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Glowing Flowers
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Student teams learn about engineering design of green fluorescent proteins (GFPs) and their use in medical research, including stem cell research. They simulate the use of GFPs by adding fluorescent dye to water and letting a flower or plant to transport the dye throughout its structure. Students apply their knowledge of GFPs to engineering applications in the medical, environmental and space exploration fields. Due to the fluorescing nature of the dye, plant life of any color, light or dark, can be used unlike dyes that can only be seen in visible light.

Subject:
Applied Science
Engineering
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Christie Chatterley
Janet Yowell
Malinda Schaefer Zarske
Date Added:
10/14/2015
Micrograph Bacillus cereus 48 h endospore 1000X p000061
Unrestricted Use
CC BY
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This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is Bacillus cereus cells were grown in broth culture for 48 hours at 30 degrees Celsius. The cells were heat-fixed to a slide and stained with malachite green (endospores) and safranin red (vegetative cells) prior to visualization.Image credit: Emily Fox

Subject:
Biology
Environmental Science
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
05/25/2022
Micrograph Bacillus megaterium 5d endospore 1000X p000066
Unrestricted Use
CC BY
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This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is Bacillus megaterium cells were grown in broth culture for 5 days at 30 degrees Celsius. The cells were heat-fixed to a slide and stained with malachite green (endospores) and safranin red (vegetative cells) prior to visualization.Image credit: Emily Fox

Subject:
Biology
Environmental Science
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
05/25/2022
Micrograph Bacillus subtilis 48h endospore 1000X p000063
Unrestricted Use
CC BY
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This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is Bacillus subtilis cells were grown in broth culture for 48 hours at 30 degrees Celsius. The cells were heat-fixed to a slide and stained with malachite green (endospores) and safranin red (vegetative cells) prior to visualization.Image credit: Emily Fox

Subject:
Biology
Environmental Science
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
05/25/2022
Micrograph Bacillus subtilis 5d endospore 1000X p000064
Unrestricted Use
CC BY
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0.0 stars

This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is Bacillus subtilis cells were grown in broth culture for 5 days at 30 degrees Celsius. The cells were heat-fixed to a slide and stained with malachite green (endospores) and safranin red (vegetative cells) prior to visualization.Image credit: Emily Fox

Subject:
Biology
Environmental Science
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
05/25/2022
Micrograph Bacillus subtilis Gram stain 1000x p000010
Unrestricted Use
CC BY
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This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is Bacillus subtilis cells grown in broth culture overnight at 30 degrees Celsius. The cells were heat-fixed to a slide Gram stained prior to visualization.Image credit: Emily Fox

Subject:
Biology
Environmental Science
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
02/12/2022
Micrograph Bacillus subtilis Gram stain 100x p000012
Unrestricted Use
CC BY
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This micrograph was taken at 100X total magnifcation on a brightfield microscope. The subject is Bacillus subtilis cells grown in broth culture overnight at 30 degrees Celsius. The cells were heat-fixed to a slide Gram stained prior to visualization.Image credit: Emily Fox

Subject:
Biology
Environmental Science
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
02/12/2022
Micrograph Candida albicans Gram stain 1000x p000024
Unrestricted Use
CC BY
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This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is Candida albicans cells grown in broth culture at 30 degrees Celsius. The cells were heat-fixed to a slide and Gram stained prior to visualization.Image credit: Emily Fox

Subject:
Biology
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
06/03/2022
Micrograph Candida albicans Gram stain 1000x p000025
Unrestricted Use
CC BY
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This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is Candida albicans cells grown in broth culture at 30 degrees Celsius. The cells were heat-fixed to a slide and Gram stained prior to visualization.Image credit: Emily Fox

Subject:
Biology
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
06/03/2022
Micrograph Candida albicans Gram stain 1000x p000027
Unrestricted Use
CC BY
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This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is Candida albicans cells grown on YPD agar at 30 degrees Celsius. The cells were heat-fixed to a slide and Gram stained prior to visualization.Image credit: Emily Fox

Subject:
Biology
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
06/03/2022
Micrograph Candida albicans Gram stain 100x p000021
Unrestricted Use
CC BY
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This micrograph was taken at 100X total magnifcation on a brightfield microscope. The subject is Candida albicans cells grown in broth culture at 30 degrees Celsius. The cells were heat-fixed to a slide and Gram stained prior to visualization.Image credit: Emily Fox

