Rutherford.
Yes, molecules are mostly empty space because they consist of atoms that have a nucleus surrounded by electrons, which are very tiny compared to the size of the nucleus. So, the majority of a molecule's volume is made up of this empty space.
There is empty space behind the sun, extending out into the vastness of the solar system and beyond. From Earth's perspective, the sun appears to be at the center of our solar system with planets orbiting around it.
The answer is (planet)
Jupiter is a gas giant with a thick atmosphere made mostly of hydrogen and helium. It has distinct cloud bands and a large red spot known as a persistent storm. Jupiter also has more than 75 moons orbiting around it.
called asteroids. They are remnants from the early solar system and are mostly made up of rock and metal. They vary in size from small pebbles to large bodies measuring hundreds of kilometers across.
Ernest Rutherford proposed that the atom resembled a small, dense nucleus surrounded by orbiting electrons. This model, known as the Rutherford model, described the atom as mostly empty space with electrons orbiting the nucleus similar to planets orbiting the sun.
An atom is composed of a nucleus containing protons and neutrons, surrounded by electrons orbiting in energy levels. The protons and neutrons are located in the nucleus at the center of the atom, while the electrons are found in the electron cloud surrounding the nucleus.
It was Ernest Rutherford who discovered that atoms are mostly composed of empty space with electrons orbiting a very dense nucleus.
It is filled mainly with space.. Atoms are extremely spread out as they have different shells containing electrons. The middle is made up of tightly compressed protons and neutrons while the outside shells are made up of spread out electrons.
The inside of an atom is mostly made of protons and neutrons, which are located in the nucleus. The nucleus is surrounded by electrons, which move around the nucleus in specific energy levels.
Tim concluded that all matter is mostly made of empty space because when he studied the structure of atoms, he found that they consist of a nucleus surrounded by electrons orbiting at a distance. The vast majority of an atom's volume is empty space between the nucleus and the electrons, leading Tim to believe that matter is mostly empty space.
Mostly empty, In the common model of the atom, electrons are really tiny and they are relatively far from the nucleus which is small (but larger than electrons). In between there is nothing. To bring this distance into perspective if a nucleus is here the next electron would be a football field away.
Rutherford added the concept of a dense, positively charged nucleus at the center of the atom, with electrons orbiting around it in a mostly empty space. This model became known as the Rutherford model of the atom.
Experiments with gold foil indicated that atoms have a small, dense nucleus at their center, surrounded by mostly empty space with electrons orbiting around the nucleus. This led to the development of the nuclear model of the atom, proposed by Ernest Rutherford.
In an atom, the space between electrons and the nucleus is mostly filled with empty space. The nucleus contains positively charged protons and neutral neutrons, and the electrons surround the nucleus in different energy levels or electron shells.
Matter is mostly made of atoms, which are composed of protons, neutrons, and electrons. The protons and neutrons make up the nucleus of the atom, while the electrons orbit around the nucleus. The specific arrangement and quantity of these particles determine the properties of different types of matter.
In the nucleus of the atom, along with neutrons. The electrons are found around the nucleus. If the atom was the size of a Baseball stadium, the nucleus would be the size of a baseball! Most of the space in an atom is taken up by the electron cloud which surrounds the nucleus. That is why atoms are actually mostly empty space.