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The isokinetic relationship. VI. Equilibrium systems
Affiliation:1. Ethiopian Institute of Architecture, Building Construction and City Development, Ethiopia;2. GFA Consulting Group, Biodiversity and Forests Program, Ethiopia;3. Addis Ababa University, College of Natural Science, Centre for Environmental Science, Ethiopia;1. Kunming Botanical Garden, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming 650204, Yunnan, China;2. Yunnan Key Laboratory for Integrative Conservation of Plant Species with Extremely Small Populations, Kunming, 650204, China;3. Key Laboratory for Plant Diversity and Biogeography of East Asia, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, 650204, Yunnan, China;1. Department of Forest and Climate Science, College of Agriculture, Food and Climate Science, Injibara University, Ethiopia;2. Department of Natural Resource Management, College of Agriculture, Food and Climate Science, Injibara University, Ethiopia;3. Ethiopian Biodiversity Institute, P.O. Box- 30726, Addis Ababa, Ethiopia;1. Zambia Agriculture Research Institute, Plant Protection Division, Mt. Makulu Research Station, Private Bag 7, Chilanga, Zambia;2. Indaba Agricultural Policy Research Institute, 26A Middleway Rd, P.O. 320142, Kabulonga, Lusaka, Zambia;3. National Food and Nutrition Commission, Plot# 5112 Lumumba Road, Lusaka, Zambia;4. Khulisa Management Services, Inc. 4550 Montgomery Avenue, Suite 220, Bethesda, MD, 20814, USA
Abstract:The isoequilibrium relationship (IER), i.e. the occurrence of a common point of intersection of the van 't Hoff plots of a homologous reaction series, is investigated on the basis of a master equation theory describing forward and reverse reaction rates. The relation between the isoequilibrium temperature and the isokinetic temperatures of forward and reverse reactions is deduced theoretically and compared with experimental results.
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