Use some ear defenders to explain how sound travels through certain materials and maybe try and compare the speed at which sound will move through the materials? Just an idea, hope it helps...
Often times in science individuals become bogged down in the abstract thinking of higher level mathematics. If one were to draw out a particle diagram the visualization may assist the individual in understanding the interactions taking place.
Reflected
well.. a chemical weathering process is acid rain, so you could do a particle diagram for fizzing- reaction with acid rain. or. a physical weathering process is melting, so you could do a particle diagram for melting. hope this has helped :).
Increased particle velocity v leads to increased sound pressure p. v = p / Z Scroll down to related links and look for "Sound Pressure" and for "Particle Velocity".
[well you would show the 2 diffrent particle (oxygen and magnesium) with 1 magnesium particle and 2 oxygen ones attached to it . this is known as MgO2] i believe it is MgO as the electron number is too big to support 2 molecules of oxygen
They pass from particle to particle by vibrating the particle. When the particle touches another particle, it transfers the sound energy to that particle. Hence the Sound Wave.
They pass from particle to particle by vibrating the particle. When the particle touches another particle, it transfers the sound energy to that particle. Hence the Sound Wave.
it means tht
You can draw a simple particle diagram of ear defenders by showing sound waves entering the ear defenders and being absorbed by the material of the ear defenders. This absorption of sound waves reduces the intensity of the sound reaching the ear, thus protecting the ears from loud noises.
wiring diagram for sound powered telephone
With skills
A particle model
Sound is a wave, not a particle. Sound waves are created by vibrations and travel through a medium, such as air or water, to carry sound from one place to another.
Sound travels through particles by creating a series of compressions and rarefactions as the sound wave moves through the medium. In a diagram, you would see particles close together during compression, where the pressure is higher, and particles further apart during rarefaction, where the pressure is lower. This movement of particles transmitting energy from one particle to the next allows sound to propagate through a medium.
what are particle that show comparasons of the speed at wich sound will move throught matirials ? what are particle that show comparasons of the speed at wich sound will move throught matirials ?
Sound is a series of vibrations. In a solid they travel in waves from particle to particle, causing the solid to make a noise.
The muon decay Feynman diagram is significant in particle physics because it illustrates the process of a muon particle decaying into other particles, providing insights into the fundamental interactions and properties of subatomic particles. This diagram helps scientists understand the weak nuclear force and the behavior of particles at the quantum level.