Historical Document
Let Us Demonstrate How the Du Pont 310 Curve Resolver Reduces Complex Curves to Component Peaks Quickly and Inexpensively
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A one-page advertisement from Du Pont Instruments promoting the 310 Curve Resolver, a compact analog instrument that decomposes complex overlapping curves (from chromatography, electrophoresis, NMR spectroscopy, X-ray diffraction, and similar techniques) into individual component peaks. The operator works directly with the instrument's up to ten function generators to match synthetic peak shapes to the original curve on an oscilloscope screen, with the algebraic sum displayed simultaneously. An optional X-Y plotter and integrator are mentioned for recording and area measurement.
- Manufacturer
- Du Pont
- System
- Du Pont 310 Curve Resolver
- Author
- Du Pont Instruments Division
- Type
- Historical Document
- Language
- English
- Learning track
- specific applications
- Pages
- 1
- Credit
- Published in Analytical Chemistry, Circle No. 33 on Readers' Service Card
- Du Pont 310 Curve Resolver
- Du Pont
- curve resolver
- peak analysis
- analytical instrumentation
- function generators
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Let Us Demonstrate How the Du Pont 310 Curve Resolver Reduces Complex Curves to Component Peaks Quickly and Inexpensively
LET US DEMONSTRATE HOW THE
DU PONT 310 CURVE RESOLVER REDUCES
COMPLEX CURVES TO COMPONENT PEAKS
QUICKLY AND INEXPENSIVELY.
If you get experimenta! data with
overlapping peaks, you no longer
have to take computation time to
locate them and establish their po-
sition, height, width at half-height
and area, You don't have to do extra
experimentation in hopes of getting
better resolution
Alt you need is a 310 Curve Re
solver and a few minutes. The 310
is a compact instrument you keep
right in the lab for immediate use
You operate the 310 without
making computations. Yet you can
use it to analyze raw data from
chromatography, electrophoresis,
spectroscopy, ultracentrifugation,
x-ray diffraction, NMR spectros
copy, counter-current extraction,
and other analytical techniques —
any plotted data in some form of
distribution curve
it's much more convenient to use
than a digital computer. Far less
expensive. And generally faster in
terms of total time because you
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don't have to program the 310 and
because you work directly with it,
as part of the computation loop.
You constantly examine and modify
the number, positions end shapes
of the peaks as the instrument
bulids them up and displays their
algebraic sum,
To use the 310, you put the
curve you want to analyze (a chro-
matogram, for example) on the
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desk. It's reflected on the screen
on an 18-inch oscilloscope, located
right in front of you.
Next, you turn on the “peak
shapers,” or function generators
the 310 has as many as ten of
them), with the controls on the
front of the console. The function
generators cause peak snapes to
be displayed on the oscilloscope
superimposed with the image of
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your original curve. With the con-
trols, you move the peaks and ad-
just their heights and widths until
their algebraic sum matches your
original curve. (You can also skew
peaks, invert them or slope base-
lines.)
That's essentially all there is to
operating the 310, Examine the
original peaks right on the oscillo-
scope. Evaluate the “goodness of
tit’ between experimental! and syn-
thetic curves. Record the peaks, to-
gether with the sum curve, on an
optional x-y plotter and read their
relative areas on the integrator.
We would like to demonstrate
the Du Pont 310 Curve Resolver
right im your lad or office. in fact,
we could cemonsitrate with some
of your complex curves. To arrange
a no-obligation demonstration,
write Du Pont, Instrument Prod-
ucts Division,Rm. 5768-A,Wilming-
ton, Delaware 19898
GUPOND INSTRUMENTS
20 A «© ANALYTICAL CHEMISTRY
Cirele Ma. 12 on Beadert” Service Card