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    A theory with testable predictions is more susceptible to... — Carmelics
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    Supports→Loop quantum gravity is more scientific (in the Popperian sense) than string theory

    A theory with testable predictions is more susceptible to falsification

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    Loop quantum gravity is more scientific (in the Popperian sense) than string the...More falsifiable theories are more scientific in the Popperian senseThe discreteness of area and volume operators are concrete predictions of loop q...These predictions have potentially testable consequences

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    A theory that passes a test has only avoided falsification on that occ...81%A theory is not refuted by evidence it successfully predicts80%A theory that is an extension of another theory has more ways of being...80%Scientific theories should be logically falsifiable — inconsistent wit...80%

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    Loop quantum gravity is seemingly less plagued by a lack of predictions, and indeed it is often claimed that the discreteness of area and volume operators are concrete predictions of the theory, with potentially testable consequences. Proponents of this approach argue that this makes the theory more susceptible to falsification, and thus more scientific (in the sense of Popper; see the entry on Karl Popper) than string theory (see Smolin 2006 for this line of argument). However, it is still qu

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