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1The As If Principle : The Radically New Approach To Changing Your Life

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2Quantum States And Hardy's Formulation Of The Uncertainty Principle : A Symplectic Approach

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We express the condition for a phase space Gaussian to be the Wigner distribution of a mixed quantum state in terms of the symplectic capacity of the associated Wigner ellipsoid. Our results are motivated by Hardy's formulation of the uncertainty principle for a function and its Fourier transform. As a consequence we are able to state a more general form of Hardy's theorem.

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3The Matrix Principle : A Revolutionary Approach To Muscle Development

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We express the condition for a phase space Gaussian to be the Wigner distribution of a mixed quantum state in terms of the symplectic capacity of the associated Wigner ellipsoid. Our results are motivated by Hardy's formulation of the uncertainty principle for a function and its Fourier transform. As a consequence we are able to state a more general form of Hardy's theorem.

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4The Pauli Principle In The Soft-photon Approach To Proton-proton Bremstrahlung

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A relativistic and manifestly gauge-invariant soft-photon amplitude, which is consistent with the soft-photon theorem and satisfies the Pauli Principle, is derived for the proton-proton bremsstrahlung process. This soft-photon amplitude is the first two-u-two-t special amplitude to satisfy all theoretical constraints. The conventional Low amplitude can be obtained as a special case. It is demonstrated that previously proposed amplitudes for this process, both the (u,t) and (s,t) classes, violate the Pauli principle at some level. The origin of the Pauli principle violation is shown to come from two sources: (i) For the (s,t) class, the two-s-two-t amplitude transforms into the two-s-two-u amplitude under the interchange of two initial-state (or final-state) protons. (ii) For the (u,t) class, the use of an internal emission amplitude determined from the gauge-invariance constraint alone, without imposition of the Pauli principle, causes a problem. The resulting internal emission amplitude can depend upon an electromagnetic factor which is not invariant under the interchange of the two protons.

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5On The Resonance Spectra Of Particle-unstable Light Nuclei With A Sturmian Approach That Preserves The Pauli Principle

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The fundamental ingredients of the MCAS (multi-channel algebraic scattering) method are discussed. The main feature, namely the application of the sturmian theory for nucleon-nucleus scattering, allows solution of the scattering problem given the phenomenological ingredients necessary for the description of weakly-bound (or particle-unstable) light nuclear systems. Currently, to describe these systems, we use a macroscopic, collective model. Analyses show that the couplings to low-energy collective-core excitations are fundamental but they are physically meaningful only if the constraints introduced by the Pauli principle are taken into account. For this we introduce in the nucleon-nucleus system the Orthogonalizing Pseudo-Potential formalism, extended to collective excitations of the core. The formalism leads one to discuss a new concept, Pauli hindrance, which appears to be important especially to understand the structure of weakly-bound and unbound systems.

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6A Guide To American Christian Education For The Home And School : The Principle Approach

The fundamental ingredients of the MCAS (multi-channel algebraic scattering) method are discussed. The main feature, namely the application of the sturmian theory for nucleon-nucleus scattering, allows solution of the scattering problem given the phenomenological ingredients necessary for the description of weakly-bound (or particle-unstable) light nuclear systems. Currently, to describe these systems, we use a macroscopic, collective model. Analyses show that the couplings to low-energy collective-core excitations are fundamental but they are physically meaningful only if the constraints introduced by the Pauli principle are taken into account. For this we introduce in the nucleon-nucleus system the Orthogonalizing Pseudo-Potential formalism, extended to collective excitations of the core. The formalism leads one to discuss a new concept, Pauli hindrance, which appears to be important especially to understand the structure of weakly-bound and unbound systems.

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7An Order Theoretic Approach To The Banach Contraction Principle In Modular Spaces

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In the present note, the Banach contraction principle is proved in complete modular spaces via an order theoretic approach.

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8A New Approach To The Pontryagin Maximum Principle For Nonlinear Fractional Optimal Control Problems

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In this paper, we discuss a new general formulation of fractional optimal control problems whose performance index is in the fractional integral form and the dynamics are given by a set of fractional differential equations in the Caputo sense. We use a new approach to prove necessary conditions of optimality in the form of Pontryagin maximum principle for fractional nonlinear optimal control problems. Moreover, a new method based on a generalization of the Mittag-Leffler function is used to solving this class of fractional optimal control problems. A simple example is provided to illustrate the effectiveness of our main result.

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9Science, Paradox, And The Moebius Principle : The Evolution Of A "transcultural" Approach To Wholeness

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In this paper, we discuss a new general formulation of fractional optimal control problems whose performance index is in the fractional integral form and the dynamics are given by a set of fractional differential equations in the Caputo sense. We use a new approach to prove necessary conditions of optimality in the form of Pontryagin maximum principle for fractional nonlinear optimal control problems. Moreover, a new method based on a generalization of the Mittag-Leffler function is used to solving this class of fractional optimal control problems. A simple example is provided to illustrate the effectiveness of our main result.

