Catalogue of IUCr video files


au0185sup1.mpg
Supplementary material
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eo5001sup1.avi
Video clip showing displacement of atoms in the pyrite structure
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eo5001sup2.avi
Video clip showing displacement of atoms in the garnet structure
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wx5023sup1.avi
Movie 1: the planar symmetry group
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wx5023sup2.avi
Movie 2: the affine-extended icosahedral group
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wx5023sup3.avi
Movie 3: the trimeric protein spikes
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wx5023sup4.avi
Movie 4: the [beta]-hairpins of the capsid proteins
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wx5023sup5.avi
Movie 5: the green points of the capsid proteins
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td5013sup2.avi
Uncorrected.avi - beam position while beam is tilted with no compensation
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td5013sup3.avi
Corrected.avi - beam position with compensation
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kd5026sup1.mov
Interactive slideshow version of Fig. 8(a) showing the cationic network on (111) of fluorite (black dashed lines: fluorite unit cell)
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kd5026sup2.mov
Interactive slideshow version of Fig. 8(b) showing the AB3 layer parallel to (011) of weberite (red dotted lines: weberite unit cell; blue spheres: A cations; yellow spheres: B cations)
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kd5026sup3.mov
Interactive slideshow version of Fig. 8(c) showing the AB3 layer parallel to (011) of weberite (red dotted lines: weberite unit cell; blue spheres: A cations; yellow spheres: B cations)
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kd5026sup4.mov
Axial transformation of pyrochlore to weberite (black dashed lines: fluorite cell; blue lines: double pyrochlore cells; red dotted lines: weberite lattice: grenn shadow (011)w and (111)p
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sn5086sup5.avi
Supplementary material
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ws5073sup29.mov
Changes in behaviour of the sinusoidal betaine and water layers
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ws5073sup30.mov
Compression of structure viewed along the c axis
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ws5073sup31.mov
Response of SPM to pressure viewed along the b axis
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gw5012sup11.mov
Supplementary material
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so5053sup1.mov
Supplementary material
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gr2147sup2.mpg
Example of a movie created in MPEG format using Molray
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jn0096sup1.avi
Optimization of a polyalanine four-helical bundle starting from a random atom distribution using diffraction data to 2 Å resolution.
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dz5073sup1.mov
Conformational changes in L29F Mb from 100 ps to 3.16 μs after photolysis of CO. Coordinates were calculated by interpolation between the seven photolyzed models on a logarithmic time-scale.
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fw5105sup2.avi
Supplementary Movie 1. Series of photographs taken to detect the boundaries of the metastable domain of perdeuterated [gamma]-crystallin E recorded over 10 d.
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fw5105sup3.avi
Supplementary Movie 2. Improved growth of the crystal of urate oxidase complexed with 8-azaxanthin corresponding to the equilibration step at 293 K recorded over 2 d.
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fw5105sup4.avi
Supplementary Movie 3. The processes for micromanipulation: removal of crystals.
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fw5105sup5.avi
Supplementary Movie 4. The processes for micromanipulation: addition of crystals.
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fw5105sup6.avi
Supplementary Movie 5. The processes for micromanipulation: precise positioning of the top of the capillary in the crystallization solution.
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gm5010sup1.mov
Changes undergone by the lattice in crystals of bovine F1-ATPase during dehydration.
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gm5010sup2.mov
Macroscopic changes undergone by a crystal of chromatin-remodelling complex.
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ea5122sup2.wmv
Supplementary material
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gx5193sup1.mov
Conformational dynamics of BthNK between asymmetric open, semiclosed and closed form. In the semiclosed and closed forms, the bound ligands are also shown in stick representation.
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gx5193sup2.mov
The same as Supplementary Movie 1 but from a different point of view. The images in this movie were created by an approximate 90° rotation of the images in Supplementary Movie 1.
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hv5199sup2.mov
Supplementary material
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kw5037sup2.avi
Supplementary Movie 1 (a.avi)
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kw5037sup3.avi
Supplementary Movie 2 (s.avi)
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nj5116sup1.mp4
Video capture of the inline infrared camera showing drop placement in real time during two stages of a crystal plate setup. Reservoir solution is spotted first, followed by a second pass delivering the protein solution; both set to deliver a nominal 40 nl volume. Owing to a more minimal buffer, the protein component is delivered more rapidly (less variability in focusing the transducer position) and is likely to deliver a slightly larger volume than the more concentrated well solutions at a given fixed energy.
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nj511sup2.mp4
Video capture from the inline infrared camera on the ATS-100 showing drop-on-drop placement with nominal 5 nl droplets.
