This book details the author's mission to develop a new method for measuring the lowering of vapor pressure resulting from dissolving a substance in a liquid. This effect can be used to determine the molecular weight of the solute in non-volatile solvents. The author reviews previous methods and their shortcomings and discusses in detail the development and testing of a new differential dynamic method that eliminates the major sources of error in earlier approaches. The method's accuracy was tested by measuring the vapor pressure lowering of a series of potassium chloride solutions, and the results were about 20 times more accurate than the best previous work with similar solutions. The implications of these findings for the study of molecular weights in solution are discussed, and the book's insights are a significant contribution to the field of chemistry.
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Paperback. Zustand: New. Print on Demand. This book details the author's mission to develop a new method for measuring the lowering of vapor pressure resulting from dissolving a substance in a liquid. This effect can be used to determine the molecular weight of the solute in non-volatile solvents. The author reviews previous methods and their shortcomings and discusses in detail the development and testing of a new differential dynamic method that eliminates the major sources of error in earlier approaches. The method's accuracy was tested by measuring the vapor pressure lowering of a series of potassium chloride solutions, and the results were about 20 times more accurate than the best previous work with similar solutions. The implications of these findings for the study of molecular weights in solution are discussed, and the book's insights are a significant contribution to the field of chemistry. This book is a reproduction of an important historical work, digitally reconstructed using state-of-the-art technology to preserve the original format. In rare cases, an imperfection in the original, such as a blemish or missing page, may be replicated in the book. print-on-demand item. Bestandsnummer des Verkäufers 9781527926165_0
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