Education

Quantitative analysis methods are used in many high schools both for education and research work. The applied methods shall be simple and at the same time providing maximum information about the analyzed sample with minimal costs.
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X-ray fluorescence method of elemental analysis is widely spread due to its simplicity,  precision, simple sample preparation.

Advantages of X-ray fluorescent method:
•    Universal: can analyze solid, liquid, powder substances, filters and foils with one and the same instrument;
•    Rapid: time required for one element determination is from 10 seconds.;
•    All elements can be determined from one sample;
•    Simple sample preparation: even liquid and powder samples may be analyzed as is;
•    Wide range of determined concentrations;
•    Reliability – element lines presence in spectrum with no doubt confirms element presence in a sample;
•    Nondestructive analysis method: it permits afterwards analysis of the sample with other methods;
•    Almost no consumed materials for analysis.

Wavelength dispersive WDXRF "SPECTROSCAN MAKC-" spectrometers are ideal instruments for education centers:
•    Can determine with high precision elements content from Na to U in any substances being in solid, liquid, powder state or solutions, filters, foils;
•    WDXRF provides high  spectrum resolution;
•    Sample preparation is simple. The specimen is at the ambient conditions while measurement;
•    Automatic sample changer for 10 samples;
•    No gas consumption, closed cycle cooling system, no additional water supply required;
•    Completely x-ray safe.
SPECTROSCAN МАКС-G

Wavelength dispersive X-ray fluorescent WDXRF scanning spectrometer for determination of chemical elements in the range from Ca (Calcium) to U (Uranium) in various compounds.

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SPECTROSCAN МАКС-GF1(2)E

:SPECTROSCAN МАКС-GF1(2)E" is a modification of WDXRF  "SPECTROSCAN МАКС-G" spectrometer with one or two additional EDXRF channels.

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SPECTROSCAN МАКС-GVM

"SPECTROSCAN MAKC-GVM" WDXRF spectrometer determines elements from Na (Sodium) to U (Uranium) in solids, liquids or powders, in solutions and thin films, deposits on filters. 

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