Within the macro-universe, in stars. Within the micro-universe within the nucleus of the atom.
An atom's mass is concentrated in its nucleus, which is located in the center of the atom. Protons and neutrons within the nucleus are responsible for its mass; the electrons, which are located outside of the nucleus, don't contribute to the mass of the atom.
The discovery of the nucleus by Ernest Rutherford in the early 20th century provided evidence that the majority of an atom's mass is concentrated in a small, dense region at the center. Rutherford's gold foil experiment demonstrated that most of the alpha particles passed through the foil undeflected, indicating the presence of a concentrated mass at the center of the atom. This led to the development of the nuclear model of the atom, which suggests that the nucleus contains the majority of an atom's mass.
The hypothesis of the gold foil experiment, conducted by Ernest Rutherford, was that the majority of the mass and positive charge of an atom is concentrated in a small, dense nucleus at the center, with electrons orbiting around it at a distance.
The mass of an atom is concentrated in its nucleus, which is composed of protons and neutrons. The nucleus is extremely small compared to the overall size of the atom, but it contains almost all of the atom's mass. Electrons, which are much smaller in mass, orbit around the nucleus.
Most of it.The core of an Atom is called the nucleus, it has all the atom's Protons and Neutrons in it. Neutrons are very slightly heavier than Protons and together they are most of the mass.Outside of the nucleus there are the electrons, they have a negative charge to balance the Protons but very little mass, only about 1/2000 of the weight of a Neutron. SO in short.Most of it.
The majority of the mass in the solar system is concentrated in the sun, accounting for about 99.86% of the total mass. The planets, including Earth, make up only a small fraction of the solar system's mass.
It is the nucleus. Mass of electrons is too small
The majority of an atom's mass is concentrated in its nucleus, which is composed of protons and neutrons. Protons have a positive charge and neutrons have no charge, together making up nearly all of the atom's mass. In contrast, the electrons, which orbit the nucleus, contribute very little to the overall mass of the atom. Thus, while the nucleus is small relative to the entire atom, it contains the vast majority of its mass.
The majority of the Earth's land mass is in the Northern Hemisphere, while the majority of vegetation is concentrated near the equator in tropical regions. These areas have a more favorable climate and conditions for plant growth compared to higher latitudes.
An atom's mass is concentrated in its nucleus, which is located in the center of the atom. Protons and neutrons within the nucleus are responsible for its mass; the electrons, which are located outside of the nucleus, don't contribute to the mass of the atom.
The discovery of the nucleus by Ernest Rutherford in the early 20th century provided evidence that the majority of an atom's mass is concentrated in a small, dense region at the center. Rutherford's gold foil experiment demonstrated that most of the alpha particles passed through the foil undeflected, indicating the presence of a concentrated mass at the center of the atom. This led to the development of the nuclear model of the atom, which suggests that the nucleus contains the majority of an atom's mass.
Center of gravity = center of mass, for most practical purposes. Mainly, the center of mass is the place where you imagine the mass to be concentrated. However, as a result, you can also consider inertia and weight to be concentrated at the center of mass.
virtually all the mass in concentrated in the nucleus of the atom, as the electron's mass is so small, it is negligible.
An object's center of mass is the point at which all of its mass can be considered to be concentrated. It is the average position of all the mass in the object, where the object's weight can be considered to act as if it were concentrated.
in the nucleus
99.9% of the mass of an atom is located in the nucleus
The mass of an atom is concentrated in the nucleus (protons+neutrons).