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kw5049sup2.wmv
Supplementary material
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tz5012sup2.avi
Supplementary material
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dw5036sup1.wmv
Supplementary material
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mv5083sup2.mpg
Supplementary material
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rr5034sup1.wmv
t-plot movie 1
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rr5034sup2.wmv
t-plot movie 2
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wd5177sup1.avi
Supplemetary Video 1. Millimetre-scale production of optimized crystals of crotamine.
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wd5177sup2.avi
Supplementary Video 2. Production of microscale crystals of mistletoe lectin I.
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wd5177.sup3.avi
Supplementary Video 3. Production of nanoscale crystals of mistletoe lectin I.
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yt5048sup2.wmv
Movie clip showing the shadow cast by sample capillary absorption of the X-rays as the capillary traversed a path in front of the detector face during the omega-scans.
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bi5001sup20.mov
Supplementary material
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bi5001sup21.mov
Supplementary material
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ks0017sup1.mpg
Tetragonal-rhombohedral (orientation)
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ks0017sup2.mpg
Tetragonal-rhombohedral (sin [delta])
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ks0017sup3.mpg
Cubic-tetragonal (orientation)
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ks0017sup4.mpg
Cubic-tetragonal (sin [delta])
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he5319sup10.avi
Supplementary material
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he5319sup11.avi
Supplementary material
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he5319sup12.avi
Supplementary material
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he5319sup13.avi
Supplementary material
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he5319sup14.avi
Supplementary material
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he5319sup15.avi
Supplementary material
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he5319sup16.avi
Supplementary material
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he5319sup17.avi
Supplementary material
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he5319sup4.avi
Supplementary material
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he5319sup5.avi
Supplementary material
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he5319sup6.avi
Supplementary material
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he5319sup7.avi
Supplementary material
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he5319sup8.avi
Supplementary material
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he5319sup9.avi
Supplementary material
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he5346sup2.avi
Supplementary material
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he5346sup3.avi
Supplementary material
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he5346sup4.avi
Supplementary material
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he3456sup5.avi
Supplementary material
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he5346sup6.avi
Supplementary material
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he5346sup7.avi
Supplementary material
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he5374sup1.avi
M1: Background-corrected raw projection data acquired during scan A.
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he5374sup2.avi
M2: Background-corrected raw projection data acquired during scan B.
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he5374sup3.avi
M3: A three-dimensional rendition of the grain surface, obtained from the reconstruction of scan A.
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cj6012sup1.avi
Time-resolved movie of the evolution of the speckle patterns as the particles move within the sample. The movie frequency is 50 times real time. The top-left corner is the Q = 0 position, covered by the beamstop.
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hx5063sup1.avi
Supplementary material
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hx5063sup2.avi
Supplementary material
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he5462sup1.mpg
Overall view of the procedure of using the device. The black CCD camera at the center of this view supported by a three-finger clamp is temporarily set for the microscopic up view of the crystal.
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he5444sup2.avi
Process of crystal manipulation
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he5462sup2.mpg
Closeup view of the procedure. A protein crystal was picked up from a drop and frozen. In this demonstration, the drop was put on a cover slide, but it is possible to pick a crystal up from crystallization plates.
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he5462sup3.mpg
Demonstration of the movement of the mechanically linked X-Y-Z micromanipulator. The tilt angle of the cryo-pin is adjustable by an optical encoder attached at the manipulator arm.
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he5462sup4.mpg
Demonstration of synchronously-controlled cryo-stream shutter and manipulator. The action repeats twice.
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he5462sup5.mpg
Real time movie of the microscopic view of the tip of the capillary at the freezing position. It is possible to see the process of removing the external solution. A hen egg white lysozyme crystal was used.
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he5462sup6.avi
20% slow-motion movie of he5462sup5.mpg. It is easily observed that the external solution is aspirated and the crystal sits on the tip of the capillary just before freezing.
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he5462sup7.mpg
Real time movie of the microscopic view of a hen egg white lysozyme crystal.
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he5462sup8.mpg
Real time movie of the microscopic view of a thaumatin crystal.
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he5462sup9.mpg
A thaumatin crystal. One end of the crystal sticks into the capillary hole.
