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3.05mm diameter, see chart for thickness Material: Copper (Cu), Copper-Rhodium (Cu-Rh), Nickel (Ni), Gold…
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3.05mm diameter, see chart for thickness Material: Copper (Cu), Copper-Rhodium (Cu-Rh), Nickel (Ni), Gold (Au), Molybdenum (Mo)
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3.05mm diameter, see chart for thickness Material: Copper (Cu), Copper-Rhodium (Cu-Rh), Nickel (Ni), Gold…
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3.05mm diameter, see chart for thickness Material: Copper (Cu), Copper-Rhodium (Cu-Rh), Nickel (Ni), Gold (Au), Molybdenum (Mo)
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3.05mm diameter, see chart for thickness Material: Copper (Cu), Copper-Rhodium (Cu-Rh), Nickel (Ni), Gold…
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3.05mm diameter, see chart for thickness Material: Copper (Cu), Copper-Rhodium (Cu-Rh), Nickel (Ni), Gold (Au), Molybdenum (Mo)
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3.05mm diameter, see chart for thickness Material: Copper (Cu), Copper-Rhodium (Cu-Rh), Nickel (Ni), Gold…
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3.05mm diameter, see chart for thickness Material: Copper (Cu), Copper-Rhodium (Cu-Rh), Nickel (Ni), Gold (Au), Molybdenum (Mo)
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3.05mm diameter, see chart for thickness Material: Copper (Cu), Copper-Rhodium (Cu-Rh), Nickel (Ni), Gold…
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3.05mm diameter, see chart for thickness Material: Copper (Cu), Copper-Rhodium (Cu-Rh), Nickel (Ni), Gold (Au), Molybdenum (Mo)
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Thickness of gold foilThese newly developed ultrastable gold supports for electron cryomicroscopy will reduce the…
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Thickness of gold foilThese newly developed ultrastable gold supports for electron cryomicroscopy will reduce the movement of frozen specimens during imaging. This improves image contrast and quality leading to better 3D reconstructions with less data. During imaging at cryo-temperatures, traditional carbon supports move, particularly at the beginning of irradiation. This movement blurs images and makes […]
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Thickness of gold foilThese newly developed ultrastable gold supports for electron cryomicroscopy will reduce the…
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Thickness of gold foilThese newly developed ultrastable gold supports for electron cryomicroscopy will reduce the movement of frozen specimens during imaging. This improves image contrast and quality leading to better 3D reconstructions with less data. During imaging at cryo-temperatures, traditional carbon supports move, particularly at the beginning of irradiation. This movement blurs images and makes […]
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Thickness of gold foilThese newly developed ultrastable gold supports for electron cryomicroscopy will reduce the…
Show more (+)
Thickness of gold foilThese newly developed ultrastable gold supports for electron cryomicroscopy will reduce the movement of frozen specimens during imaging. This improves image contrast and quality leading to better 3D reconstructions with less data. During imaging at cryo-temperatures, traditional carbon supports move, particularly at the beginning of irradiation. This movement blurs images and makes […]
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X05-A50Q05-double-brown
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