Category:Videos of classical mechanics
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Subcategories
This category has the following 16 subcategories, out of 16 total.
Media in category "Videos of classical mechanics"
The following 189 files are in this category, out of 189 total.
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01.Опит на Тисанди.ogv 15 s, 1,920 × 1,080; 11.4 MB
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192447main 017 law of inertia.ogv 3 min 8 s, 320 × 240; 10.47 MB
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192448main 018 force equals mass time.ogv 4 min 0 s, 320 × 240; 12.49 MB
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192449main 019 law of action.ogv 3 min 1 s, 320 × 240; 9.32 MB
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A-Combined-In-Vitro-Imaging-and-Multi-Scale-Modeling-System-for-Studying-the-Role-of-Cell-Matrix-pone.0148254.s004.ogv 5.7 s, 1,920 × 1,084; 5.16 MB
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A-Combined-In-Vitro-Imaging-and-Multi-Scale-Modeling-System-for-Studying-the-Role-of-Cell-Matrix-pone.0148254.s005.ogv 5.7 s, 1,920 × 1,084; 1.48 MB
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A-Tubular-Biomaterial-Construct-Exhibiting-a-Negative-Poissons-Ratio-pone.0155681.s001.ogv 30 s, 640 × 480; 1.53 MB
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A-Tubular-Biomaterial-Construct-Exhibiting-a-Negative-Poissons-Ratio-pone.0155681.s002.ogv 22 s, 640 × 480; 1.63 MB
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A-Validated-Multiscale-In-Silico-Model-for-Mechano-sensitive-Tumour-Angiogenesis-and-Growth-pcbi.1005259.s018.ogv 12 s, 1,920 × 1,004; 9.71 MB
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A-Validated-Multiscale-In-Silico-Model-for-Mechano-sensitive-Tumour-Angiogenesis-and-Growth-pcbi.1005259.s019.ogv 12 s, 1,920 × 1,004; 9.17 MB
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Automated-Design-of-Complex-Dynamic-Systems-pone.0086696.s001.ogv 6.0 s, 458 × 422; 828 KB
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Automated-Design-of-Complex-Dynamic-Systems-pone.0086696.s002.ogv 6.0 s, 462 × 422; 1.14 MB
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Automated-Design-of-Complex-Dynamic-Systems-pone.0086696.s003.ogv 6.0 s, 404 × 370; 1.14 MB
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Automated-Design-of-Complex-Dynamic-Systems-pone.0086696.s004.ogv 6.7 s, 404 × 370; 1.17 MB
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BehoudImpulsmoment.ogv 18 s, 384 × 288; 626 KB
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Causal-Inference-in-Multisensory-Heading-Estimation-pone.0169676.s006.ogv 43 s, 540 × 960; 15.77 MB
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Collective-Signal-Processing-in-Cluster-Chemotaxis-Roles-of-Adaptation-Amplification-and-Co-pcbi.1005008.s001.ogv 1 min 3 s, 640 × 480; 12.89 MB
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Collective-Signal-Processing-in-Cluster-Chemotaxis-Roles-of-Adaptation-Amplification-and-Co-pcbi.1005008.s002.ogv 1 min 3 s, 928 × 306; 11.29 MB
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Coordination-of-Cellular-Dynamics-Contributes-to-Tooth-Epithelium-Deformations-pone.0161336.s009.ogv 45 s, 960 × 720; 7.02 MB
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Coordination-of-Cellular-Dynamics-Contributes-to-Tooth-Epithelium-Deformations-pone.0161336.s010.ogv 50 s, 1,006 × 968; 12.7 MB
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Coordination-of-Cellular-Dynamics-Contributes-to-Tooth-Epithelium-Deformations-pone.0161336.s011.ogv 27 s, 1,354 × 540; 10.08 MB
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Coordination-of-Cellular-Dynamics-Contributes-to-Tooth-Epithelium-Deformations-pone.0161336.s012.ogv 20 s, 1,024 × 1,024; 2.78 MB
