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  1. The construction of a scientific model: Otto Warburg and the building block strategy.Kärin Nickelsen - 2009 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 40 (2):73-86.
  • Physicochemical Biology and Knowledge Transfer: The Study of the Mechanism of Photosynthesis Between the Two World Wars.Kärin Nickelsen - 2022 - Journal of the History of Biology 55 (2):349-377.
    In the first decades of the twentieth century, the process of photosynthesis was still a mystery: Plant scientists were able to measure what entered and left a plant, but little was known about the intermediate biochemical and biophysical processes that took place. This state of affairs started to change between the two world wars, when a number of young scientists in Europe and the United States, all of whom identified with the methods and goals of physicochemical biology, selected photosynthesis as (...)
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  • The strategy of biological research programmes: Reassessing the ‘dark age’ of biochemistry, 1910–1930.Neil Morgan - 1990 - Annals of Science 47 (2):139-150.
    The historiography of the ‘dark age’ of biochemistry between 1910–1930 is examined. The biochemistry of the period is located within a larger contemporary debate on the interrelationship between structure and function on a submicroscopic level. It is suggested that biocolloid science was an understandable part of the historical development of biochemistry, representing a conceptual bridge between the cell biology of the late nineteenth century, and the era of structural macromolecular studies of proteins that began after 1930.
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  • The construction of a scientific model: Otto Warburg and the building block strategy.Kärin Nickelsen - 2009 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 40 (2):73-86.
    In the years 1919 to 1923, Otto Warburg published four papers that were to revolutionise the field of photosynthesis. In these articles, he introduced a number of new techniques to measure the rate of photosynthesis, put forward a new model of the mechanism and added a completely new perspective to the topic by attempting to establish the process’s efficiency in terms of the light quantum requirement. In this paper I trace the roots of Warburg’s series of contributions to photosynthesis research (...)
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  • Introduction to the Special Issue on Biology and Agriculture.Jonathan Harwood - 2006 - Journal of the History of Biology 39 (2):237 - 239.
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  • In Search of Mitochondrial Mechanisms: Interfield Excursions between Cell Biology and Biochemistry.William Bechtel & Adele Abrahamsen - 2007 - Journal of the History of Biology 40 (1):1-33.
    Developing models of biological mechanisms, such as those involved in respiration in cells, often requires collaborative effort drawing upon techniques developed and information generated in different disciplines. Biochemists in the early decades of the 20th century uncovered all but the most elusive chemical operations involved in cellular respiration, but were unable to align the reaction pathways with particular structures in the cell. During the period 1940-1965 cell biology was emerging as a new discipline and made distinctive contributions to understanding the (...)
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