For example, the OECD Policy Coherence for Development. By following an optimal control theory, we numerically present an optimal protocol and illustrate our findings by using a single-qubit system. Globally, the principle of policy coherence for development (PCD) has become generally accepted. The obtained bounds hold for arbitrary operational time and control protocol. This bound quantitatively implies that the creation of quantum coherence in the energy eigenbasis during the erasure process inevitably leads to additional heat costs. While the overall discussion has wide-ranging ramifications, for the purposes of this Review, we will focus on the subfield where the debate is most amenable. Therefore, we should avoid using long phrases and sentences and instead help the learner by using sounds sparingly, adding complementary images and simple and concise on-screen content. To clarify the relation between quantum coherence and dissipation, we derive a lower bound for heat dissipation in terms of quantum coherence. Cohesion refers to the many ways (grammatical, lexical, semantic, metrical, alliterative) in which the elements of a text are linked together.Cohesion differs from coherence in that a text can be internally cohesive but be incoherent that is, make no sense. In principle, the study of quantum effects in complex biological systems has a history stretching back to the early years of quantum mechanics however, only recently has it truly taken center stage as a scientifically testable concept. Abstract Submission Design Society SIG on Design Theory, Paris, 4-5 February 2013 Coherence as Design Principle Leonidas Koutsoumpos Lecturer of Theory in Architectural Design National Technical University of Athens, Greece Coherence is a glue. Coherence Principle Guideline 3 Avoid e-Lessons with Extraneous Words This principle states that simple, basic and concise on-screen text helps learning. By considering a scenario wherein information is encoded in an open quantum system whose dynamics are described by the Markovian Lindblad equation, we show that the dissipated heat is lower bounded by the conventional Landauer cost, as well as a correction term inversely proportional to the operational time. In this Letter, we investigate the heat dissipation associated with finite-time information erasure and the effect of quantum coherence in such processes. The Landauer principle states that any logically irreversible information processing must be accompanied by dissipation into the environment. Coherence-controlled holographic microscopy principle embodiment into Q-PHASE microscope: story of a successful technology transfer.
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