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File:Structural-diversity-of-supercoiled-DNA-ncomms9440-s6.ogv

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Original file(Ogg Theora video file, length 24 s, 1,056 × 1,056 pixels, 11.98 Mbps, file size: 34.28 MB)

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English: Implicit molecular dynamics simulation of a supercoiled DNA molecule with ΔLk=+1 (single extra link than needed for a relaxed state).
Български: Имплицитна симулация на молекулярна динамика на суперспирална ДНК молекула с ΔLk = + 1 (една допълнителна връзка, отколкото е необходима за отпуснато състояние).
Čeština: Implicitní simulace molekulární dynamiky šroubovice molekuly DNA s omezením ΔLk=+1 (jedna další vazba navíc, než by odpovídalo zcela volnému stavu).
Esperanto: Implicita simulado de la molekula dinamiko de supervolva DNA-molekulo kun ΔLk = + 1 (unu aldona ligo ol necesas por malstreĉita stato).
Français : Simulation de la dynamique moléculaire d'une molécule d'ADN enroulée, avec ΔLk=+1.
Русский: Неявная симуляция молекулярной динамики сверхскрученой молекулы ДНК с ΔLk=+1 (на одно дополнительное звено больше, чем нужно, для расслабленного состояния).
Українська: Імпліцитне моделювання молекулярної динаміки супер скрученої молекули ДНК з ΔLk=+1 (одна додаткова ланка, ніж потрібно для розслабленого стану).
Эрзянь: Молекулярной динамикань невтемась ДНК ΔLk = + 1 суперспиральной молекуланть марто.
Date
Source Video file from Irobalieva R, Fogg J, Catanese D, Sutthibutpong T, Chen M, Barker A, Ludtke S, Harris S, Schmid M, Chiu W, Zechiedrich L (2015). "Structural diversity of supercoiled DNA". Nature Communications. DOI:10.1038/ncomms9440. PMID 26455586. PMC: 4608029.
Author Irobalieva R, Fogg J, Catanese D, Sutthibutpong T, Chen M, Barker A, Ludtke S, Harris S, Schmid M, Chiu W, Zechiedrich L
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This file was transferred to Wikimedia Commons from PubMed Central by way of the Open Access Media Importer.
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Media of the day This file was selected as the media of the day for 28 February 2021. It was captioned as follows:
English: Implicit molecular dynamics simulation of a supercoiled DNA molecule with ΔLk=+1 (single extra link than needed for a relaxed state).
Other languages
Български: Имплицитна симулация на молекулярна динамика на суперспирална ДНК молекула с ΔLk = + 1 (една допълнителна връзка, отколкото е необходима за отпуснато състояние).
Čeština: Implicitní simulace molekulární dynamiky šroubovice molekuly DNA s omezením ΔLk=+1 (jedna další vazba navíc, než by odpovídalo zcela volnému stavu).
English: Implicit molecular dynamics simulation of a supercoiled DNA molecule with ΔLk=+1 (single extra link than needed for a relaxed state).
British English: Implicit molecular dynamics simulation of a supercoiled DNA molecule with ΔLk=+1 (single extra link than needed for a relaxed state).
Esperanto: Implicita simulado de la molekula dinamiko de supervolva DNA-molekulo kun ΔLk = + 1 (unu aldona ligo ol necesas por malstreĉita stato).
Français : Simulation de la dynamique moléculaire d'une molécule d'ADN enroulée, avec ΔLk=+1.
Эрзянь: Молекулярной динамикань невтемась ДНК ΔLk = + 1 суперспиральной молекуланть марто.
Русский: Неявная симуляция молекулярной динамики сверхскрученой молекулы ДНК с ΔLk=+1 (на одно дополнительное звено больше, чем нужно, для расслабленного состояния).
Українська: Імпліцитне моделювання молекулярної динаміки супер скрученої молекули ДНК з ΔLk=+1 (одна додаткова ланка, ніж потрібно для розслабленого стану).

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Date/TimeThumbnailDimensionsUserComment
current20:44, 30 October 201624 s, 1,056 × 1,056 (34.28 MB)Open Access Media Importer Bot (talk | contribs)Automatically uploaded media file from Open Access source. Please report problems or suggestions here.

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Format Bitrate Download Status Encode time
VP9 720P 2.56 Mbps Completed 20:27, 20 October 2018 1 min 27 s
Streaming 720p (VP9) Not ready Unknown status
VP9 480P 1.28 Mbps Completed 20:27, 20 October 2018 57 s
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VP9 360P 640 kbps Completed 20:27, 20 October 2018 49 s
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VP9 240P 321 kbps Completed 20:26, 20 October 2018 29 s
Streaming 240p (VP9) 322 kbps Completed 00:16, 17 December 2023 1.0 s
WebM 360P 501 kbps Completed 20:44, 30 October 2016 29 s
Streaming 144p (MJPEG) 1.04 Mbps Completed 14:38, 19 November 2023 2.0 s

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