Refine
Year of publication
Document Type
- Article (19)
- Working Paper (11)
- Book (9)
- Part of a Book (3)
- Conference Proceeding (3)
- Preprint (3)
- Lecture (1)
- Other (1)
Keywords
- Bewusstsein (10)
- consciousness (8)
- science (7)
- Religion (6)
- Eriugena (5)
- Evolution (5)
- pattern formation (5)
- religion (5)
- Heisenberg (4)
- Neurobiologie (4)
Has Fulltext
- yes (50)
Institute
- Veröffentlichungen von Akademiemitgliedern (50) (remove)
Psychology's territories - historical and contemporary perspective from different disciplines
(2007)
What determines the territories of psychology? How have the boundaries of psychological research and practice been developed in history, and how might or should they be changed nowadays? This volume presents new approaches to these questions, resulting from a three-year collaboration among internationally known psychologists, neuroscientists, social scientists and historians and philosophers of science from Germany and the United States under the auspices of the Berlin-Brandenburg Academy of Sciences and Humanities. The authors reflect critically on traditional and current views of psychology on the basis of focused historical and contemporary case studies of three broad topic areas: How have psychological concepts been used in disciplines such as psychology, philosophy, or neuroscience, as well as in daily life? Has the use of instruments in psychological research expanded or restricted the discipline’s reach? And how have applications of psychological thinking and research worked in practical contexts? The volume thus presents essays that investigate the separations as well as the interactions between psychology and its neighboring disciplines and, moreover, essays that try to overcome disciplinary distinctions in exemplary ways. The contributions aim to make historical and philosophical studies of psychology relevant to contemporary concerns, and to show how psychology can profit from better interdisciplinary cooperation, thus improving mutual understanding between different scientific cultures.
The generation of viral mutants in vitro was demonstrated by treatment of the isolated RNA of Tobacco Mosaic Virus by nitrous acid. This agent causes deaminations converting cytosine into uracil, and adenine into hypoxanthine. Our assay for mutagenesis was the production of local lesions on a tobacco variety on which the untreated strain produces systemic infections only. A variety of different mutants are generated in this way. Quantitative analysis of the kinetics of mutagenesis leads to the conclusion that alteration of a single out of the 6000 nucleotides of the viral RNA is sufficient for causing a mutation.
The development of modern science has depended strongly on specific features of the cultures involved; however, its results are widely and transculturally accepted and applied. The science and technology of electricity, for example, emerged as a specific product of post-Renaissance Europe, rooted in the Greek philosophical tradition that encourages explanations of nature in theoretical terms. It did not evolve in China presumably because such encouragement was missing. The transcultural acceptance of modern science and technology is postulated to be due, in part, to the common biological dispositions underlying human cognition, with generalizable capabilities of abstract, symbolic and strategic thought. These faculties of the human mind are main prerequisites for dynamic cultural development and differentiation. They appear to have evolved up to a stage of hunters and gatherers perhaps some 100 000 years ago. However, the extent of the correspondence between some constructions of the human mind and the order of nature, as revealed by science, is a late insight of the last two centuries. Unless we subscribe to extreme forms of constructivism or historical relativism, we may take the success and the formal structure of science as indications of a close, intrinsic relation between the physical and the mental, between the order of nature and the structure of human cognition. At the metatheoretical level, however, modern science is consistent with philosophical and cultural diversity.
Non-Oberbeck-Boussinesq (NOB) effects on the Nusselt number Nu and Reynolds number Re in strongly turbulent Rayleigh-Benard convection in liquids were investigated both experimentally and theoretically. In the experiment, the heat current, the temperature difference, and the temperature at the horizontal mid-plane were measured. Three cells of different heights L, all filled with water and all with aspect ratio T close to 1 were used. For each L, about 1.5 decades in Ra were covered, together spanning the ränge 108 < Ra < 1011. For the largest temperature difference between the bottom and top plates of ? = 40K the kinematic viscosity and the thermal expansion coefficient, due to their temperature dependence, varied by more than a factor of two. The Oberbeck-Boussinesq (OB) approximation of temperature independent material parameters thus was no longer valid. The ratio Ï? of the temperature drops across the bottom and top thermal boundary layers became as small as Ï? = 0.83, as compared to the ratio Ï? = 1 in the OB case. Nevertheless, the Nusselt number Nu was found to be only slightly smaller (at most 1.4%) than in the next larger cell with the same Rayleigh number, where the material parameters were still nearly height-independent. The Reynolds numbers in the OB and NOB case agreed with each other within the experimental resolution of about 2%, showing that NOB effects for this parameter were small as well. Thus Nu and Re are rather insensitive against even significant deviations from OB conditions. Theoretically, we first account for the robustness of Nu with respect to NOB corrections: the NOB effects in the top boundary layer cancel those which arise in the bottom boundary layer as long as they are linear in the temperature difference ?. The net effects on Nu are proportional to ?2 and thus increase only slowly and still remain minor despite drastic material parameter changes. We then extend the Prandtl-Blasius boundary-layer theory to NOB Rayleigh-Benard flow with temperature dependent viscosity and thermal diffusivity. This allows the calculation of the shift of the bulk temperature, the temperature drops across the boundary layers, and the ratio Ï? without introducing any fitting parameter. The calculated quantities are in very good agreement with experiment. When in addition we use the experimental finding that for water the sum of the top and bottom thermal boundary-layer widths (based on the slopes of the temperature profiles at the plates) remains unchanged under NOB effects within experimental resolution, the theory also gives the measured small Nusseltnumber reduction for the NOB case. In addition, it predicts an increase by about 0.5% of the Reynolds number, which is also consistent with the experimental data. By theoretically studying hypothetical liquids with only one of the material parameters being temperature dependent, we shed further light on the origin of NOB corrections in water: While the NOB deviation of x from its OB value Ï? = 1 mainly originates from the temperature dependence of the viscosity, the NOB correction of the Nusselt number primarily originates from the temperature dependence of the thermal diffusivity. Finally, we give the predictions from our theory for the NOB corrections if glycerol is used as operating liquid.
