Category:Videos of classical mechanics
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Subcategories
This category has the following 16 subcategories, out of 16 total.
C
D
F
- Videos of mechanical forces (1 F)
- Videos of free fall (3 F)
K
L
M
P
- Videos of planetary rings (11 F)
R
S
- Videos of simple machines (5 F)
- Videos of statics (1 F)
V
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