A hypothetical particle was suggested namely RISHON but it is not. Confirmed by other reseachers.
When something is smaller than an atom, it is referred to as a subatomic particle. Subatomic particles include protons, neutrons, and electrons, which are the building blocks of atoms. Additionally, there are even smaller particles, such as quarks and leptons, which make up protons and neutrons. These particles are fundamental to the field of particle physics.
Subatomic particles are particles that are smaller than an atom. Examples of subatomic particles include protons, neutrons, and electrons, which are the building blocks of atoms. Other subatomic particles include quarks, leptons, and bosons.
Quarks are elementary particles that make up protons and neutrons. They are fundamental building blocks of matter and cannot be visualized directly as they are smaller than subatomic particles like electrons. Quarks are studied indirectly through the particles they form and their interactions within particle accelerators.
Jenga blocks are smaller than standard building blocks. Jenga blocks are typically 1.5 inches wide, while standard building blocks are usually larger, around 2 inches wide.
Leptons are elementary particles and are considered fundamental, meaning they are not made up of smaller components. However, in the context of particle physics, quarks are another type of elementary particle, but they are not smaller than leptons; rather, they are different types of particles that combine to form protons and neutrons. Currently, there are no known particles smaller than leptons, as they are among the basic building blocks of matter.
A Jenga block is smaller than most building blocks, typically measuring 1.5 inches wide, 0.5 inches tall, and 0.5 inches deep. This makes it smaller than traditional wooden or plastic building blocks used for construction play.
Electrons for one, and protons and neutrons are composed of quarks
Molecules are smaller than cells and are the building blocks of cells.
A particle smaller than atom is a subatomic particle, protons , neutrons, and , electrons, the smallest one is an electron, smaller than that are point particles and elementary particles, one elementary particle and point particle is a quark, up quarks down quarks the smallest single thing found so far is a GLUON, which is the force which binds/holds quarks together. Where the devil lives in anti matter there are also atoms and subatomic particles and point particles but just anti, anti- GLUON, anti-QUARK, anti-ATOM, anti-SUBATOMIC PARTICLE. There is something called the string theory, and super string theory that theorizes about bosonic/boson strings but it can not be provine yet, and I think a gluon is still alot smaller than a bosonic/boson string if they are true. HOPE THIS HELPS
Oh, dude, smaller than an atom? That's like asking what's smaller than a grain of sand in a desert. We're talking about subatomic particles here, like electrons, quarks, and neutrinos. It's a whole microscopic universe down there, man. So yeah, smaller than an atom? We're diving deep into the quantum realm, my friend.
YES , A GLUON A particle smaller than atom is a subatomic particle, protons , neutrons, and , electrons, the smallest one is an electron, smaller than that are point particles and elementary particles, one elementary particle and point particle is a quark, up quarks down quarks the smallest single thing found so far is a GLUON, which is the force which binds/holds quarks together. Where the devil lives in anti matter there are also atoms and subatomic particles and point particles but just anti, anti- GLUON, anti-QUARK, anti-ATOM, anti-SUBATOMIC PARTICLE. There is something called the string theory, and super string theory that theorizes about bosonic/boson strings but it can not be provine yet, and I think a gluon is still alot smaller than a bosonic/boson string if they are true. HOPE THIS HELPS
Answer: Molecules and atoms. They're the building blocks of... Well, EVERYTHING. You can't get any smaller than that!