Linked from
The 46 pages that link to Shock wave, each with the reason it gives.
Boundary layerCompared with: Shock layers arise from compressibility and steep gradients, not wall-driven viscous adjustment.
Doppler effectRelated: When a source outruns sound waves, their accumulation can form a shock.
SupernovaRelated: The outgoing shock drives the star’s outer layers into space.
Supernova remnantRelated: Remnant shock waves heat surrounding gas and accelerate particles.
CavitationRelated: Violent cavity collapse can launch shock waves into the surrounding liquid.
Conservation of momentumRelated: Jump conditions across a shock enforce conservation of momentum alongside mass and energy.
DetonationNarrower topic: Its compression initiates the chemistry that sustains a detonation.
Mach numberRelated: Supersonic motion can concentrate disturbances into shocks rather than letting them travel ahead.
Impact crateringRelated: The impact launches shock waves that crush, heat, and transform rock.
Sound waveBroader topic: A sufficiently intense sound disturbance can steepen into a shock wave.
Compressible flowBroader topic: Supersonic compression can concentrate into a shock wave.
Sound speedCompared with: Shock waves are finite, abrupt disturbances, unlike the small disturbances defining ordinary sound speed.
DeflagrationRelated: A shock drives detonation, whereas ordinary deflagration does not require one.
Blast waveBroader topic: The blast wave’s leading edge is a shock while its strength remains above the acoustic range.
Euler equationsRelated: Compressible Euler equations describe shock motion through conservation laws.
Mira variableRelated: Pulsations send shocks through Mira atmospheres, lifting gas and forming molecules and dust.
Shaped chargeRelated: The detonation shock loads and accelerates the liner.
Distribution (mathematics)Related: Distributional derivatives encode the singular jumps across a shock.
Weak solutionRelated: A shock can satisfy a conservation law weakly even though pointwise derivatives fail at the discontinuity.
Atmospheric reentryRelated: A bow shock forms ahead of a fast reentry vehicle and contributes to its thermal environment.
NitroglycerinRelated: The detonation’s shock wave is the destructive mechanical effect of rapid energy release.
DetonatorRelated: In many detonators, a shock wave supplies the pressure needed to start detonation.
Impact eventRelated: The collision launches shock waves that crush, melt, and transform target material.
Explosive trainRelated: Pressure transmission between stages can depend on the shock produced by an earlier component.
Impact forceBroader topic: Very rapid impacts can generate intense stress waves that travel through materials.
RamjetRelated: Supersonic ramjet inlets use shocks to slow and compress incoming air.
CompressibilityRelated: Compressibility governs how fluids respond when pressure changes become large and rapid.
High explosiveRelated: Detonation couples chemical reaction to a shock that transmits explosive force.
Supersonic flightRelated: Supersonic aircraft create shock waves as pressure disturbances cannot travel ahead of them.
Asteroid impactRelated: Impact-generated shock waves crush and heat both the projectile and the target.
Distribution theoryRelated: Distributional formulations make sense of derivatives across the discontinuity.
ExplosiveNarrower topic: Detonation couples chemical reaction to a shock wave moving through the explosive.
ThunderRelated: Lightning’s rapid expansion launches pressure disturbances that develop into thunder.
Adaptive mesh refinementBroader topic: Resolving a shock requires dense cells only near its narrow front.
Astrophysical fluid dynamicsRelated: Supersonic flows create shocks that convert directed motion into heat.
Mechanical waveBroader topic: It is a nonlinear mechanical wave whose sharp front differs from small-amplitude waves.
TNT equivalentRelated: Damage depends on the shock wave's propagation, not just total equivalent energy.
Kepler's SupernovaRelated: The explosion’s shock wave heats surrounding gas and drives the remnant’s expansion.
2020 Beirut explosionBroader topic: The blast’s shock wave caused severe damage across Beirut.
Astrophysical jetRelated: Internal and terminal shocks convert jet motion into heat and radiation.
Cygnus LoopRelated: Shocks in the Loop produce much of its optical and X-ray emission.
List of interstellar and circumstellar moleculesRelated: Shocks release grain material and drive rapid chemical changes around stars.
NGC 7027Related: Collisions between fast stellar outflows and older gas can create shocks in the nebula.
Plastic explosiveRelated: A shock wave sustains the detonation front in high explosives.
Popigai impact structureRelated: Models of shock physics help explain diamond formation during the impact.
Zeta OphiuchiRelated: The bow-shaped structure provides an astrophysical example of a shock in moving gas.