All Stories

  1. Effects of number scaling on entangled states in quantum mechanics
  2. Effects of a scalar scaling field on quantum mechanics
  3. Effects of gauge theory based number scaling on geometry
  4. Representations of Each Number Type That Differ by Scale Factors
  5. Local availability of mathematics and number scaling: effects on quantum physics
  6. Effects on Quantum Physics of the Local Availability of Mathematics and Space Time Dependent Scaling Factors for Number Systems
  7. Reference frame fields based on quantum theory representations of real and complex numbers
  8. COMPLEX RATIONAL NUMBERS IN QUANTUM MECHANICS
  9. Towards a Coherent Theory of Physics and Mathematics: The Theory–Experiment Connection
  10. Representation of complex rational numbers in quantum mechanics
  11. The theory experiment connection: Rn space and inflationary cosmology
  12. Models of Quantum Turing Machines
  13. Cyclic networks of quantum gates
  14. Space searches with a quantum robot
  15. Efficient implementation and the product-state representation of numbers
  16. Representation of natural numbers in quantum mechanics
  17. Simple example of definitions of truth, validity, consistency, and completeness in quantum mechanics
  18. The Landauer resistance and band spectra for the counting quantum turing machine
  19. Quantum robots and environments
  20. Models of Quantum Turing Machines
  21. Transmission and spectral aspects of tight-binding Hamiltonians for the counting quantum Turing machine
  22. Tight Binding Hamiltonians and Quantum Turing Machines
  23. Quantum ballistic evolution in quantum mechanics: Application to quantum computers
  24. Unitary dilation models of Turing machines in quantum mechanics
  25. Weldon Spring historical dose estimate
  26. Comment on "Dissipation in Computation"
  27. Quantum mechanical hamiltonian models of turing machines
  28. Quantum Mechanical Models of Turing Machines That Dissipate No Energy
  29. Quantum mechanical Hamiltonian models of discrete processes
  30. The computer as a physical system: A microscopic quantum mechanical Hamiltonian model of computers as represented by Turing machines
  31. A note on the Everett interpretation of quantum mechanics
  32. Finite and infinite measurement sequences in quantum mechanics and randomness: The Everett interpretation
  33. Possible experimental test of local commutativity
  34. Models of Zermelo Frankel set theory as carriers for the mathematics of physics. II
  35. Models of Zermelo Frankel set theory as carriers for the mathematics of physics. I
  36. On procedures for the measurement of questions in quantum mechanics
  37. Some consequences of the strengthened interpretative rules of quantum mechanics
  38. On definitions of validity applied to quantum theories
  39. Possible Strengthening of the Interpretative Rules of Quantum Mechanics
  40. Procedures in Quantum Mechanics without Von Neumann's Projection Axiom
  41. Decision Procedures in Quantum Mechanics
  42. Some Aspects of the Relationship between Mathematical Logic and Physics. II
  43. The Imposition of Empirical Acceptability Conditions on Sequences of Single Measurements
  44. Some Properties of the Contact between Theory and Experiment
  45. Nuclear Recoil and Simple Nuclear Reactions
  46. Effect of Angular Localization on Direct Nuclear Reactions
  47. Effect of the Optical Potential on the Nucleon Momentum Distribution in Nuclei. The Pickup Reaction
  48. The effect of the Pauli exclusion principle in high energy nucleon-nucleus scattering
  49. Nuclear rearrangement and simple nuclear reactions
  50. Nuclear Structure and Simple Nuclear Reactions
  51. Nuclear Reactions of Low-ZElements with 5.7-Bev Protons
  52. Cosmic-Ray Production Rate and Mean Removal Time of Beryllium-7 from the Atmosphere
  53. Quantum Robots Plus Environments
  54. The Representation of Numbers by States in Quantum Mechanics
  55. Letters to Paul Benioff
  56. Quantum Robots