alb3802844

Gustav Kirchhoff and Robert Bunsen, Inventors of A Spectroscope

In 1860 Robert Bunsen (1811-1899) and Gustav Kirchhoff (1824-1887) discovered two alkali metals, cesium and rubidium, with the aid of the spectroscope they had invented the year before. Bunsen and Kirchhoff met and became friends in 1851, when Bunsen spent a year at the University of Breslau, where Kirchhoff was teaching. In 1855 Robert Bunsen had created the Bunsen burner for use in flame tests of various metals and salts: its non-luminous flame did not interfere with the colored flame given off by the test material. This line of work led to the spectroscope. It was Kirchhoff who suggested that similarly colored flames could possibly be differentiated by looking at their emission spectra through a prism. When he shone bright light through such flames, the dark lines in the absorption spectrum of the light corresponded in wavelengths, with the wavelengths of the bright, sharp lines characteristic of the emission spectra of the same test materials.
Teilen
pinterestPinterest
twitterTwitter
facebookFacebook
emailEmail

Zu einem anderen Lightbox hinzufügen

Zu einem anderen Lightbox hinzufügen

add to lightbox print share
Haben Sie bereits ein Konto? Anmelden
Sie haben kein Konto? Registrieren
Dieses Bild kaufen
Daten werden geladen...
Titel:
Gustav Kirchhoff and Robert Bunsen, Inventors of A Spectroscope
In 1860 Robert Bunsen (1811-1899) and Gustav Kirchhoff (1824-1887) discovered two alkali metals, cesium and rubidium, with the aid of the spectroscope they had invented the year before. Bunsen and Kirchhoff met and became friends in 1851, when Bunsen spent a year at the University of Breslau, where Kirchhoff was teaching. In 1855 Robert Bunsen had created the Bunsen burner for use in flame tests of various metals and salts: its non-luminous flame did not interfere with the colored flame given off by the test material. This line of work led to the spectroscope. It was Kirchhoff who suggested that similarly colored flames could possibly be differentiated by looking at their emission spectra through a prism. When he shone bright light through such flames, the dark lines in the absorption spectrum of the light corresponded in wavelengths, with the wavelengths of the bright, sharp lines characteristic of the emission spectra of the same test materials.
Bildnachweis:
Album / Science Source / New York Public Library
Freigaben (Releases):
Model: Nein - Eigentum: Nein
Rechtefragen?
Bildgröße:
4290 x 7651 px | 93.9 MB
Druckgröße:
36.3 x 64.8 cm | 14.3 x 25.5 in (300 dpi)