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Coordination-of-Cellular-Dynamics-Contributes-to-Tooth-Epithelium-Deformations-pone.0161336.s013.ogv 30 s, 715 × 720; 12.23 MB
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Density-Gradient-Mediated-Band-Extraction-of-Leukocytes-from-Whole-Blood-Using-Centrifugo-Pneumatic-pone.0155545.s001.ogv 2 min 43 s, 1,280 × 720; 17.39 MB
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Diffusion v2 20101120.ogv 1 min 10 s, 720 × 404; 616 KB
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Doing-It-Your-Way-How-Individual-Movement-Styles-Affect-Action-Prediction-pone.0165297.s004.ogv 1.0 s, 1,280 × 800; 251 KB
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Dynamikum Gekoppelte Pendel.ogv 7.8 s, 640 × 480; 1.09 MB
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Evidence-for-Ventilation-through-Collective-Respiratory-Movements-in-Giant-Honeybee-(Apis-dorsata)-pone.0157882.s004.ogv 1 min 18 s, 1,024 × 576; 7.68 MB
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Example 1D Kinematics constant acceleration.ogv 9 min 28 s, 720 × 480; 67.48 MB
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Example coefficient of friction, Newton's 2nd, Newton's 3rd laws.ogv 11 min 28 s, 720 × 480; 71.33 MB
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Example Newton's 2nd in 1D, Thrust and Drag.ogv 10 min 19 s, 720 × 480; 69.14 MB
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Example uniform circular motion orbit of moon.ogv 9 min 32 s, 720 × 480; 67.67 MB
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Example vertical projectile motion.ogv 10 min 2 s, 720 × 480; 67.16 MB
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Fast-online-deconvolution-of-calcium-imaging-data-pcbi.1005423.s002.ogv 22 s, 800 × 400; 314 KB
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Fast-online-deconvolution-of-calcium-imaging-data-pcbi.1005423.s003.ogv 1 min 8 s, 1,080 × 432; 1.9 MB
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Feeding-Behavior-of-Subadult-Sixgill-Sharks-(Hexanchus-griseus)-at-a-Bait-Station-pone.0156730.s002.ogv 1 min 58 s, 720 × 480; 25.44 MB
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Feeding-Behavior-of-Subadult-Sixgill-Sharks-(Hexanchus-griseus)-at-a-Bait-Station-pone.0156730.s003.ogv 33 s, 720 × 480; 13.07 MB
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Feeding-Behavior-of-Subadult-Sixgill-Sharks-(Hexanchus-griseus)-at-a-Bait-Station-pone.0156730.s004.ogv 50 s, 641 × 484; 21.87 MB
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Feeding-Behavior-of-Subadult-Sixgill-Sharks-(Hexanchus-griseus)-at-a-Bait-Station-pone.0156730.s005.ogv 1 min 0 s, 641 × 484; 21.57 MB
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First law.ogv 6 min 54 s, 320 × 240; 15.88 MB
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First-Person-Perspective-Virtual-Body-Posture-Influences-Stress-A-Virtual-Reality-Body-Ownership-pone.0148060.s003.ogv 1 min 38 s, 854 × 480; 22.69 MB
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FISICO-Fast-Image-SegmentatIon-COrrection-pone.0156035.s001.ogv 1 min 47 s, 712 × 480; 12.91 MB
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Flapping-before-Flight-High-Resolution-Three-Dimensional-SkeletalKinematics-of-Wings-and-Legs-pone.0153446.s004.ogv 8.4 s, 1,440 × 1,080; 1.85 MB
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Fluctuating-Nonlinear-Spring-Model-of-Mechanical-Deformation-of-Biological-Particles-pcbi.1004729.s011.ogv 27 s, 1,281 × 992; 26.85 MB
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Forelimb-Kinematics-of-Rats-Using-XROMM-with-Implications-for-Small-Eutherians-and-Their-Fossil-pone.0149377.s010.ogv 1 min 47 s, 1,280 × 720; 32.74 MB
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Global-Neuromagnetic-Cortical-Fields-Have-Non-Zero-Velocity-pone.0148413.s003.ogv 9.4 s, 640 × 400; 803 KB
