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ATOMIC STRUCTURE Dalton’s Theory All matter is made up of tiny particles called atoms Atoms of the same element are identical in size, mass, properties Atoms cannot be subdivided, created or destroyed Atoms of different elements combine to form chemical compounds How much of this is true? Some of Dalton’s Theory about the atom has been altered based on new information This gives us the ….. Modern Atomic Theory All matter is made up of atoms. Atoms of the same element are chemically similar Atoms of an element may not have the same mass (Isotopes) Atoms are not subdivided, created or destroyed in chemical reactions. Isotopes Atoms of the same element with different masses Protons are the same Neutrons differ 235 Looks like: uranium-235 Or 92 U Ions Have an unequal number of protons and electrons Have an overall positive or negative charge Atomic Number It represents the # of protons It can also represent the # of electrons if the atom is neutral Mass Number Represents the # of protons + # of neutrons # of Neutrons = Mass Number – Atomic Number Subatomic Particles Particle Location Charge Mass Periodic Table 13 Al 26.98154 Periodic Table 19 K 39.0983 Nuclear Symbols 27 13 Al 57 26 Fe Nuclear Symbols 27 13 Al 3+ 35 17 Cl 1- Elements, Isotopes and Ions 127 I 127 - I 129 I Describing the Atom J.J. THOMPSON - Showed that atoms are made of particles CATHODE RAY TUBE \ Describing the Atom MILLIKAN Calculated the charge on a single electron Rutherford Showed that atom had both + and charges : Radiation and Magnets (p106) Rutherford Showed atom mostly empty space & its mass is contained in a very small area GOLD FOIL EXPERIMENT See p 95 C:\Documents and Settings\Teacher\Desktop\1Rutherford_Expt.avi Gold Foil Experiment Flame Test *Electrons exist in energy levels (or ‘shells’). *When exposed to an energy source, electrons may become ‘excited’ and jump to a higher energy level. *When the electron returns to its ‘ground state’ a photon of light is released. *The photon of light is always the same wavelength (and the same color) for each element.