More or less, but all atoms are about the same size as each other. You would think that heavy atoms, with many electrons, would be much larger, but they aren’t. The reason is that large atoms have large nuclei with many protons. These exert a strong force on the
electrons, pulling them in closer. So even though there are more electrons in large atoms, they are
pulled in closer, leaving the overall size of the heavy atoms the same as for light ones.
It can be determined by the size of it's electron. The reason for this being is because of the mass that is calculated by the protons to the neutrons of the atoms within the nucleus.
The nucleus of an atom contains protons and neutrons, while the electron cloud surrounds the nucleus and contains the electrons. The nucleus is positively charged and is much smaller in size compared to the electron cloud. The electron cloud determines the size of the atom and contains most of the atom's volume.
Yes, the electron cloud is typically larger than the nucleus of an atom. The electron cloud is the region around the nucleus where electrons are most likely to be found, and it extends far beyond the nucleus. The size of the electron cloud depends on the energy level of the electron and the type of atom.
The electron is most responsible for the size of an atom because it occupies the space around the nucleus in electron clouds. The number of electrons and their energy levels determine the size of an atom.
The volume and size of an atom are primarily determined by the electron cloud surrounding the nucleus. Electrons contribute most to the volume and size of an atom, as they occupy the space around the nucleus and form the electron cloud. The nucleus, which contains protons and neutrons, is much smaller in comparison to the electron cloud and contributes very little to the overall size of the atom.
It can be determined by the size of it's electron. The reason for this being is because of the mass that is calculated by the protons to the neutrons of the atoms within the nucleus.
The physical size of an atom is largely determined by the size of the electron cloud.
It is impossible to know exactly where an electron is. Thus, the size of an electron cloud can be given only in terms of probability. Even then, the size of the electron cloud depends on how many electrons an atom possesses.
The nucleus of an atom contains protons and neutrons, while the electron cloud surrounds the nucleus and contains the electrons. The nucleus is positively charged and is much smaller in size compared to the electron cloud. The electron cloud determines the size of the atom and contains most of the atom's volume.
Yes, the electron cloud is typically larger than the nucleus of an atom. The electron cloud is the region around the nucleus where electrons are most likely to be found, and it extends far beyond the nucleus. The size of the electron cloud depends on the energy level of the electron and the type of atom.
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Protons, neutrons and electrons
Anion will have more electron than which atom it was form. So, after forming the the atom will have more electron cloud and size will be smaller compare to the original one.
Most of the size of an atom is made up of the electron cloud, where electrons are located. The nucleus, which contains protons and neutrons, is much smaller in comparison to the overall size of the atom.
The electron is most responsible for the size of an atom because it occupies the space around the nucleus in electron clouds. The number of electrons and their energy levels determine the size of an atom.
Think of the sun as the nucleus and the oort cloud (past pluto) as where the electron orbitals start. The size (volume) of the nucleus is tiny compared to the size (volume) of the atom (defined by the extent of the electron cloud).
The volume and size of an atom are primarily determined by the electron cloud surrounding the nucleus. Electrons contribute most to the volume and size of an atom, as they occupy the space around the nucleus and form the electron cloud. The nucleus, which contains protons and neutrons, is much smaller in comparison to the electron cloud and contributes very little to the overall size of the atom.