Examples of using Isotropic in English and their translations into Hebrew
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Isotropic Adsorption Matrix.
Substances that expand at the same rate in every direction are called isotropic.
Isotropic- the same in every direction.
The parameter used todefine accuracy in the measurements is called isotropic deviation.
Isotropic: looks the same in all directions.
Stokes's law applies to sound propagation in an isotropic and homogeneous Newtonian medium.
Okay… the isotropic restraint is activated.
This situation will always maintain℃ temperature rise to 178.5 degrees, to form a clear isotropic liquid(isotropic liquid).
Assuming the universe is isotropic, the distance to the edge of the observable universe is roughly the same in each direction.
Unless Captain Janeway is successful in retrieving your original lungs,you will have to stay in the isotropic restraint indefinitely.
Thus, in an isotropic material, for small differential changes, one-third of the volumetric expansion is in a single axis.
We are not aware of anyother device that is capable of inducing an isotropic stress state in the imaging plane that can function within an AFM.
In antenna theory, an isotropic antenna is a hypothetical antenna radiating the same intensity of radio waves in all directions.
The original volume will be formula_31 and the new volume, after a temperature increase, will be:formula_32We can make the substitutions formula_33 and, for isotropic materials, formula_34.
For isotropic materials the coefficients linear thermal expansion α and volumetric thermal expansion αV are related by αV= 3α.
I would like to place Mr. Paris in an isotropic restraint and then infuse it with controlled anti-proton bursts… a tricky venture, but I see no other alternative.
For isotropic material, and for small expansions, the linear thermal expansion coefficient is one third the volumetric coefficient.
Directionality- an antenna may be non-directional(isotropic), transmitting uniformly in all directions, or directional- transmitting preferentially in one or more directions at a higher power.
In physics, an isotropic radiator is a point radiation or sound source. At a distance, the sun is an isotropic radiator of electromagnetic radiation. The Big Bang is another example of an isotropic radiator- the Cosmic Microwave Background.
DNA molecules often have a preferred direction to bend, i.e., anisotropic bending. This is, again, due to the properties of the bases which make up the DNA sequence- a random sequence will have no preferred bend direction,i.e., isotropic bending.
For exactly isotropic materials, and for small expansions, the linear thermal expansion coefficient is one third the volumetric coefficient.
Without the hypothetical inflation field,the big bang does not predict the smooth, isotropic cosmic background radiation that is observed, because there would be no way for parts of the universe that are now more than a few degrees away in the sky to come to the same temperature and thusemit the same amount of microwave radiation.
In antenna theory, an isotropic antenna is a hypothetical antenna radiating the same intensity of radio waves in all directions. It thus is said to have a directivity of 0 dBi(dB relative to isotropic) in all directions.
Whether a radiator is isotropic is independent of whether it obeys Lambert's law. As radiators, a spherical black body is both, a flat black body is Lambertian but not isotropic, a flat chrome sheet is neither, and by symmetry the Sun is isotropic, but not Lambertian on account of limb darkening.
In Euclidean geometry, uniform scaling(or isotropic scaling[1]) is a linear transformation that enlarges(increases) or shrinks(diminishes) objects by a scale factor that is the same in all directions. The result of uniform scaling is similar(in the geometric sense) to the original. A scale factor of 1 is normally allowed, so that congruent shapes are also classed as similar.