| 
| related words |  | microtubule |  | perceive |  | microtubules |  | nrules |  | tegmark |  | everettian |  | organism |  | awareness |  | brains |  | everetts |  | perceptual |  | tubulin |  | unconscious |  | beings |  | typicality |  | replication |  | ontologically |  | hameroff |  | subjectivity |  | beliefs |  | 
| related documents |  | Quantum Probability from Subjective Likelihood: improving on Deutsch's
  proof of the probability rule [0312157v2] |  | Probability in the Everett World: Comments on Wallace and Greaves [0604191v1] |  | Limits on Efficient Computation in the Physical World [0412143v2] |  | Does Indeterminism Give Rise to an Intrinsic Time Arrow? [0101088v1] |  | The Non-mechanistic Character of Quantum Computation [9811039v4] |  | Quantum Computing and Hidden Variables II: The Complexity of Sampling
  Histories [0408119v1] |  | Fault-tolerant quantum computation [9712048v1] |  | Coherent Spin Dynamics into Space Quantization [0609039v1] |  | In defence of naivete: The conceptual status of Lagrangian QFT [0112148v1] |  | 
| related topics |  | {theory, mechanics, state} |  | {time, systems, information} |  | {error, code, errors} |  | {algorithm, log, probability} |  | {time, wave, function} |  | {spin, pulse, spins} |  | {measurement, state, measurements} |  | {field, particle, equation} |  | {qubit, qubits, gate} |  | {particle, mechanics, theory} |  | {time, decoherence, evolution} |  | {cos, sin, state} |  | {let, theorem, proof} |  | {temperature, thermal, energy} |  | {energy, state, states} |  | {classical, space, random} |  | {energy, gaussian, time} |  | {state, algorithm, problem} |  | {observables, space, algebra} |  | {level, atom, field} |  |