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10How To Avoid The Ambiguity In Applying The Copernican Principle For Cosmic Topology: Take The Observational Approach

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It is often stated that homogeneity and isotropy of the Universe are assumptions of the almost Friedmann-Lema^itre (FL) model (the hot big bang model), inspired from the Copernican Principle. However, only local homogeneity and isotropy are required by the model: multiply connected almost FL models are locally homogeneous and isotropic, but they can be globally anisotropic and/or globally inhomogeneous. Toy models are used here to show how global anisotropy and/or global inhomogeneity of an almost FL model could be shown directly in observations. This approach may avoid having to make any assumptions regarding global anisotropy and inhomogeneity.

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11Entropic Force Approach In A Noncommutative Charged Black Hole And The Equivalence Principle

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Recently, Verlinde has suggested a novel model of duality between thermodynamics and gravity which leads to an emergent phenomenon for the origin of gravity and general relativity. In this paper, we investigate some features of this model in the presence of noncommutative charged black hole by performing the method of coordinate coherent states representing smeared structures. We derive several quantities, e.g. temperature, energy and entropic force. Our approach clearly exhibits that the entropic force on a smallest fundamental cell of holographic surface with radius $r_0$ is halted. Accordingly, we can conclude that the black hole remnants are absolutely inert without gravitational interactions. So, the equivalence principle of general relativity is contravened due to the fact that it is now possible to find a difference between the gravitational and inertial mass. In other words, the gravitational mass in the remnant size does not emit any gravitational field, therefore it is experienced to be zero, contrary to the inertial mass. This phenomenon illustrates a good example for a feasible experimental confirmation to the entropic picture of Newton's Second law in very short distances.

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12Coping With Life The Principle Way : A Plain-English Common Sense Approach To Solving The Problems Of Everyday Living

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Recently, Verlinde has suggested a novel model of duality between thermodynamics and gravity which leads to an emergent phenomenon for the origin of gravity and general relativity. In this paper, we investigate some features of this model in the presence of noncommutative charged black hole by performing the method of coordinate coherent states representing smeared structures. We derive several quantities, e.g. temperature, energy and entropic force. Our approach clearly exhibits that the entropic force on a smallest fundamental cell of holographic surface with radius $r_0$ is halted. Accordingly, we can conclude that the black hole remnants are absolutely inert without gravitational interactions. So, the equivalence principle of general relativity is contravened due to the fact that it is now possible to find a difference between the gravitational and inertial mass. In other words, the gravitational mass in the remnant size does not emit any gravitational field, therefore it is experienced to be zero, contrary to the inertial mass. This phenomenon illustrates a good example for a feasible experimental confirmation to the entropic picture of Newton's Second law in very short distances.

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13New Approach To The Affine P\'olya-Szeg\"o Principle And The Stability Version Of The Affine Sobolev Inequality

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Inspired by a recent work of Haddad, Jim\'enez and Montenegro, we give a new and simple approach to the recently established general affine P\'olya-Szeg\"o principle. Our approach is based on the general $L_p$ Busemann-Petty centroid inequality and does not rely on the general $L_p$ Petty projection inequality or the solution of the $L_p$ Minkowski problem. A Brothers-Ziemer-type result for the general affine P\'olya-Szeg\"o principle is also established. As applications, we reprove some sharp affine Sobolev-type inequalities and settle their equality conditions. We also prove a stability estimate for the affine Sobolev inequality on functions of bounded variation by using our new approach. As a corollary of this stability result, we deduce a stability estimate for the affine logarithmic--Sobolev inequality.

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14Setting The Renormalization Scale In PQCD: Comparisons Of The Principle Of Maximum Conformality With The Sequential Extended Brodsky-Lepage-Mackenzie Approach

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A key problem in making precise perturbative QCD (pQCD) predictions is how to set the renormalization scale of the running coupling unambiguously at each finite order. The elimination of the uncertainty in setting the renormalization scale in pQCD will greatly increase the precision of collider tests of the Standard Model and the sensitivity to new phenomena. Renormalization group invariance requires that predictions for observables must also be independent on the choice of the renormalization scheme. The well-known Brodsky-Lepage-Mackenzie (BLM) approach cannot be easily extended beyond next-to-next-to-leading order of pQCD. Several suggestions have been proposed to extend the BLM approach to all-orders. In this paper we discuss two distinct methods. One is based on the "Principle of Maximum Conformality" (PMC), which provides a systematic all-orders method to eliminate the scale- and scheme- ambiguities of pQCD. The PMC extends the BLM procedure to all orders using renormalization group methods; as an outcome, it significantly improves the pQCD convergence by eliminating renormalon divergences. An alternative method is the "sequential extended BLM" (seBLM) approach, which has been primarily designed to improve the convergence of pQCD series. The seBLM, as originally proposed, introduces auxiliary fields and follows the pattern of the $\beta_0$-expansion to fix the renormalization scale. However, the seBLM requires a recomputation of pQCD amplitudes including the auxiliary fields; due to the limited availability of calculations using these auxiliary fields, the seBLM has only been applied to a few processes at low-orders......

