k Emission spectrum of cadmium. When atoms of an element are excited for instance by heating, they return to their state of lowest energy by emitting radiation at specific wavelengths. If this radiation is passed through a spectrometer, a spectrum is produced which displays the elements characteristic emission lines. The lines are a unique fingerprint of an element. Cadmiums predominant lines right to left are at 6438 6359 angstroms red, 5085 green, 4800, 4678 4414 angstroms blue. Many fainter lines are not visible in this photograph. Editorial Stock Photo - Afloimages
Sign up
Login
All images
Emission spectrum of cadmium. When atoms of an element are excited (for instance by heating), they return to their state of lowest energy by emitting radiation at specific wavelengths. If this radiation is passed through a spectrometer, a spectrum is produced which displays the element's characteristic emission 'lines'. The lines are a unique 'fingerprint' of an element. Cadmium's predominant lines (right to left) are at 6438 & 6359 angstroms (red), 5085 (green), 4800, 4678 & 4414 angstroms (blue). Many fainter lines are not visible in this photograph.
ED

Emission spectrum of cadmium. When atoms of an element are excited (for instance by heating), they return to their state of lowest energy by emitting radiation at specific wavelengths. If this radiation is passed through a spectrometer, a spectrum is produced which displays the element's characteristic emission 'lines'. The lines are a unique 'fingerprint' of an element. Cadmium's predominant lines (right to left) are at 6438 & 6359 angstroms (red), 5085 (green), 4800, 4678 & 4414 angstroms (blue). Many fainter lines are not visible in this photograph.

Details

ID
10569180

Collection

License type
Editorial

Photographer

Creation date
15-11-2010

Contact Aflo for all commercial uses.


Keywords
More
Sign in
Member access
Login not found.