experimenting with 3Ds Max and uploading door handle onto 2nd life.
Monday, 22 August 2011
Friday, 19 August 2011
Wednesday, 17 August 2011
Higher resolution
For a Higher resolution (480 and 720p) please go to the link provided
http://www.youtube.com/watch?v=BkZr--KgP08
http://www.youtube.com/watch?v=BkZr--KgP08
Saturday, 13 August 2011
conceptual ideas
Here are the first 2 pages of a1 that I did when exploring my idea of memory and isotropic.
The process of rubbing/smudging is closely linked to the idea of how the brain records messages.
spiral forms linking to the idea of network is shown as the beginning of the basic plan view of my structure.
I intend to create a NETWORK of buildings which travel between the dots indicated on the site plan(drawn) creating a parasitic effect-similar to how the memories of the past never seems to die away but only drift apart (shown by the distance between each building)
I will be designing a museum/gallery of the past histories the site which will be displayed inside. It could also be used later for multifunctional purposes-hosting other works.
Tuesday, 9 August 2011
Isotropic vs Anisotropic
Isotropic
uniformity in all orientations
iso=equal
tropos=direction
Isotropic radiation has the same intensity regardless of the direction of measurement
An isotropic field exerts the same action regardless of how the test particle oriented
exhibiting properties (as velocity of light transmission) with the same values when measured along axes in all directions.
For many poly-crystalline materials the grain orientations are random before any working/deformation, therefore even if the individual grains are an anisotropic. the property differences tend to average out and, overall, the material is isotropic
When a material is formed, the grains are usually distorted and elongated in one or more directions which makes the material anisotropic.
Anisotropic - when the properties of a material vary with different crystallographic orientations.
Directionally dependent
A difference when measured along different axes, in a material's physical or mechanical properties (absorbance, refractive index, conductivity, tensile strength, etc.)
Example of anisotropy-light coming through a polarizer
example of anisotropy material-wood, easier to split along its grain than against it.
uniformity in all orientations
iso=equal
tropos=direction
Isotropic radiation has the same intensity regardless of the direction of measurement
An isotropic field exerts the same action regardless of how the test particle oriented
exhibiting properties (as velocity of light transmission) with the same values when measured along axes in all directions.
For many poly-crystalline materials the grain orientations are random before any working/deformation, therefore even if the individual grains are an anisotropic. the property differences tend to average out and, overall, the material is isotropic
When a material is formed, the grains are usually distorted and elongated in one or more directions which makes the material anisotropic.
Anisotropic - when the properties of a material vary with different crystallographic orientations.
Directionally dependent
A difference when measured along different axes, in a material's physical or mechanical properties (absorbance, refractive index, conductivity, tensile strength, etc.)
Example of anisotropy-light coming through a polarizer
example of anisotropy material-wood, easier to split along its grain than against it.
Thursday, 4 August 2011
Subscribe to:
Posts (Atom)