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Global-Neuromagnetic-Cortical-Fields-Have-Non-Zero-Velocity-pone.0148413.s004.ogv 35 s, 640 × 400; 28.69 MB
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Global-Neuromagnetic-Cortical-Fields-Have-Non-Zero-Velocity-pone.0148413.s005.ogv 34 s, 640 × 400; 11.71 MB
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Happy vs. Sad Ball.webm 15 s, 1,280 × 720; 4.38 MB
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Honeycomb-Actuators-Inspired-by-the-Unfolding-of-Ice-Plant-Seed-Capsules-pone.0163506.s001.ogv 6.1 s, 800 × 600; 7.99 MB
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Honeycomb-Actuators-Inspired-by-the-Unfolding-of-Ice-Plant-Seed-Capsules-pone.0163506.s002.ogv 12 s, 824 × 658; 729 KB
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Honeycomb-Actuators-Inspired-by-the-Unfolding-of-Ice-Plant-Seed-Capsules-pone.0163506.s003.ogv 9.8 s, 1,024 × 683; 1.08 MB
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Honeycomb-Actuators-Inspired-by-the-Unfolding-of-Ice-Plant-Seed-Capsules-pone.0163506.s004.ogv 7.3 s, 4,672 × 3,104; 23.3 MB
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Invagination-of-Ectodermal-Placodes-Is-Driven-by-Cell-Intercalation-Mediated-Contraction-of-the-pbio.1002405.s009.ogv 3.9 s, 1,290 × 1,690; 4.26 MB
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Lariat Chain (4230645668).ogv 1 min 1 s, 1,280 × 720; 31.92 MB
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Long-term-trends-in-the-honeybee-whooping-signal-revealed-by-automated-detection-pone.0171162.s017.ogv 4 min 5 s, 1,920 × 1,080; 31.56 MB
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Long-term-trends-in-the-honeybee-whooping-signal-revealed-by-automated-detection-pone.0171162.s018.ogv 13 s, 1,920 × 1,080; 47.87 MB
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Modelling-Chemotactic-Motion-of-Cells-in-Biological-Tissues-pone.0165570.s001.ogv 4.1 s, 672 × 476; 998 KB
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Modelling-Chemotactic-Motion-of-Cells-in-Biological-Tissues-pone.0165570.s002.ogv 4.2 s, 672 × 476; 248 KB
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Modelling-Chemotactic-Motion-of-Cells-in-Biological-Tissues-pone.0165570.s003.ogv 6.8 s, 672 × 476; 913 KB
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Modelling-Chemotactic-Motion-of-Cells-in-Biological-Tissues-pone.0165570.s004.ogv 4.8 s, 420 × 260; 159 KB
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Modelling-Chemotactic-Motion-of-Cells-in-Biological-Tissues-pone.0165570.s005.ogv 4.8 s, 420 × 260; 162 KB
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Modelling-Chemotactic-Motion-of-Cells-in-Biological-Tissues-pone.0165570.s006.ogv 6.8 s, 624 × 256; 9.42 MB
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Newtons cradle animation.ogv 26 s, 1,280 × 720; 6.08 MB
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Newton’s cradle slo mo.webm 1 min 8 s, 1,280 × 720; 15.49 MB
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On-Emulation-of-Flueric-Devices-in-Excitable-Chemical-Medium-pone.0168267.s001.ogv 1 min 12 s, 300 × 300; 742 KB
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Oscillatory motion acceleration.ogv 28 s, 640 × 480; 3.52 MB
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Palais de la découverte - Billard électrostatique - 001.webm 16 s, 1,920 × 1,080; 27.89 MB
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Palais de la découverte - Condensateur - 001.webm 4.7 s, 1,920 × 1,080; 6.21 MB
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Palais de la découverte - Oeuf électrique - 001.webm 49 s, 1,920 × 1,080; 34.96 MB
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Peridynamic-Modeling-of-Ruptures-in-Biomembranes-pone.0165947.s003.ogv 21 s, 512 × 512; 1.56 MB
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Peridynamic-Modeling-of-Ruptures-in-Biomembranes-pone.0165947.s004.ogv 1 min 22 s, 854 × 480; 1.73 MB
