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isotropic medium vs isotropic material

Both "isotropic medium" and "isotropic material" are correct phrases, but they are used in different contexts. "Isotropic medium" refers to a substance or environment that has the same properties in all directions, while "isotropic material" specifically refers to a material that exhibits the same properties in all directions.

Last updated: April 01, 2024 • 599 views

isotropic medium

This phrase is correct and commonly used in the field of physics and engineering to describe a substance or environment with uniform properties in all directions.

This phrase is used to refer to a medium that has the same properties in all directions, such as in the context of wave propagation or material behavior.

Examples:

  • The electromagnetic wave travels through an isotropic medium at a constant speed in all directions.
  • In isotropic media, the refractive index is the same in all directions.
  • EIRP and TRP are equivalent for isotropic antennas.
  • EIRP and TRP are equivalent for isotropic antennas.
  • Antenna gain is normally given in isotropic decibels [dBi].
  • For applications requiring high cleanliness (low inclusion content) and isotropic properties (same in all directions).
  • Isotropic pressure exerted by water at rest.
  • Navier circa 1820 studied the elasticity of isotropic minerals.
  • A sphere centered around the origin is a representation of an isotropic distribution.
  • 10 mW equivalent isotropic radiated power (e.i.r.p.)
  • But the isotropic antenna does not exist, is only a mathematical abstraction that is useful as a reference value.
  • Based on the Cook-Torrance algorithm is a material type useful for the isotropic metal material render.
  • The structure is isotropic, i.e. the material has no particular "grain direction", ensuring excellent resistance to most types of stress.
  • Max. equivalent isotropic radiated power EIRP 25mW
  • Increasing levels of c-AMP in the heart and vessels, forskolin causes a decrease in blood pressure by relaxing vascular smooth muscle and improves left ventricular function, exerting a positive isotropic effect.
  • To achieve this study was defined an antenna, called isotropic, non-existent in reality, but that is convenient to use as comparison for the radiation diagrams of all other antennas.
  • The light flow can be oriented homogeneously in all directions (isotropic emission) or only spread over portions of the environment, enabling us to participate in the light experience.
  • The radiation COBE observed was almost equally bright in all directions ("isotropic"), but not completely so: a small unevenness ("anisotropy") remained, and MAP is designed to observe it better.
  • Five samples shall undergo the test in the case of an isotropic material or ten samples in the case of a non-isotropic material (five for each direction).
  • Opaque mineral: colour in reflected light, internal reflections, isotropic or anisotropic, bireflectance, indices of reflection measured under different wavelengths;
  • The gain figures refer to the Isotropic peak gain in the main lobe at the quoted elevation angle with the antenna at 10m height.
  • Isotropic Superfinishing is considered a real opportunity: it is, for Gearsolutions, a real added value that gives a not greedy opportunity for the refurbishing of casehardened and nitrided gears.

Alternatives:

  • homogeneous medium
  • uniform medium
  • isotropic environment
  • isotropic substance
  • isotropic space

isotropic material

This phrase is correct and commonly used in materials science and engineering to describe a material that has the same properties in all directions.

This phrase is used to describe a material that exhibits uniform properties, such as mechanical, thermal, or electrical properties, in all directions.

Examples:

  • The composite material is designed to be isotropic, ensuring consistent strength in all directions.
  • In isotropic materials, the thermal conductivity is the same in all directions.
  • Five samples shall undergo the test in the case of an isotropic material or ten samples in the case of a non-isotropic material (five for each direction).
  • Three samples in the case of an isotropic material, or six samples in the case of a non-isotropic material, of the material(s) used for the curtains and blinds (and/or other hanging materials) shall undergo the test described in Annex VI.
  • From the following material(s) five samples in the case of an isotropic material or 10 samples in the case of a non-isotropic material (five for each direction), shall undergo the test described in Annex IV to this Directive:
  • Based on the Cook-Torrance algorithm is a material type useful for the isotropic metal material render.
  • The structure is isotropic, i.e. the material has no particular "grain direction", ensuring excellent resistance to most types of stress.
  • In addition to finite element mesh physical characteristics of the materials of the product should be defined. The user of AutoFEM Analysis gets the library of materials. There is a possibility of using two models of the material: the isotropic and orthotropic ones.

Alternatives:

  • homogeneous material
  • uniform material
  • isotropic substance
  • isotropic solid
  • isotropic element

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