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he5470sup1.avi
The robot in action
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he5480sup1.wmv
Real-time fitting of data for RT3
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ea5129sup2.wmv
Video 1: Preparation of the Nextal tray
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ea5129sup3.wmv
Video 2: Incorporating magnets for loop manipulation
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wf5079sup1.wmv
Intensity BIM video for sample VTE28
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wf5079sup2.wmv
Orientation BIM video for sample VTE28
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wf5079sup3.wmv
sin delta BIM video for sample VTE28
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wf5079sup4.wmv
Intensity BIM video for sample LNT67
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wf5079sup5.wmv
Orientation BIM video for sample LNT67
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wf5079sup6.wmv
sin delta BIM video for sample LNT67
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ce5128sup1.avi
A series of topography images at different diffraction angles from an undoped single-crystal CVD diamond displaying almost no parasitic scattering (the same one as in Figs. 2 and 5e).
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ce5128sup2.avi
A series of topography images at different diffraction angles from a single-crystal CVD diamond displaying strong parasitic scattering (the same one as in Figs. 4c and 5f).
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ks5305sup1.wmv
Temperature dependence of optical birefringence and distribution of orientation angles in the pure NBT crystal. See Figs. 2-3 for more details. High-resolution version.
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ks5305sup2.wmv
Temperature dependence of optical birefringence and distribution of orientation angles in the Mn-doped NBT crystal. See Figs. 5-6 for more details. High-resolution version.
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ks5305sup3.wmv
Temperature dependence of optical birefringence in the pure NBT crystal. See Fig. 2 for more details. High-resolution version.
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ks5305sup4.wmv
Temperature dependence of optical birefringence in the Mn-doped NBT crystal. See Fig. 5 for more details. High-resolution version.
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ks5305sup5.avi
Temperature dependence of optical birefringence and distribution of orientation angles in the pure NBT crystal. See Figs. 2-3 for more details. Low-resolution version.
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ks5305sup6.avi
Temperature dependence of optical birefringence and distribution of orientation angles in the Mn-doped NBT crystal. See Figs. 5-6 for more details. Low-resolution version.
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ks5305sup7.avi
Temperature dependence of optical birefringence in the pure NBT crystal. See Fig. 2 for more details. Low-resolution version.
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ks5305sup8.avi
Temperature dependence of optical birefringence in the Mn-doped NBT crystal. See Fig. 5 for more details. Low-resolution version.
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aj5201sup1.wmv
Combined SAXS and 3DXRD patterns
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he5568sup1.mov
Movie S1: progression of the precipitation front. Four TollN6-VLR capillaries were set up with reservoirs either of 3.4 M sodium malonate pH 7.0 (two capillaries on the left) or 0.15M I3C, 2.89M sodium malonate pH 7.0 (two capillaries on the right). A picture was taken every hour over ten days. A movie was generated with 24 frames per second. The progression of the precipitation front is clearly visible in the second capillary from the left.
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xk5009sup1.avi
Movie 1
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xk5009sup2.avi
Movie 2
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xz5004sup1.wmv
Movie showing X-ray diffraction images around a crack tip during heating
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hi5003sup1.mpg
Supplementary material
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hi5003sup2.mpg
Supplementary material
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ot5575sup1.avi
A three-dimensional rendering of the chemical map of polyacrylate against a two-dimensional slice of the polystyrene. The blue and green colors are two different thickness ranges of the acrylate signal.
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gf5005sup1.avi
Supplementary material
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wl5143sup1.avi
Crystal mounting and centring on the diffractometer
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wl5143sup2.avi
On screen, i.e. in situ, diffraction data analysis, crystal space-group determination and structure solution
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gf5017sup1.mov
Volume reconstructions
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gf5017sup2.mov
Volume reconstructions
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kv5057sup1.avi
Bubbles in foam
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ms5027sup1.avi
QuarryDust.avi
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ms5027sup2.avi
Fibreglass.avi
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ms5027sup3.avi
Galena.avi
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ms5027sup4.avi
GlassBeads.avi
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xh5022sup1.avi
Supplementary material
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ie5055sup1.mpg
Reconstructed three-dimensional XANES tomography data of electrode sample R1
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hf5194sup1.wmv
Supplementary material
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mo5033sup1.avi
Hollow glass beads
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mo5033sup2.avi
Lead
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mo5033sup3.avi
Quarry dust
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mo5033sup4.avi
Fibreglass
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hf5204sup1.wmv
Supplementary material
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pp5026sup1.mpg
Supplementary material
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pp5026sup2.mpg
Supplementary material
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wa5029sup1.mpg
Supplementary material
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xh5033sup1.avi
Movie
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cn5042sup1.wmv
Sequence of radiography images taken near the intake valve area at 1850 r.p.m. (exposure time: 3,501 μs)
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mo5042sup1.mpg
Supplementary material
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wa5056sup2.mp4
Supplementary material
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