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Peridynamic-Modeling-of-Ruptures-in-Biomembranes-pone.0165947.s005.ogv 1 min 32 s, 854 × 480; 1.38 MB
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Physicsworks.ogv 3 min 23 s, 320 × 240; 6.3 MB
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Pirmasens FoucaultschesPendel.ogv 6.9 s, 400 × 508; 593 KB
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Pirmasens KeltischerWackenstein.ogv 7.1 s, 640 × 480; 1.28 MB
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Prediction-of-Potato-Crop-Yield-Using-Precision-Agriculture-Techniques-pone.0162219.s002.ogv 2 min 44 s, 718 × 404; 80.37 MB
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Primasens RotierenderRing.ogv 32 s, 384 × 368; 2.99 MB
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Prof Walter Lewin Circular Motion.ogv 8 min 34 s, 400 × 300; 33.81 MB
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Secondlaw.ogv 7 min 45 s, 320 × 240; 16.65 MB
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Simple-and-Versatile-3D-Printed-Microfluidics-Using-Fused-Filament-Fabrication-pone.0152023.s010.ogv 16 s, 320 × 301; 9.94 MB
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Simple-and-Versatile-3D-Printed-Microfluidics-Using-Fused-Filament-Fabrication-pone.0152023.s012.ogv 1.5 s, 512 × 512; 4.03 MB
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Soft-Modular-Robotic-Cubes-Toward-Replicating-Morphogenetic-Movements-of-the-Embryo-pone.0169179.s014.ogv 2 min 41 s, 1,920 × 1,080; 81.25 MB
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Spinning hardboiled and raw eggs 01-fr.ogv 42 s, 1,920 × 1,080; 11.98 MB
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Spinning hardboiled and raw eggs 01.ogv 41 s, 1,920 × 1,080; 11.34 MB
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Spinning hardboiled and raw eggs 02.ogv 26 s, 1,920 × 1,080; 10.23 MB
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Spinning hardboiled egg 01.ogv 29 s, 1,920 × 1,080; 6.27 MB
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Stars over Africa.ogv 29 s, 840 × 560; 11.78 MB
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Stars Over Cape Town.webm 13 s, 1,920 × 1,080; 89.6 MB
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Structural-Transition-from-Helices-to-Hemihelices-pone.0093183.s007.ogv 18 s, 1,280 × 960; 2.19 MB
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Tensile-Forces-Originating-from-Cancer-Spheroids-Facilitate-Tumor-Invasion-pone.0156442.s015.ogv 2.0 s, 1,024 × 1,024; 2.56 MB
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Tensile-Forces-Originating-from-Cancer-Spheroids-Facilitate-Tumor-Invasion-pone.0156442.s016.ogv 15 s, 872 × 872; 1.89 MB
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The-Formation-of-Social-Conventions-in-Real-Time-Environments-pone.0151670.s001.ogv 1 min 0 s, 1,920 × 1,080; 6.34 MB
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The-Formation-of-Social-Conventions-in-Real-Time-Environments-pone.0151670.s002.ogv 1 min 0 s, 1,920 × 1,080; 6.3 MB
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Thirdlaw.ogv 1 min 49 s, 320 × 240; 4.82 MB
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Three-Dimensional-Mid-Air-Acoustic-Manipulation-by-Ultrasonic-Phased-Arrays-pone.0097590.s001.ogv 2 min 11 s, 640 × 360; 19.43 MB
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Torsion-pendulum.ogv 13 s, 320 × 240; 650 KB
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Traffic-Experiment-Reveals-the-Nature-of-Car-Following-pone.0094351.s001.ogv 35 s, 640 × 360; 6.45 MB
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Traffic-Experiment-Reveals-the-Nature-of-Car-Following-pone.0094351.s002.ogv 31 s, 640 × 360; 1.41 MB
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Unendlichkeitsmaschine.ogv 10 s, 240 × 650; 1.23 MB