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The most obvious one is that the states of matter are a "bulk property" of a large collection of interacting particles of matter, while particles of matter are the individual constituents (e.g. molecules, atoms, subatomic particles) that matter is made of and do not have any "bulk properties".

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Difference between plasma to the other state of matter?

Plasma is a state of matter where atoms are ionized and have freely moving electrons. It is distinct from solids, liquids, and gases because the particles are not bound together. Plasma is electrically conductive and responds to electromagnetic forces, whereas the other states of matter do not.


What is particles theory of matter?

The Particle Theory has 4 laws: 1) All matter is composed of particles 2) Each of these particles have spaces between them 3) These particles are always in a constant state of motion 4) Because some particles are Negative, & some Positive, they are attracted to each other.


How are the four states of matter related?

The four states of matter - solid, liquid, gas, and plasma - are related by the energy and movement of their particles. Solids have particles tightly packed and vibrating in place, liquids have particles that move around but are still relatively close together, gases have particles that move freely and are far apart, and plasmas have particles that are highly energized and ionized. Transition between these states can occur by adding or removing energy from the system.


What are the main factors responsible for the differences in the three states of matter?

The main factors responsible for the differences in the three states of matter (solid, liquid, gas) are the relative movement of the particles, the arrangement of the particles, and the strength of the intermolecular forces between particles. In solids, particles are tightly packed and vibrate in fixed positions, while in liquids, particles are close together but can move past one another. In gases, particles are far apart and move freely. Interactions between particles are strongest in solids and weakest in gases.


What is the force of attraction between two particles of a matter due to their mass?

The force of attraction between two particles of matter due to their mass is known as gravitational force. It is described by Newton's law of universal gravitation, which states that this force is directly proportional to the product of the masses of the particles and inversely proportional to the square of the distance between them.

Related Questions

What is the difference between the states of matter?

The main difference between the states of matter (solid, liquid, gas) lies in how the particles are arranged and how they move. In a solid, particles are tightly packed and vibrate in place. In a liquid, particles are close together but can move past each other. In a gas, particles are far apart and move freely.


What is the difference between the state of matter?

the difference between the three states of matter is that a solid has a definite shape and volume. a liquid does not have a definite shape but does have a definite volume. gas does not have either.


Difference between plasma to the other state of matter?

Plasma is a state of matter where atoms are ionized and have freely moving electrons. It is distinct from solids, liquids, and gases because the particles are not bound together. Plasma is electrically conductive and responds to electromagnetic forces, whereas the other states of matter do not.


What is the difference between states of matter and change of state?

change of state is when the different states of matter are changed into one another. states of matter are gas, liquid, plasma and solid.


What is the relationship between the amount of space between particles and the state of matter?

the particles go with the state of matter in slid liquid and gas each one of the states of matter have particles. gases particles are always moving around example water vapor..solids particles are stuck in place but viberate and liquid is pretty much the same as gas


What is the relationship between the amount of space between particles and the state matter?

the particles go with the state of matter in slid liquid and gas each one of the states of matter have particles. gases particles are always moving around example water vapor..solids particles are stuck in place but viberate and liquid is pretty much the same as gas


The strongest attraction between particles exists in which of these states of matter?

This is a solid.


What is particles theory of matter?

The Particle Theory has 4 laws: 1) All matter is composed of particles 2) Each of these particles have spaces between them 3) These particles are always in a constant state of motion 4) Because some particles are Negative, & some Positive, they are attracted to each other.


In which state of matter are the particles of matter farthest apart?

In the gas state, the particles of matter are farthest apart compared to the solid and liquid states. Gas particles are free to move and have higher kinetic energy, resulting in greater distances between them.


The kinetic theory of matter states that matter is made of particles whose speed is dependent on what?

The kinetic theory of matter states that matter is made of particles whose speed is dependent on their mass and temperature. The kinetic theory states that particles in matter are always in motion.


How are the four states of matter related?

The four states of matter - solid, liquid, gas, and plasma - are related by the energy and movement of their particles. Solids have particles tightly packed and vibrating in place, liquids have particles that move around but are still relatively close together, gases have particles that move freely and are far apart, and plasmas have particles that are highly energized and ionized. Transition between these states can occur by adding or removing energy from the system.


What are the main factors responsible for the differences in the three states of matter?

The main factors responsible for the differences in the three states of matter (solid, liquid, gas) are the relative movement of the particles, the arrangement of the particles, and the strength of the intermolecular forces between particles. In solids, particles are tightly packed and vibrate in fixed positions, while in liquids, particles are close together but can move past one another. In gases, particles are far apart and move freely. Interactions between particles are strongest in solids and weakest in gases.