Radioisotope Techniques for Problem-Solving in Industrial by J. S. Charlton (auth.), J. S. Charlton (eds.)

By J. S. Charlton (auth.), J. S. Charlton (eds.)

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Proportional to the energy of the ionizing particle. However, in a Geiger counter a somewhat different set of conditions apply. Here the strength of the electric field around the anode is much higher and the number of electrons involved in an avalanche (typically 1010) is very much greater than in a proportional counter. Similarly, the number of electron collisions which do not lead to further ionization but create 'excited' gas molecules is very much greater in Geiger avalanches than in proportional-counter avalanches.

4-Berkeley Physics Course), Eyvind H. Wichmann, McGraw-Hili, New York (I967)-Chapters 1-4. An excellent, lucid account of the field developed in a convincing, logical and attractive way. Applications of Nuclear Physics, J. H. Fremlin, English Universities Press Ltd. [Hodder and Stoughton, London] (1964). This book is very readable and cogent. In places it is very entertaining and it is always pertinent. It is particularly good in its presentation of numbers and the sizes of things. The Structure of Matter, R.

The fission products are an inevitable consequence of nuclear reactor operation and are separated when the fuel elements are processed to recover uranium-235 and plutonium-239. 2. Accumulated fission products consist essentially of a mixture of some 37 elements with atomic numbers ranging from around 30 to around 70 (the rare earth elements). This process followed by physical or chemical separation provides an abundant supply of radioisotopes such as krypton-85 and caesium-l37. The fission process is also used for the preparation of some shorter-lived radioisotopes such as iodine-131 and xenon-l33 which cannot easily be produced by other means, but are obtained by irradiation of a uranium target specifically for this purpose.

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