Biomaterials and Biomedical Materials: Structure of Bone and Implant materials
This set of animations demonstrates stresses in bone and femoral implants and their properties. From TLP: Structure of Bone and Implant materials
Author(s): DoITPoMS, University of Cambridge,Jacqui Capes, Un

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Biomaterials and Biomedical Materials: The Structure and Mechanical Behaviour of Wood
This set of animations consists of interactive 3D models of Scots pine and greenheart wood, and 3 point bending test of wet balsa. From TLP: The Structure and Mechanical Behaviour of Wood
Author(s): DoITPoMS, University of Cambridge,Lindsay Greer, U

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Atomic Structure and Microstructure of Materials: The Stereographic Projection
This set of animations covers the principles of stereographic projection and the use of the Wulff net in plotting poles. From TLP: The Stereographic Projection
Author(s): DoITPoMS, University of Cambridge,Dr K M Knowles,

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Atomic Structure and Microstructure of Materials: Solidification of Alloys
This set of animations covers different aspects of solidification, it includes interactive phase diagrams. From TLP: Solidification of Alloys
Author(s): DoITPoMS, University of Cambridge,Noel Rutter, Uni

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Atomic Structure and Microstructure of Materials: Lattice Planes and Miller Indices
This set of animations covers indexing of planes and Miller indices. From TLP: Lattice Planes and Miller Indices
Author(s): DoITPoMS, University of Cambridge,Noel Rutter, Uni

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Atomic Structure and Microstructure of Materials: Crystallographic Texture
This set consists of animations and user controlled simulations of Eulerian cradle, EBSD, CODF, GOSS texture and texture build up. From TLP: Crystallographic Texture
Author(s): DoITPoMS, University of Cambridge,Dr K M Knowles,

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Atomic Structure and Microstructure of Materials: Stress-strain curve in polymers
This animation presents an interactive idealised polymer stress-strain curve. From TLP: Crystallinity in Polymers
Author(s): DoITPoMS, University of Cambridge,Dr J A Elliott,

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Zinc thiourea sulphate (ZTS) structure
The micrograph shows zinc thiourea sulphate (ZTS) structure in dielectric ceramic
Author(s): DoITPoMS, University of Cambridge,Dr J Marrow, Dep

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Zinc thiourea sulphate (ZTS) structure
The micrograph shows zinc thiourea sulphate (ZTS) structure in dielectric ceramic
Author(s): DoITPoMS, University of Cambridge,Dr J Marrow, Dep

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The grain structure of extruded aluminium
The extrusion process leads to the elongation of grains. This micrograph shows a longitudinal section with the extrusion direction lying horizontal. Some large subgrains (or groups of subgrains) are apparent, and some high angle boundary migration has occurred normal to the extrusion direction. Grains near the extrudate centre have a lower aspect ratio.
Author(s): DoITPoMS, University of Cambridge,Prof T W Clyne,

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Growth of a two-dimensional grain structure
A Voronoi diagram is created using Surface Evolver, from a random set of (N=1000) points to represent the grain structure. The boundary length is then minimised, subject to the constraint of constant area. The video shows the growth of a two-dimensional grain structure: From TLP: Grain growth, http://www.doitpoms.ac.uk/tlplib/grainGrowth/2dcomputersimulation.php
Author(s): DoITPoMS, University of Cambridge

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Perovskite-PbNbO3 structure
Rotatable image of Perovskite-PbNbO3 structure. From TLP: Pyroelectric Materials, http://www.doitpoms.ac.uk/tlplib/pyroelectricity/example.php
Author(s): DoITPoMS, University of Cambridge

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Perovskite-BaSrTiO3 structure
Rotatable image of Perovskite-BaSrTiO3 structure. From TLP: Pyroelectric Materials, http://www.doitpoms.ac.uk/tlplib/pyroelectricity/example.php
Author(s): DoITPoMS, University of Cambridge

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Interactive model of the tetragonal structure of ZrO2
Interactive, rotatable model of the tetragonal structure of ZrO2.
Author(s): DoITPoMS, University of Cambridge

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Model of the cubic Fluorite structure of ZrO2
Rotating model of the cubic Fluorite structure of ZrO2.
Author(s): DoITPoMS, University of Cambridge

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Structure of Perovskite
Rotation of the structure of perovskite. From TLP: Fuel Cells, http://www.msm.cam.ac.uk/doitpoms/tlplib/fuel-cells/sofc_electrolyte.php
Author(s): DoITPoMS, University of Cambridge

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Structure of Zirconia
Rotation of the structure of zirconia. From TLP: Fuel cells, http://www.msm.cam.ac.uk/doitpoms/tlplib/fuel-cells/sofc_electrolyte.php
Author(s): DoITPoMS, University of Cambridge

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Structure of calcite
Animation of calcite structure rotating. From TLP: Introduction to Anisotropy, http://www.msm.cam.ac.uk/doitpoms/tlplib/anisotropy/dielectric.php
Author(s): DoITPoMS, University of Cambridge

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Interactive model of tetragonal perovskite structure
Interactive, rotatable model of tetragonal perovskite structure. From TLP: Introduction to Anisotropy, http://www.msm.cam.ac.uk/doitpoms/tlplib/anisotropy/dielectric.php
Author(s): DoITPoMS, University of Cambridge

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Model of tetragonal perovskite structure
Animation of the tetragonal perovskite structure rotating. From TLP: Introduction to Anisotropy, http://www.msm.cam.ac.uk/doitpoms/tlplib/anisotropy/dielectric.php
Author(s): DoITPoMS, University of Cambridge

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