Feynman's tips on physics : a problem-solving supplement to by Richard P Feynman; Michael A Gottlieb; Ralph Leighton;

By Richard P Feynman; Michael A Gottlieb; Ralph Leighton; Matthew L Sands; Robert B Leighton; All authors

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Firstly, analysis makes it possible to show the insufficient nature of the majority of the currently available methods of optimisation of separation; secondly, it makes it possible to take a critical view regarding the proposed methods of optimisation; thirdly, analysis makes it possible to determine the most objective criterion whose properties are used in further stages in the determination of the quantitative characteristics of the process, invariant to the composition of initial material and the boundary size of separation.

The analysis of these criteria may be carried out more efficiently by dividing them in advance into individual groups in which it is more efficient to stress their weak and strong aspects. 2. SIMPLIFIED OPTIMISATION INDICATORS In industry, the efficiency of the classification process is evaluated using different methods. The efficiency of expressing the nature of these tasks, solved by classification, in these methods, will now be analysed. In chemical and thermal engineering and some other branches of industry, the Rozin–Rummler method is used widely.

K f Kc K f Kc This equation is not equal to zero because in a general case K f≠ K c. According to E. Douglas, the efficiency of the separation process is the product of the efficiency of extraction of the useful element into the concentrate, multiplied by the efficiency of removal of rock from the concentrate. Taking into account the factor that in enrichment, the quantitative increase of the amount of the valuable component in the concentrate is 37 γ f (β − α ) and the theoretically possible increase is α (1 − γ f ), E.

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