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Abdurayimova Madina 2013 MOLECULAR THEORY OF MATTER

millions of tiny bits or particles. The bits of smoke glint in the light from the lamp.
BROWNIAN motion
Explanation
Viewed through a microscope, smoke can be seen to be made up of millions of tiny bits or particles. The bits of smoke glint in the light from the lamp.
As they drift through the air they are seen to wobble in zig-zag paths. This was first noticed in 1827 by Robert Brown. The effect is called Brownian motion.
BROWNIAN motion
Explanation
Viewed through a microscope, smoke can be seen to be made up of millions of tiny bits or particles. The bits of smoke glint in the light from the lamp.
As they drift through the air they are seen to wobble in zig-zag paths. This was first noticed in 1827 by Robert Brown. The effect is called Brownian motion.
Kinetic theory can explain Brownian motion – the bits of smoke, just large enough to be seen, have so little mass that they are ‘jostled’ about by thousands of surrounding gas particles that bump into them at random.
Particles in solids, liquids and gases have kinetic energy (movement) and stored potential energy. Gases have the most PE.
Internal energy
Particles in solids, liquids and gases have kinetic energy (movement) and stored potential energy. Gases have the most PE.
Internal energy
The total KE and PE of all atoms and molecules in a material is called the internal energy. The hotter a material, the faster the particles move, and the more internal energy it has.
Particles in solids, liquids and gases have kinetic energy (movement) and stored potential energy. Gases have the most PE.
Internal energy
The total KE and PE of all atoms and molecules in a material is called the internal energy. The
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