Sentence examples for main propagation direction from inspiring English sources

Exact(1)

The main propagation direction during this subevent is updip, toward the trench.

Similar(59)

In fact, the interference caused by the spurious electromagnetic multipath due to good electric conductive satellite surface components could in turn affect the main radiation lobe of TLC and Telemetry antennas, thus modifying its main propagation directions and finally increasing the microwave channel pathloss.

For the crack propagation problem under complex loads, an infinitesimal branch crack needs to be established at the tip of the main crack, and the crack propagation direction can be determined by the stress intensity factor or the propagation rate of the branch crack.

It has been found that near the gamma point (center of the Brillouin zone), the dispersion relationship for the TM mode is independent of the propagation direction, while the TE mode in general depends on the electromagnetic waves propagation direction.

Depending on the angle between the crystallographic axis and the preferred motion direction of the main channels, the 'road' in the general front propagation direction (along the electric field) is more or less 'wandering.' It is the shape of the trajectory of separate pores and their diameter that, in the end, determine the propagation rate of the pore front.

The wave speed in this intermediate wavelength range is almost equal to the Rayleigh wave speed, and the propagation direction is also opposite to the main flow.

The crack propagation direction strongly deviates from the expected path and propagates almost perpendicular to it.

Maxwell's electromagnetic waves are transverse, with the electric and magnetic fields oscillating in directions perpendicular to the propagation direction.

The fields are also perpendicular to one another, with the electric field direction, magnetic field direction, and propagation direction forming a right-handed coordinate system.

In the faster type, called longitudinal, dilational, or irrotational waves, the particle motion is in the same direction as that of wave propagation; in the slower type, called transverse, shear, or rotational waves, it is perpendicular to the propagation direction.

The simulation results indicate that the main causes of the complications arising in deep rock mass excavation are resistance to in-situ stresses and anisotropy in the damage propagation direction.

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