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15The Principal-Agent Problem; A Stochastic Maximum Principle Approach

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We study a general class of Principal-Agent problems in continuous time under hidden action. By formulating the model as a coupled stochastic optimal control problem we are able to find a set of necessary conditions characterizing optimal contracts, using the stochastic maximum principle. An example is carried out to illustrate the proposed approach to the Principal-Agent problem under linear stochastic dynamics with a quadratic performance function.

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16The Flavor-blind Principle: A Symmetrical Approach To The Gatto-Sartori-Tonin Relation

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We perform a systematic study of the generic Gatto-Sartori-Tonin relation, $\tan^2\theta_{ij}= m_i/m_j$. This study of fermion mixing phenomena leads us to the necessary conditions that are needed in order to obtain it without any approximation. We begin by considering two Dirac fermion families. By means of the hierarchy in the masses, it is found that a sufficient and necessary condition is to have a normal matrix with $m_{11}=0$. This matrix can be decomposed into two different linearly independent contributions. The origin for such two independent contributions can be naturally explained by what we shall call the flavor-blind principle. This principle states that Yukawa couplings shall be either flavor-blind or decomposed into several sets obeying distinct permutation symmetries. In general, it is shown that the symmetry properties of the introduced set of Yukawa matrices follow for $n$ fermion families the unique sequential breaking $S_{nL}\otimes S_{nR} \rightarrow S_{(n-1)L}\otimes S_{(n-1)R} \rightarrow \cdots \rightarrow S_{2L}\otimes S_{2R} \rightarrow S_{2A}$. The particular case of three fermion families explains why the four mass ratios parametrization that we recently proposed can be used even in the case of no hierarchical masses.

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17Particle-unstable Light Nuclei With A Sturmian Approach That Preserves The Pauli Principle

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Sturmian theory for nucleon-nucleus scattering is discussed in the presence of all the phenomenological ingredients necessary for the description of weakly-bound (or particle-unstable) light nuclear systems. Currently, we use a macroscopic potential model of collective nature. The analysis shows that the couplings to low-energy collective-core excitations are fundamental but they are physically meaningful only if the constraints introduced by the Pauli principle are taken into account. The formalism leads one to discuss a new concept, Pauli hindrance, which appears to be important to understand the structure of weakly-bound and unbound systems.

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18Principle Of Causality In The Construction Of The Media Agenda. Approach Based On Neutrosophic Cognitive Maps

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In the present work it is demonstrated that the construction of the media agenda is a process whose structure does not behave in a rigid manner, whose application foundations have a dialectical character, since it assumes the eventualities of coverage which demands a content management that corresponds. Additionally, the possibilities of using neutrosophical cognitive maps in the construction of the media agenda are explored. It explores neutrosophical cognitive maps for the analysis of causality.

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19Isoperimetric Functional Inequalities Via The Maximum Principle: The Exterior Differential Systems Approach

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The goal of this note is to give the unified approach to the solutions of a class of isoperimetric problems by relating them to the exterior differential systems studied by R.~Bryant and P.~Griffiths. In this note we list several classical by now isopereimetric inequalities which can be proved in a unified way. This unified approach reduces them to the so-called exterior differential systems studied by Robert Bryant and Phillip Griffiths. To the best of our knowledge, this is the first article where this connection is used. After reviewing a list of classical inequalities (log-Sobolev inequality, Beckner's inequality, Bobkov's functional isoperimetric inequality and several other inequalities) we use our method to generate new isoperimetric inequalities, in particular, we found the sharpening of Beckner--Sobolev inequalities with Gaussian measure. Key words: log-Sobolev inequality, Poincar\'e inequality, Bobkov's inequality, Gaussian isoperimetry, semigroups, maximum principle, Monge--Amp\`ere equation with drift, exterior differential systems, backwards heat equation, (B) theorem

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20Generalized Principle Of Corresponding States And The Scale Invariant Mean-field Approach

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In this paper we apply the global isomorphism approach [V.~L. Kulinskii, J. Phys. Chem. B \textbf{114} 2852 (2010)] between the Lennard-Jones fluids and Lattice Gas model to the study of the liquid-vapor equilibrium for the systems with the short-ranged potentials like Buckingham and the $Mie$-potentials. The estimates for the critical point locus correlate quite well with the available numerical data. Also within the proposed approach we give the explanation for the correlation between the value of the second virial coefficient at the critical temperature and the particle volume found in [G. A. Vliegenthart and H. N. W. Lekkerkerker, J. Chem. Phys. \textbf{112} 5364 (2000)].

