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Construction of a model as an information channel between the physical phenomenon and observer

机译:作为物理现象与观察者之间的信息渠道的建设

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This study proposes a method to assess the accuracy limit of the measurements of physical variables to formulate a model, from the perspective of storing, transmitting, processing, and using of information by an observer. The results show the existence of a problem that advanced statistical methods are provably incapable of solving due to the presence of initial and inevitable model uncertainties arising from a qualitative set of base quantities and the number of variables which are considered, even before verifying the different sources of the uncertainties and executing any experimental measurements or computer calculations. The information contained in the model can be used theoretically and practically to test the solutions to a wide range of problems. Revealing the measurement accuracy limit (in addition to the Heisenberg inequality) with the help of the information transmitted from the studied phenomenon to the observer, which is then stored in the model, helps to perform two additional tasks: choosing the preferred method for measuring a particular physical constant, in physics; and calculating the exact value of the threshold discrepancy between the model and the measured object, in measurement theory. Further research indicates the possibility of allying these methods in biological and medical sciences.
机译:本研究提出了一种评估物理变量测量的精度极限来制定模型的方法,从存储,发送,处理和使用观察者的信息的角度来看。结果表明,由于存在由定性基础数量的初始和不可避免的模型不确定性以及所考虑的变量数而导致的初始和不可避免的模型不确定性,即使在验证不同的来源之前,也存在溶解的问题不确定性和执行任何实验测量或计算机计算。模型中包含的信息可以理论上可以使用,并且实际上可以测试解决方案到广泛的问题。借助从研究现象传输到观察者的信息,揭示测量精度限制(除了Heisenberg不平等),然后将其存储在模型中,有助于执行两个附加任务:选择用于测量的优选方法特定物理常数,物理学;在测量理论中计算模型与测量对象之间的阈值差异的精确值。进一步的研究表明,在生物和医学科学中盟友的可能性。

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