The FULL COURSE Notes (1st and 2nd Semesters) of General Chemistry Notes is 381 pages in length (Section 1 through Section 20) and covers ALL lecture notes and topics discussed in your ENTIRE general chemistry lecture course.
Chemistry A Level Notes Pdf 13
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Expecting these notes ,which have grown up to the status of support and guide, could be utilized by the learning and teaching community. Study materials will be updated on receipt.table.gridtable font-family: verdana,arial,sans-serif; border-width: 1px; width:100%; border-color: #666666; border-collapse: collapse;table.gridtable th border-width: 1px; color: #ffffff; padding: 8px; border-style: solid; border-color: #3fb4ff; background-color: #336699;table.gridtable td border-width: 1px; padding: 6px; border-style: solid; color: #000000; border-color: #666666;
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The secret to pass chemistry exams lies in writing and rewriting notes, questions and answers to internalise the concepts, improve on the spellings and writing skills . It upon this that you are advised to write and rewrite these notes and read about each topic from all sources possible to widen your knowledge .
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Comprehensive and concise A-level chemistry notes for the AQA syllabus from an A grade ex-year13 student. Contains diagrams and notes on chemical calculations techniques - as well as information on practicals and equipment that may be tested on in an exam.
New outlines and revision notes for the revised Level 3 standards were prepared in 2013. However the three new externally assessed AS are not that different from the expired ones and most of the resources are still fine to use!
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Each atomic orbital corresponds to a particular energy level of the electron. The electron can change its state to a higher energy level by absorbing a photon with sufficient energy to boost it into the new quantum state. Likewise, through spontaneous emission, an electron in a higher energy state can drop to a lower energy state while radiating the excess energy as a photon. These characteristic energy values, defined by the differences in the energies of the quantum states, are responsible for atomic spectral lines.[58]
Stability of isotopes is affected by the ratio of protons to neutrons, and also by the presence of certain "magic numbers" of neutrons or protons that represent closed and filled quantum shells. These quantum shells correspond to a set of energy levels within the shell model of the nucleus; filled shells, such as the filled shell of 50 protons for tin, confers unusual stability on the nuclide. Of the 251 known stable nuclides, only four have both an odd number of protons and odd number of neutrons: hydrogen-2 (deuterium), lithium-6, boron-10, and nitrogen-14. (Tantalum-180m is odd-odd and observationally stable, but is predicted to decay with a very long half-life.) Also, only four naturally occurring, radioactive odd-odd nuclides have a half-life over a billion years: potassium-40, vanadium-50, lanthanum-138, and lutetium-176. Most odd-odd nuclei are highly unstable with respect to beta decay, because the decay products are even-even, and are therefore more strongly bound, due to nuclear pairing effects.[70] 2ff7e9595c
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