Subject:
Biology
Health, Medicine and Nursing
Material Type:
Activity/Lab
Assessment
Author:
Emily Fox
Date Added:
06/03/2022
Micrograph Candida albicans Gram stain 400x p000022
Unrestricted Use
CC BY
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This micrograph was taken at 400X total magnifcation on a brightfield microscope. The subject is Candida albicans cells grown in broth culture at 30 degrees Celsius. The cells were heat-fixed to a slide and Gram stained prior to visualization.Image credit: Emily Fox

Subject:
Biology
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
06/03/2022
Micrograph Candida albicans Gram stain 400x p000023
Unrestricted Use
CC BY
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This micrograph was taken at 400X total magnifcation on a brightfield microscope. The subject is Candida albicans cells grown in broth culture at 30 degrees Celsius. The cells were heat-fixed to a slide and Gram stained prior to visualization.Image credit: Emily Fox

Subject:
Biology
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
06/03/2022
Micrograph Coccus Gram stain 1000x p000031
Unrestricted Use
CC BY
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This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is unidentified coccus cells from a contaminant colony grown on nutrient agar at 30 degrees Celsius. The cells were heat-fixed to a slide and Gram stained prior to visualization.Image credit: Emily Fox

Subject:
Biology
Environmental Science
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
06/03/2022
Micrograph Enterobacter aerogenes gram stain 1000X p000175
Unrestricted Use
CC BY
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This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is Enterobacter aerogenes cells grown in broth culture overnight at 37 degrees Celsius. The cells were heat-fixed to a slide and Gram stained prior to visualization.Image credit: Emily Fox

Subject:
Biology
Environmental Science
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
08/22/2022
Micrograph Escherichia coli 48h endospore 1000X p000067
Unrestricted Use
CC BY
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This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is Escherichia coli cells were grown in broth culture for 48 hours at 30 degrees Celsius. The cells were heat-fixed to a slide and stained with malachite green (endospores) and safranin red (vegetative cells) prior to visualization. No endospores are seen, as E. coli does not form endospores.Image credit: Emily Fox

Subject:
Biology
Environmental Science
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
05/25/2022
Micrograph Escherichia coli 5d endospore 1000X p000068
Unrestricted Use
CC BY
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0.0 stars

This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is Escherichia coli cells were grown in broth culture for 5 days at 30 degrees Celsius. The cells were heat-fixed to a slide and stained with malachite green (endospores) and safranin red (vegetative cells) prior to visualization. No endospores are seen, as E. coli does not form endospores.Image credit: Emily Fox

Subject:
Biology
Environmental Science
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
05/25/2022
Micrograph Escherichia coli Gram stain 1000x p000007
Unrestricted Use
CC BY
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This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is Escherichia coli cells grown in broth culture overnight at 37 degrees Celsius. The cells were heat-fixed to a slide and Gram stained prior to visualization.Image credit: Emily Fox

Subject:
Biology
Environmental Science
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
06/03/2022
Micrograph Escherichia coli Gram stain 100x p000008
Unrestricted Use
CC BY
Rating
0.0 stars

This micrograph was taken at 400X total magnifcation on a brightfield microscope. The subject is Escherichia coli cells grown in broth culture overnight at 37 degrees Celsius. The cells were heat-fixed to a slide and Gram stained prior to visualization.Image credit: Emily Fox

Subject:
Biology
Environmental Science
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
06/03/2022
Micrograph Escherichia coli and Mycobacterium smegmatis acid fast 1000X p000069
Unrestricted Use
CC BY
Rating
0.0 stars

This micrograph was taken at 1000X total magnifcation on a brightfield microscope. The subject is Escherichia coli cells and Mycobacterium smegmatis cells grown separately in broth culture at 37 degrees Celsius. The cells were heat-fixed to a slide and acid-fast stained using the Ziehl-Neelsen method prior to visualization. M. smegmatis (acid-fast) stains pink with carbol fuchsin. E.coli (non-acid-fast) stains blue with methylene blue counterstain.Image credit: Emily Fox

Subject:
Biology
Environmental Science
Health, Medicine and Nursing
Material Type:
Diagram/Illustration
Author:
Emily Fox
Date Added:
05/25/2022