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Cliché en microscopie électronique par balayage réalisé lors d'une visite des élèves au CNRS de Perpignan

A mm ruler-each line is 1 mm from the next.

Canon T2i, full resolution still photo

5184x3456 pixels.

839 pixels/mm

Great for Doctors, Veterinarians, Breeders, Medical Students, Schools, Scientists, Research Labs.

An artist showcases his book of photographs of 2pt font taken through a microscope. Parts of the book, also printed in 2pt font, actually needs to be read with a magnifying glass.

 

(Yo-Yo Lin)

Source: E. C. Bolles Collection of Microscope Slides, San Diego Natural History Museum.

 

Image id: SDNHM_Microscope_Slides_018

Matches microscope seen in the film. A lucky find for me to use as a guide in scratching one for mt Proteus build.

Source: E. C. Bolles Collection of Microscope Slides, San Diego Natural History Museum.

 

Image id: SDNHM_Microscope_Slides_017

Processed with VSCO with p5 preset

Tarlatan Fabric with Ink.

in a drop of water

Microscope with two lenses, smart phone and LED back light for organic samples.

brock magicscop - cool and simply microscope

Photos of the Kake AYS (Alaska Youth Stewards) using microscopes to inspect fungi, mosses, and other plants.

 

Kake, Alaska

 

Photographs by Lee House

 

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Photos not to be used without the permission of the Sustainable Southeast Partnership

Issu d'un prélèvement effectué vers 1700m d'altitude, au niveau du déversoir de l'étang d'Artax gelé.

Source: E. C. Bolles Collection of Microscope Slides, San Diego Natural History Museum.

 

Image id: SDNHM_Microscope_Slides_006

A medium sized light wooden box with key containing a black Carl Zeiss made microscope. Box is marked by a sticker stating Preece 326.

 

Made by Carl Zeiss Jena.

Gel pen

40x magnification

Microscope at IITA Bioscience Center for magnification of slide and chromosome counts. Photo by IITA.

Just posting to host this, so I can get an ID on these bugs.

 

If you know what this is, please give me a clue.

  

Scale bar is 50 micrometers

Processed With Darkroom

Source: E. C. Bolles Collection of Microscope Slides, San Diego Natural History Museum.

 

Image id: SDNHM_Microscope_Slides_007

Le pédoncule peut s'accrocher aux rochers, aux plantes ou toute autre surface immergée. Quand les cellules de la diatomée se divisent, lors de la multiplication végétative, le pédoncule se divise aussi, formant parfois des masses de pseudopodes branchés. La nuisance de ces formations n'est pas liée à la cellule elle-même, mais à leur production massive de pédoncules extracellulaires. Les substances extracellulaires polymériques (EPS), qui forment les pédoncules sont constituées initialement de polysaccharides et de protéines, formant une structure complexe, multi-couches qui résiste à la dégradation naturelle.

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