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Atoms were found to be divisible after all . But scientists discovered that the atoms were made of smller perticles , called subatomic particles.

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Who discovered the subatomic particle?

The concept of subatomic particles emerged in the late 19th and early 20th centuries through the research of scientists such as J.J. Thomson, Ernest Rutherford, and Niels Bohr. The discovery of specific subatomic particles like the electron, proton, and neutron can be attributed to a combination of experimental observations and theoretical advancements by multiple scientists over time.


How is the existence of the neutrino confirmed?

Actually, we can't even confirm the existence of atoms, let alone subatomic particles. But when scientists conduct experiments, they come to the conclusion that the particles are indeed valid. The more discrete physics becomes, the more theoretical it is.


How do scientists study the properties of subatomic particles through photon collisions?

Scientists study the properties of subatomic particles through photon collisions by using high-energy photons to collide with the particles. This collision allows scientists to observe the interactions and behaviors of the particles, providing valuable insights into their properties and characteristics.


Which two scientists discovered the subatomic particles that make up the nucleus?

Ernest Rutherford and James Chadwick were the scientists who discovered the subatomic particles that make up the nucleus. Rutherford discovered the positively charged protons, while Chadwick discovered the uncharged neutrons.


What did scientists bombard an atom with?

Scientists bombarded an atom with high-energy particles such as protons, electrons, or other atomic particles to study its structure and behavior. This process allows scientists to investigate atomic nuclei, subatomic particles, and fundamental forces of nature.


Why are scientists concerned about subatomic particles?

For the particles in the atom: Neutron: James Chadwick, 1932 Electron: J. J. Thomson, 1897 Proton: Ernest Rutherford, 1919


What is in between subatomic particles?

Subatomic particles are: neutron, proton, electron.


Subatomic particles bigger than molecles?

Subatomic particles are smaller than molecules and are the building blocks of atoms. Protons, neutrons, and electrons are examples of subatomic particles found in atoms. There are no known subatomic particles that are bigger than molecules.


What is the smallest part of a comet?

The smallest part of a comet is likely the dust particles that make up its coma, which is the cloud of gas and dust that surrounds the comet's nucleus. These dust particles can be as small as a few micrometers in size.


What is a subatomic explorer?

A subatomic explorer is a device or experiment designed to study particles and phenomena at the subatomic level, such as electrons, protons, and neutrons. These explorers help scientists understand the fundamental building blocks of matter and the forces that govern their interactions.


Are photos made of subatomic particles?

No, photos are not made of subatomic particles. Photos are composed of photons, which are massless particles that carry electromagnetic force. Subatomic particles refer to particles like electrons, protons, and neutrons, which make up atoms.


What are properties that vary among subatomic particles?

The atom is the smallest part of matter that represents a particular element. For quite a while, the atom was thought to be the smallest part of matter that could exist. But in the latter part of the 19th century and early part of the 20th, scientists discovered that atoms are composed of certain subatomic particles and that, no matter what the element, the same subatomic particles make up the atom. The number of the various subatomic particles is the only thing that varies. Scientists now recognize that there are many subatomic particles (this really makes physicists salivate). But in order to be successful in chemistry, you really only need to be concerned with the three major subatomic particles: Protons Neutrons Electrons