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Observability and Scientific Realism It is commonly thought that the birth of modern natural science was made possible by an intellectual shift from a mainly abstract and specuJative conception of the world to a carefully elaborated image based on observations. There is some grain of truth in this claim, but this grain depends very much on what one takes observation to be. In the philosophy of science of our century, observation has been practically equated with sense perception. This is understandable if we think of the attitude of radical empiricism that inspired Ernst Mach and the philosophers of the Vienna Circle, who powerfully influenced our century's philosophy of science. However, this was not the atti tude of the f ounders of modern science: Galileo, f or example, expressed in a f amous passage of the Assayer the conviction that perceptual features of the world are merely subjective, and are produced in the 'anima!' by the motion and impacts of unobservable particles that are endowed uniquely with mathematically expressible properties, and which are therefore the real features of the world. Moreover, on other occasions, when defending the Copernican theory, he explicitly remarked that in admitting that the Sun is static and the Earth turns on its own axis, 'reason must do violence to the sense' , and that it is thanks to this violence that one can know the tme constitution of the universe.
Scientific realism is the view that our best scientific theories give approximately true descriptions of both observable and unobservable aspects of a mind-independent world. Debates between realists and their critics are at the very heart of the philosophy of science. Anjan Chakravartty traces the contemporary evolution of realism by examining the most promising strategies adopted by its proponents in response to the forceful challenges of antirealist sceptics, resulting in a positive proposal for scientific realism today. He examines the core principles of the realist position, and sheds light on topics including the varieties of metaphysical commitment required, and the nature of the conflict between realism and its empiricist rivals. By illuminating the connections between realist interpretations of scientific knowledge and the metaphysical foundations supporting them, his book offers a compelling vision of how realism can provide an internally consistent and coherent account of scientific knowledge.
Provides a spirited defence of anti-realism in philosophy of science. Shows the historical evidence and logical challenges facing scientific realism.
What is science? -- Scientific inference -- Explanation in science -- Realism and anti-realism -- Scientific change and scientific revolutions -- Philosophical problems in physics, biology, and psychology -- Science and its critics.
In our everyday activities we use material objects in different shapes and forms to solve various practical problems. We may use a knife to tighten a screw, turn an old washing machine drum into a fireplace, use the edge of a kitchen countertop to open a bottle, or place a hammer on the puncture patch glued to a bike’s inner tube to exert pressure on the patch until the glue dries. How should we identify these objects? What functions do they have? If we want to understand the role which material objects play in our everyday activities, we need to move away from universal identifications of objects. This is because universal identifications are not sensitive to contextual differences and cannot describe how each individual user connects to their surrounding objects in an infinite variety of contexts. Problem-Solving Technologies provides a user-friendly understanding of technological objects. This book develops a framework to characterise and categorize technological objects at the level of users’ subjective experiences.
Scientific realism is the optimistic view that modern science is on the right track. This book argues that the history of science does not undermine this notion, suggesting it as the best philosophical account of science.
Michael Behe, William Dembski, Stephen Meyer As progress in science continues to reveal unimagined complexities, three scientists revisit the difficult and compelling question of the origin of our universe. As mathematician, biochemist, and philosopher of science, they explore the possibility of developing a reliable method for detecting an intelligent cause and evidence for design at the origin of life. In the process, they present a strong case for opening and pursuing a fruitful exchange between science and theology. Mathematician William Dembski, author of The Design Inference, first argues that new developments in the information sciences make intelligent design objectively and scientifically detectable-he identifies the signs of design. Next, philosopher of science, Stephen Meyer, and biochemist Michael Behe, author of Darwin's Black Box, argue that these signs are now clearly evident in both the architecture of the universe and the features of living systems. Other essays by the authors defend the scientific status of the theory of intelligent design and show how that theory supports traditional religious belief without necessarily "proving" the existence of God. In a concluding essay, Michael Behe responds to critics of his best selling book, Darwin's Black Box, thus bringing readers up-to-date on the status of the contemporary design argument in biology.
By combining excerpts from key historical writings with commentary by experts, Philosophy of Science: An Historical Anthology provides a comprehensive history of the philosophy of science from ancient to modern times. Provides a comprehensive history of the philosophy of science, from antiquity up to the 20th century Includes extensive commentary by scholars putting the selected writings in historical context and pointing out their interconnections Covers areas rarely seen in philosophy of science texts, including the philosophical dimensions of biology, chemistry, and geology Designed to be accessible to both undergraduates and graduate students
This two-volume collection of cutting edge thinking aboutscience and religion shows how scientific and religious practicesof inquiry can be viewed as logically compatible, complementary,and mutually supportive. Features submissions by world-leading scientists andphilosophers Discusses a wide range of hotly debated issues, including BigBang cosmology, evolution, intelligent design, dinosaurs andcreation, general and special theories of relativity, dark energy,the Multiverse Hypothesis, and Super String Theory Includes articles on stem cell research and Bioethics byWilliam Hurlbut, who served on President Bush's BioethicsCommittee
This comprehensive anthology draws together writings by leading philosophers of science and will prove invaluable for any philosophy of science course.