The Fluid Discontinuity Theory

Dev Arastu Panchariya
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Abstract

Theoretical Physics is perhaps the only class of philosophies that has really enhanced and evolved itself to a lot of extent seeking clues towards the ultimate nature of reality. Stretching from the Theory of General Relativity and Quantum Physics, it’s been diversified with quite peculiar answers to multiple deep facets. However, still there is a significant fragment of Physics which is yet to be developed in that theoretical frame of system where the mathematical analysis turns in a more definitive role and thus, holds the intersection of certain other branches of the field and this area is Fluid Dynamics or Hydrodynamics. Although there is no question over some forsooth brilliant contributions in the regime but still, this discovery will deal with a nonpareil strand in order to fill some gaps which will determine new findings to lead the coming times much exclusively through the realm. The proposed discovery in this paper, being chronicle on the most primordial basis; is about quilting the distinction of waves as a whole in the fluid being in layered form and its impact via penetration of mass into those in form of respective disturbance in its fabrication of fundamental geometry. In other words, the idea proposed is about investigating and evolving the understanding of fluid discontinuity in distinctive extents forming geometrical patterns which is the idea that has also been undertaken to insights by some of the greatest Philosophers, Physicists, and Mathematicians of the last two centuries from Helmholtz to Lord Kelvin to Einstein but unfortunately it could not be attained in a full turn of deeper understanding in terms of Theoretical and Mathematical evolution as attempted by all these greatest forefathers of Sciences. In order to extract the idea with the overlap of modern mathematical integration, the entire formation of the defined system is taken into the account by establishing geometrical interpretations which will also develop more protean insights into the field and fill many further gaps in the classical regime of the Dynamics and gives a modern turn to it. The fabrication of the idea is systematically unfolded in terms of both Theoretical & Mathematical engagements concerning to the respective structures taking place in form of different theories partaking in an evolutionary methodology.
流体不连续理论
理论物理学也许是唯一一门真正在很大程度上增强和发展了自己的哲学,它在寻找通向现实的终极本质的线索。从广义相对论和量子物理学延伸开来,它已经变得多样化,对多个深层次的问题给出了相当奇特的答案。然而,仍然有一个重要的物理碎片,尚未在系统的理论框架中发展,其中数学分析转向更明确的角色,因此,保持该领域某些其他分支的交叉点,这个领域是流体动力学或流体动力学。虽然毫无疑问,在这个政权中有一些杰出的贡献,但这一发现将处理一个不可比拟的链,以填补一些空白,这将决定新的发现,以领导未来的时代,更多地通过领域。本文提出的发现,是在最原始的基础上编年史的;是关于将波作为一个整体在流体中以分层形式存在的区别以及它的影响通过质量渗透到那些在其基本几何构造中以各自扰动的形式存在。换句话说,这个想法是关于调查和发展对流体不连续的理解在不同程度上形成几何图案这个想法也被一些最伟大的哲学家,物理学家,和过去两个世纪的数学家,从亥姆霍兹到开尔文勋爵再到爱因斯坦,但不幸的是,它无法像所有这些最伟大的科学先驱所尝试的那样,在理论和数学进化方面全面深入地理解。为了提取与现代数学整合重叠的思想,通过建立几何解释来考虑已定义系统的整个形成,这也将发展对该领域的更多样化的见解,并填补动力学经典制度中的许多进一步的空白,并赋予它一个现代的转向。这个想法的制造是系统地展现在理论和数学的两个方面,涉及到以参与进化方法论的不同理论的形式发生的各自结构。
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