DCS # | DEMONSTRATION | REFERENCE | ABSTRACT |
7B50.00 | Atomic Models | | |
7B50.01 | history of the atom - symposium | AJP 49(3),217 | Kinetic atom |
7B50.01 | history of the atom - symposium | AJP 49(3),211 | Atomism from Newton to Dalton. |
7B50.01 | history of the atom - symposium | AJP 49(3),223 | Rutherford-Bohr atom |
7B50.01 | history of the atom - symposium | AJP 49(3),206 | Greek atomic theory. |
7B50.01 | history of the atom | AJP 49(3),205 | An introduction to a series of four papers presented in a symposium "History of the Atom". |
7B50.10 | electron orbital models | PIRA 500 | |
7B50.10 | electron orbital models | 7B50.20 | A set of Klinger electron orbital models. |
7B50.11 | Bohr model | A-5b | A motorized model with fluorescent electrons and nucleus to be viewed in the dark. |
7B50.15 | wave function model | AJP 28(7),676 | Draw
dots on glass plates and stack them for a 3-d model of the probability of
the electron shell. Example given for hydrogen 3d state. |
7B50.16 | electron shell model | A-66 | Golf tees are inserted into predrilled holes in a plywood sheet to represent electrons in the various shells. |
7B50.20 | equilibrium configurations | A-62 | Steel
balls floating in a dish of mercury over an electromagnet assume equilibrium
configurations. A dynamic setup is also described. |
7B50.50 | periodic chart | PIRA 500 | |
7B50.50 | periodic charts | A-1a | Welch and Cenco periodic charts are displayed on the wall. |
7B50.90 | atomic beam apparatus | AJP 33(11),xvii | Determine the diameter of atoms by directing a very low pressure stream at a vane in an evacuated bell jar. |