**Authors:** Gunn Quznetsov

Large Hadron Collider (LHC) worked since 10 September 2008 till 14 February 2013 – RUNI. RUNII works from June 2015 for today. Huge resources have been spent, but did not receive any fundamentally new results - no superpartners, no extra dimensions, or gravitons, or black holes. no dark matter or dark energy, etc. etc .. As for the Higgs, the firstly, there is no argument in favor of the fact that the particle 124.5 - 126 GeV has some relation to the Higgs mechanism. Secondly, the Higgs field permeates the vacuum of space, which means that the mass of the Higgs vacuum and stability are closely linked. For a particle of mass near 126 GeV - enough to destroy the cosmos. The Standard Model of particle physics has not given an answer to the question of why the universe did not collapse after the Big Bang. Third, all the known elementary bosons are gauge - it is photons, W- and Z-bosons and gluons. It is likely that the 125-126 particle is of some hadron multiplet. That is, in recent years, many theoretical physicists have studied what is not in the nature. It are SUSY, WIMP, Higgs, BIG BANG hypothesis, etc. On the other hand already in 2006 - 2007 the logic analysis of these subjects described in books Logical foundation of fundamental theoretical hysics, LAMBERT Academic Publishing, 2013, ISBN-10: 365945088X, ISBN-13: 978-3659450884, Gunn Quznetsov Probabilistic Treatment of Gauge Theories , Nova Science Pub Inc, 2007, ISBN-10: 1600216277, ISBN-13: 978-1600216275, G. Quznetsov it showed that all physical events are determined by well-known particles - leptons, quarks and gauge bosons. In the study of the logical foundations of probability theory, I found that the terms and equations of the fundamental theoretical physics represent terms and theorems of the classical probability theory, more precisely, of that part of this theory, which considers the probability of dot events in the 3 + 1 space-time. In particular, the masses, moments, energies, spins, etc. turn out of parameters of probability distributions such events. ”Final Book” contains development and continuation of ideas of these books. Chapter 1 gives convenient updating of the Gentzen Natural Logic [3], a logic explanation of space-time relations, and logical foundations of the Probability Theory. The reader who isn’t interested in these topics, can pass this part and begin readings with Chapter 2. Chapter 2 receives notions and statements of Quantum Theory from properties of probvabilities of physical events. In Chapter 3 Electroweak Theory, Quarks-Gluon Theory and Gravity Theory are explained from these properties. For understanding of the maintenance of this book elementary knowledge in the field of linear algebra and the mathematical analysis is sufficient. 1

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