resolving power
if w= tr
of a column
0 =
+m affinity of
analyte

if w'll too fast to SP



/good Mead ! !
-




if k's 20 too slow


: broad bands -
Separation Efficiency
Is
good !
if I
1) differences in retention time


2) peak widths

measuring breadth

# of theoretical plates # of
Will width at half height
times a solute partitions between W width at the between
baseline
2



Fe
MP & Sp4NA N = S SY.

tangents drawn to the steepest parts
HETP = L of the
-
or peam
(height) ↓ N

16(z)2 Der =or t
~ =
resolution =

A
A * >1 5 A .
W

H = A +
B + Cu
van Deemter desired
W
*

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Uploaded on
March 8, 2026
Number of pages
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Written in
2025/2026
Type
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Dr. langston
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