Category:Optical tweezers
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instrument using a highly focused laser to provide an attractive or repulsive force (on the order of piconewtons) to hold and move microscopic dielectric objects similar to tweezers | |||||
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Media in category "Optical tweezers"
The following 90 files are in this category, out of 90 total.
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Achievable RH in cold Optical Tweezer cell.pdf 1,752 × 1,239; 41 KB
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Citation Graph of Optical Tweezers in Studies of Red Blood Cells - 1.png 859 × 716; 321 KB
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Control-and-Manipulation-of-Pathogens-with-an-Optical-Trap-for-Live-Cell-Imaging-of-Intercellular-pone.0015215.s002.ogv 4.8 s, 1,344 × 1,024; 8.65 MB
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Control-and-Manipulation-of-Pathogens-with-an-Optical-Trap-for-Live-Cell-Imaging-of-Intercellular-pone.0015215.s007.ogv 32 s, 1,525 × 1,140; 10.49 MB
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Femtomolar Optical Tweezers (5881942888).jpg 2,007 × 1,659; 757 KB
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Generic Optical Tweezer Diagram.jpg 869 × 830; 139 KB
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Generic Optical Tweezers Diagram-ru.png 666 × 662; 35 KB
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Generic Optical Tweezers Diagram-ru.svg 741 × 673; 5 KB
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In-vivo-X-ray-elemental-imaging-of-single-cell-model-organisms-manipulated-by-laser-based-optical-srep09049-s2.ogv 1 min 27 s, 426 × 240; 4.7 MB
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In-vivo-X-ray-elemental-imaging-of-single-cell-model-organisms-manipulated-by-laser-based-optical-srep09049-s3.ogv 1 min 20 s, 426 × 240; 1.97 MB
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Levitated nanoparticle.jpg 655 × 436; 46 KB
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LevitatedDiamond GWMorley.jpg 1,518 × 1,135; 354 KB
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Levitating nanodiamond GWMorley.jpg 300 × 399; 18 KB
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Nanophotonic-detection-of-freely-interacting-molecules-on-a-single-influenza-virus-srep12087-s2.ogv 14 s, 640 × 480; 2.09 MB
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Nanophotonic-detection-of-freely-interacting-molecules-on-a-single-influenza-virus-srep12087-s3.ogv 16 s, 640 × 480; 1.94 MB
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Optical Trap As a Spring.jpg 1,204 × 723; 167 KB
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Optical trap focused.svg 990 × 640; 75 KB
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Optical trap principle.svg 489 × 473; 50 KB
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Optical Trap Ray Optics Explanation.jpg 1,136 × 748; 228 KB
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Optical trap unfocused.svg 990 × 640; 58 KB
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Optical tweezers and RNA-polymerase ru.png 537 × 280; 34 KB
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Optical tweezers and RNA-polymerase uk.gif 2,241 × 1,327; 291 KB
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Optical tweezers rays1.JPG 332 × 335; 11 KB
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Optical tweezers rays2.JPG 494 × 316; 18 KB
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Optical tweezers rays3.PNG 499 × 561; 11 KB
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Optical tweezers rays4.PNG 555 × 528; 13 KB
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Optical tweezers rays5.PNG 373 × 358; 7 KB
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Optical-micromanipulation-of-nanoparticles-and-cells-inside-living-zebrafish-ncomms10974-s10.ogv 12 s, 180 × 128; 347 KB
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Optical-micromanipulation-of-nanoparticles-and-cells-inside-living-zebrafish-ncomms10974-s11.ogv 29 s, 1,024 × 396; 9.33 MB
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Optical-micromanipulation-of-nanoparticles-and-cells-inside-living-zebrafish-ncomms10974-s12.ogv 59 s, 1,024 × 768; 4.32 MB
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Optical-micromanipulation-of-nanoparticles-and-cells-inside-living-zebrafish-ncomms10974-s2.ogv 15 s, 1,341 × 393; 4.9 MB
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Optical-micromanipulation-of-nanoparticles-and-cells-inside-living-zebrafish-ncomms10974-s3.ogv 12 s, 960 × 309; 904 KB
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Optical-micromanipulation-of-nanoparticles-and-cells-inside-living-zebrafish-ncomms10974-s4.ogv 46 s, 720 × 576; 3.47 MB
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Optical-micromanipulation-of-nanoparticles-and-cells-inside-living-zebrafish-ncomms10974-s5.ogv 21 s, 1,024 × 768; 798 KB
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Optical-micromanipulation-of-nanoparticles-and-cells-inside-living-zebrafish-ncomms10974-s6.ogv 21 s, 1,024 × 768; 11.56 MB
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Optical-micromanipulation-of-nanoparticles-and-cells-inside-living-zebrafish-ncomms10974-s7.ogv 13 s, 1,024 × 768; 6.98 MB
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Optical-micromanipulation-of-nanoparticles-and-cells-inside-living-zebrafish-ncomms10974-s8.ogv 9.8 s, 440 × 268; 969 KB
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Optical-micromanipulation-of-nanoparticles-and-cells-inside-living-zebrafish-ncomms10974-s9.ogv 7.7 s, 512 × 512; 132 KB
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RH plot.jpg 627 × 467; 163 KB
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Sam-oam-interaction.png 1,085 × 443; 315 KB
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Table chamber GWMorley.jpg 5,184 × 3,456; 8.62 MB
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Table GWMorley.jpg 5,184 × 3,456; 8.26 MB
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The-tethering-of-chromatin-to-the-nuclear-envelope-supports-nuclear-mechanics-ncomms8159-s10.ogv 28 s, 960 × 720; 2.9 MB
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The-tethering-of-chromatin-to-the-nuclear-envelope-supports-nuclear-mechanics-ncomms8159-s2.ogv 29 s, 960 × 720; 2.19 MB
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The-tethering-of-chromatin-to-the-nuclear-envelope-supports-nuclear-mechanics-ncomms8159-s3.ogv 29 s, 960 × 720; 2.8 MB
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The-tethering-of-chromatin-to-the-nuclear-envelope-supports-nuclear-mechanics-ncomms8159-s4.ogv 29 s, 960 × 720; 2.73 MB
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The-tethering-of-chromatin-to-the-nuclear-envelope-supports-nuclear-mechanics-ncomms8159-s5.ogv 29 s, 960 × 720; 2.48 MB
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The-tethering-of-chromatin-to-the-nuclear-envelope-supports-nuclear-mechanics-ncomms8159-s6.ogv 29 s, 960 × 720; 2.17 MB
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The-tethering-of-chromatin-to-the-nuclear-envelope-supports-nuclear-mechanics-ncomms8159-s7.ogv 29 s, 960 × 720; 2.3 MB
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The-tethering-of-chromatin-to-the-nuclear-envelope-supports-nuclear-mechanics-ncomms8159-s8.ogv 29 s, 960 × 720; 2.67 MB
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The-tethering-of-chromatin-to-the-nuclear-envelope-supports-nuclear-mechanics-ncomms8159-s9.ogv 29 s, 960 × 720; 2.03 MB
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Trapped diamond July 2016 GWMorley.jpg 3,456 × 2,304; 1.01 MB
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Virus-Enrichment-for-Single-Virus-Infection-by-Using-3D-Insulator-Based-Dielectrophoresis-pone.0094083.s002.ogv 40 s, 1,440 × 1,080; 1.26 MB
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