Quantum Manner of Description In The Micro world

V. Tahiri, Astrit Denaj, Jorgo Mandili, Fatjon Musli
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Abstract

In the classical manner of description, implicitly is accepted the independence of physical processes by the method of observation and the possibility of accurately and completely description of each process. In quantum mechanics such abstractions, are unacceptable. It affirms that the properties of micro-objects are appeared during their interactions with the measurements apparatus, whereas the theoretical predictions are formulated as the expected results of interaction with a certain probability. The set of such interactions leads to the statistical distribution of these probabilities. In the microworld can’t be done without intermediaries. As necessity intermediaries are the measurements apparatus. In this article we will present the principal idea, that the adequate manner of description is determined by chosen method of observation. So, instead of the known concept of relativity to the calculation system (the classical manner of description), is introduced the concept of relativity at the observation tools (quantum manner of description), a more general concept than the first.
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微观世界中的量子描述方式
在经典的描述方式中,通过观察的方法隐含地接受了物理过程的独立性,以及对每个过程进行准确和完整描述的可能性。在量子力学中,这样的抽象是不可接受的。它肯定了微观物体的性质是在它们与测量仪器相互作用的过程中表现出来的,而理论预测则是根据它们以一定的概率相互作用的预期结果来表述的。这些相互作用的集合导致了这些概率的统计分布。在微观世界里,没有中介是做不到的。作为必要的中介是测量工具。在本文中,我们将提出其主要思想,即适当的描述方式是由所选择的观察方法决定的。于是,取代了已知的相对论概念到计算系统(经典的描述方式),在观测工具上引入了相对论的概念(量子的描述方式),这是一个比第一个更普遍的概念。
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