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- John Beloff, What Are Minds For?_Two positions on the mind-body problem are here_ _compared:__Materialism__, which is here taken to mean the thesis_ _that mind plays no part in the determination of behaviour so that,_ _for all the good it does us, we might just as well have evolved as_ _insentient automata, and_ _Ineractionism_ _which is here taken as its_ _contradictory._.
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How do I know whether there are any minds beside my own? This problem of other minds in philosophy raises questions which are at the heart of all philosophical investigations--how it is that we know, what is in the mind, and whether we can be certain about any of our beliefs. In this book, Anita Avramides begins with a historical overview of the problem from the Ancient Skeptics to Descartes, Malebranche, Locke, Berkeley, Reid, and Wittgenstein. The second part of the book investigates the views of influential contemporary philosophers such as Strawson, Davidson, Nagel and Searle.
Scepticism is sometimes expressed about whether there is any interesting problem of other minds. In this paper I set out a version of the conceptual problem of other minds which turns on the way in which mental occurrences are presented to the subject and situate it in relation to debates about our knowledge of other people's mental lives. The result is a distinctive problem in the philosophy of mind concerning our relation to other people.
Explaining the mind by building machines with minds runs into the other-minds problem: How can we tell whether any body other than our own has a mind when the only way to know is by being the other body? In practice we all use some form of Turing Test: If it can do everything a body with a mind can do such that we can't tell them apart, we have no basis for doubting it has a mind. But what is "everything" a body with a mind can do? Turing's original "pen-pal" version (the TT) only tested linguistic capacity, but Searle has shown that a mindless symbol-manipulator could pass the TT undetected. The Total Turing Test (TTT) calls for all of our linguistic and robotic capacities; immune to Searle's argument, it suggests how to ground a symbol manipulating system in the capacity to pick out the objects its symbols refer to. No Turing Test, however, can guarantee that a body has a mind. Worse, nothing in the explanation of its successful performance requires a model to have a mind at all. Minds are hence very different from the unobservables of physics (e.g., superstrings); and Turing Testing, though essential for machine-modeling the mind, can really only yield an explanation of the body.
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