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In seismology and other areas involving elastic waves, S waves, secondary waves, or shear waves (sometimes called elastic S waves) are a type of elastic wave and are one of the two main types of elastic body waves, so named because they move through the body of an object, unlike surface waves.
S waves are transverse waves, meaning that the direction of particle movement of a S wave is perpendicular to the direction of wave propagation, and the main restoring force comes from shear stress. Therefore, S waves cannot propagate in liquids with zero (or very low) viscosity; however, they may propagate in liquids with high viscosity.
The name secondary wave comes from the fact that they are the second type of wave to be detected by an earthquake seismograph, after the compressional primary wave, or P wave, because S waves travel more slowly in solids. Unlike P waves, S waves cannot travel through the molten outer core of the Earth, and this causes a shadow zone for S waves opposite to their origin. They can still propagate through the solid inner core: when a P wave strikes the boundary of molten and solid cores at an oblique angle, S waves will form and propagate in the solid medium. When these S waves hit the boundary again at an oblique angle, they will in turn create P waves that propagate through the liquid medium. This property allows seismologists to determine some physical properties of the Earth's inner core.
In 1830, the mathematician Siméon Denis Poisson presented to the French Academy of Sciences an essay ("memoir") with a theory of the propagation of elastic waves in solids. In his memoir, he states that an earthquake would produce two different waves: one having a certain speed and the other having a speed . At a sufficient distance from the source, when they can be considered plane waves in the region of interest, the first kind consists of expansions and compressions in the direction perpendicular to the wavefront (that is, parallel to the wave's direction of motion); while the second consists of stretching motions occurring in directions parallel to the front (perpendicular to the direction of motion).
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A P wave (primary wave or pressure wave) is one of the two main types of elastic body waves, called seismic waves in seismology. P waves travel faster than other seismic waves and hence are the first signal from an earthquake to arrive at any affected location or at a seismograph. P waves may be transmitted through gases, liquids, or solids. The name P wave can stand for either pressure wave (as it is formed from alternating compressions and rarefactions) or primary wave (as it has high velocity and is therefore the first wave to be recorded by a seismograph).
thumb|Aspect du déplacement L'onde de Love est un type d'onde se propageant à la surface d'un milieu solide semi-infini, et notamment d'onde sismique. Elle a été découverte par Augustus Edward Hough Love en 1911. Son déplacement est comparable à celui des ondes S sans le mouvement vertical. Les ondes de Love provoquent un ébranlement horizontal qui est la cause de nombreux dégâts aux fondations d'un édifice qui n'est pas une construction parasismique. Les ondes de Love se propagent à environ . Catégorie:Sis
thumb|Différentes ondes sismiques.|alt= Les ondes sismiques, ou ondes élastiques, sont des mouvements vibratoires qui se propagent à travers un milieu matériel et peuvent le modifier irréversiblement si leur amplitude est suffisante. Elles sont engendrées par un événement initial, généralement un séisme. L'impulsion de départ déplace les atomes du milieu, qui en poussent d'autres avant de reprendre leur place, ces déplacements oscillatoires se propageant ensuite de proche en proche.
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