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Mouse Mat : Coloured SEM of beryllium oxide crystals

Coloured SEM of beryllium oxide crystals



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Coloured SEM of beryllium oxide crystals

Beryllium oxide crystals. Coloured scanning electron micrograph (SEM) of the fractured surface of beryllium oxide (BeO) ceramic. Beryllium oxide (or beryllia" ) is obtained by heating beryllium compounds in excess oxygen. It is mainly used as a ceramic as it has excellent corrosion resistance and good mechanical strength. This ceramic finds applications within nuclear reactors, as electronic substrates, discharge tubes for gas lasers, and metallurgical applications for melting rare earth metals. Magnification: x3, 365 at 5x7cm size. x8, 625 at 5x7 inch size."

Science Photo Library features Science and Medical images including photos and illustrations

Media ID 9193929

© POWER AND SYRED/SCIENCE PHOTO LIBRARY

Ceramic Ceramics Compound Compounds Crystal


Mouse Mat

A high quality photographic print manufactured into a durable wipe clean mouse mat (27x22cm) with a non slip backing, which works with all mice.

Archive quality photographic print in a durable wipe clean mouse mat with non slip backing. Works with all computer mice

Estimated Image Size (if not cropped) is 25.4cm x 17.3cm (10" x 6.8")

Estimated Product Size is 26.9cm x 21.8cm (10.6" x 8.6")

These are individually made so all sizes are approximate

Artwork printed orientated as per the preview above, with landscape (horizontal) orientation to match the source image.


EDITORS COMMENTS
This print showcases the intricate beauty of beryllium oxide crystals. The coloured scanning electron micrograph (SEM) reveals the fractured surface of this ceramic material, providing a glimpse into its unique structure. Beryllium oxide, also known as beryllia, is formed by heating beryllium compounds in excess oxygen. Renowned for its exceptional corrosion resistance and mechanical strength, this ceramic has found diverse applications across various industries. It serves as an essential component within nuclear reactors, where its reliability and durability are crucial. Additionally, it is utilized as electronic substrates and discharge tubes for gas lasers due to its remarkable properties. The magnification of this image allows us to appreciate the fine details of these crystals at different sizes: x3,365 at 5x7cm size and x8,625 at 5x7 inch size. This photograph not only highlights the scientific significance of beryllium oxide but also captures its aesthetic appeal. Science Photo Library presents this extraordinary image that combines crystallography with chemistry to offer a visual representation of a compound that plays a vital role in numerous industrial processes.

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