Der Vortrag über den im Titel „Naturwissenschaft und Menschenbild“ umschriebenen Problemkreis, der natur- und kulturwissenschaftliche Aspekte betrifft, bildete den Abschluss des Symposiums über das Thema „Wie entstehen neue Qualitäten in komplexen Systemen“ am 18. Dezember 1998 in Berlin zum 50-jährigen Gründungsjubiläum der Max-Planck-Gesellschaft. Schwerpunkte sind Reichweite und Grenzen naturwissenschaftlicher Erklärung von Bewusstsein, evolutionsbiologische Grundlagen von Kooperativität und Empathie, sowie die kulturellen Verallgemeinerungs- und Gestaltungsmöglichkeiten biologisch angelegter Fähigkeiten, insbesondere was die Aktivierung der fragilen und begrenzten, aber durchaus realen und wichtigen Ressource „Gemeinsinn“ angeht.
Abstract (ger): Die Flüssigkeitsschichten, die um ein sich bewegendes Molekül herumfließen, haben infolge der endlichen Abmessungen der Flüssigkeitsmolekeln eine endliche Dicke. Die Berücksichtigung dieses Umstandes führt zu einer Modifikation der Stokesschen Gesetze der Kontinuumstheorie für den Zusammenhang zwischen Reibung und Viskosität. Es ergibt sich die richtige Größenordnung und ungefähr die richtige Radienabhängigkeit der beobachteten Mikroreibung, und zwar sowohl für die Rotation als auch für die Translation.
Die Entstehung der modernen Naturwissenschaften beruhte auf sehr spezifischen Merkmalen der daran beteiligten Kulturen, und doch sind ihre Erkenntnisse und Ergebnisse transkulturell und weltweit akzeptiert. So waren die Elektrizitätslehre und die Elektrotechnik spezifische Produkte der europäischen Kultur der Neuzeit, die ihrerseits auf einer bestimmten Sequenz und Kombination kultureller und interkultureller Entwicklungen bis zurück zur altgriechischen Philosophie aufbauten. Sie entstanden nicht in China, wo die Kraft des theoretischen Denkens nicht in gleicher Weise eingeschätzt wurde. Warum wurden dann aber moderne Wissenschaft und Technik transkulturell wirksam? Ein Hauptgrund dafür dürfte darin bestehen, daß die zugrunde liegenden kognitiven Fähigkeiten - Fähigkeiten der Abstraktion, des symbolischen und strategischen Denkens - auf einer biologischen Basis beruhen, die der gesamten heutigen Spezies Mensch gemeinsam ist. Gegenstand wissenschaftlicher Erkenntnis sind aber auch die prinzipiellen Grenzen der Erkenntnis; sie bedingen, daß naturwissenschaftliches Denken, das seine eigenen Grenzen kritisch reflektiert, auf der metatheoretischen Ebene mit verschiedenen philosophischen und kulturellen Interpretationen des Menschen und der Welt vereinbar ist. Dazu gehören auch religiöse Interpretationen, die die Ordnung der Natur mit dem menschlichen Geist verbinden und es dem Menschen aufgeben, diese Ordnung mit Hilfe seines Denkens zu erleben und zu erfahren.
The short paper introduces the concept of possible branches of double-stranded DNA (later sometimes called palindromes): Certain sequences of nucleotides may be followed, after a short unpaired stretch, by a complementary sequence in reversed order, such that each DNA strand can fold back on itself, and the DNA assumes a cruciform or tree-like structure. This is postulated to interact with regulatory proteins.