Models of the Atom   S1-2-02 Investigate the historical progression of the atomic model. Include: Dalton, Thompson, Rutherford, Bohr, quantum model.

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Models of the Atom   S1-2-02 Investigate the historical progression of the atomic model. Include: Dalton, Thompson, Rutherford, Bohr, quantum model

Models of the Atom… By 1808, it was widely accepted that matter was made up of elements, which consisted of tiny particles called atoms. After 2000 years - Democritus was right all along John Dalton (1766-1844) Dalton came up with one of the first models for what atoms look like: Dalton’s Atomic Theory: All elements are composed of atoms. Atoms are indivisible and indestructible particles.   Atoms of the same element are exactly alike (have the same mass and properties). Atoms of two or more elements combine to form compounds. Atoms are not created or destroyed in a chemical reaction.

Models of the Atom… John Dalton (1766-1844) Dalton’s atomic theory is also known as the “Billiard Ball Model”, since he believed that atoms were just tiny spheres. Atoms under Dalton’s model would look like this:

Models of the Atom… Joseph John (J.J.) Thompson (1904): Thompson was passing Electricity through a gas, when he discovered very light, negative particles that he called electrons  disproving Dalton’s theory that the atom is indivisible.  Later he also discovered heavier, positive particles called protons.   Thompson proposed that:  Electrons have small mass and a negative charge. An atom is a sphere of positive electricity. Electrons are planted in the positive sphere, so the atom will remain neutral.

Models of the Atom… Joseph John (J.J.) Thompson (1904): Thompson’s theory is also called the “raisin bun” or “plum pudding” or “blueberry muffin” model:   It would look like this:

Models of the Atom… Ernest Rutherford (1911): Performed a famous experiment where “shot” a beam of alpha particles at a sheet of gold foil (the gold foil experiment). He found that most of the particles went through the foil, as if it were made of empty space, while some bounced off. Through this experiment he discovered a dense, positively charged nucleus.

Models of the Atom… Ernest Rutherford (1911): He proposed that: The nucleus is a very tiny, dense, positively charged core.   All of the protons are in the nucleus The nucleus is surrounded by mostly empty space. Rapidly moving, negative electrons are scattered outside the nucleus in an electron cloud. Rutherford developed what we call the Nuclear Model  His model would look like this:

Models of the Atom… Neils Bohr (1913) Bohr thought that if Rutherford’s theory were true, the electrons would just crash into the nucleus (since opposite charges attract) He used the idea of planets orbiting the sun to improve upon Rutherford’s model of the atom   He proposed that: Electrons move around the nucleus in specific energy levels called orbits (like planets around the sun). Every electron in the atom has a definite amount of energy. The further away from the nucleus, the more energy an electron has. Electrons cannot exist between orbits, but can move between them if they gain or lose energy. Each orbit or energy level is a certain distance from the nucleus. Electrons are more stable at lower energy levels.   The order of filling the 1st three orbits is: 2, 8, 8.

Models of the Atom… His theory is also called the “planetary model”. It would look like this:

Models of the Atom… Quantum Model of the Atom Bohr’s model works well for simple atoms (eg, H), but does not explain more complicated ones. The quantum model says that instead of circular paths around the nucleus, the orbits are more like “clouds” where electrons can be found. (more on this in grade 12)

Models of the Atom… Contents of an Atom: Today we know that an atom is made up of three major subatomic particles: protons (+ve) electrons (-ve) neutrons (neutral) The characteristics of these particles are: amu = atomic mass unit = 1.66x10-27 kg NOTE: The mass of an electron is almost 2000x less than a proton or neutron. Subatomic Particle Symbol & Charge Mass Location Proton p+ 1 amu Nucleus Neutron n0 Electron e- 1/1837 amu Electron shell

Models of the Atom… Analogy of the Size of an Atom: Atom = Toronto Skydome Nucleus = Baseball Proton = Marbles inside baseball Electrons = Mosquitoes buzzing around the skydome