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21A New Approach In Theoretical Physics Based On The Einstein Covariance Principle

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In this article we show that Einstein covariance principle provides a wide opportunity in the solutions of different problems of theoretical physics. Here we apply covariance principle in some problems of classical electrodynamics and kinetics. Extension of this approach in the other fields is obvious.

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22The Principle Of The Fermionic Projector: An Approach For Quantum Gravity?

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In this short article we introduce the mathematical framework of the principle of the fermionic projector and set up a variational principle in discrete space-time. The underlying physical principles are discussed. We outline the connection to the continuum theory and state recent results. In the last two sections, we speculate on how it might be possible to describe quantum gravity within this framework.

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23HOW HOCKEY CAN SAVE HEALTHCARE : A Principle-based Approach To Reforming The Canadian Healthcare ... System

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In this short article we introduce the mathematical framework of the principle of the fermionic projector and set up a variational principle in discrete space-time. The underlying physical principles are discussed. We outline the connection to the continuum theory and state recent results. In the last two sections, we speculate on how it might be possible to describe quantum gravity within this framework.

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24DTIC ADA520507: First-Principle Approach To Functionally Decomposing The JDL Fusion Model: Emphasis On Soft Target Data

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The paper summarizes work to date directed at defining a service-based functional decomposition of the fusion process. The resulting architecture accommodates (1) traditional sensor data, as well as human-generated input, (2) streaming and nonstreaming data, and (3) the fusion of both physical and non-physical entities. Fifteen base level fusion services are identified then utilized to construct a service-based decomposition of JDL fusion model levels 0 - 2. Concepts, such as clustering, link analysis and database mining, that have traditionally been only loosely associated with the fusion process, are shown to play key roles within this framework. A pedigree summary metric is defined that characterizes the informational distance between individual fused products and source data.

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25Dynamics Of The Hubbard Model: A General Approach By Time Dependent Variational Principle

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We describe the quantum dynamics of the Hubbard model at semi-classical level, by implementing the Time-Dependent Variational Principle (TDVP) procedure on appropriate macroscopic wavefunctions constructed in terms of su(2)-coherent states. Within the TDVP procedure, such states turn out to include a time-dependent quantum phase, part of which can be recognized as Berry's phase. We derive two new semi-classical model Hamiltonians for describing the dynamics in the paramagnetic, superconducting, antiferromagnetic and charge density wave phases and solve the corresponding canonical equations of motion in various cases. Noticeably, a vortex-like ground state phase dynamics is found to take place for U>0 away from half filling. Moreover, it appears that an oscillatory-like ground state dynamics survives at the Fermi surface at half-filling for any U. The low-energy dynamics is also exactly solved by separating fast and slow variables. The role of the time-dependent phase is shown to be particularly interesting in the ordered phases.

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26On A Frequency Function Approach To The Unique Continuation Principle

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In this survey we discuss the frequency function method so as to study the problem of unique continuation for elliptic partial differential equations. The methods used in the note were mainly introduced by Garofalo and Lin.

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27The Principle Approach : The Keys To Recovery

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155 pages ; 23 cm

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28A Practical Approach To Coronal Magnetic Field Extrapolation Based On The Principle Of Minimum Dissipation Rate

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We present a newly developed approach to solar coronal magnetic field extrapolation from vector magnetograms, based on the Principle of Minimum Dissipation Rate (MDR). The MDR system was derived from a variational problem that is more suitable for an open and externally driven system, like the solar corona. The resulting magnetic field equation is more general than force-free. Its solution can be expressed as the superposition of two linear (constant-$\alpha$) force-free fields (LFFFs) with distinct $\alpha$ parameters, and one potential field. Thus the original extrapolation problem is decomposed into three LFFF extrapolations, utilizing boundary data. The full MDR-based approach requires two layers of vector magnetograph measurements on solar surface, while a slightly modified practical approach only requires one. We test both approaches against 3D MHD simulation data in a finite volume. Both yield quantitatively good results. The errors in the magnetic energy estimate are within a few percents. In particular, the main features of relatively strong perpendicular current density structures, representative of the non-force freeness of the solution, are well recovered.

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29The As If Principle : The Radically New Approach To Changing Your Life

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We present a newly developed approach to solar coronal magnetic field extrapolation from vector magnetograms, based on the Principle of Minimum Dissipation Rate (MDR). The MDR system was derived from a variational problem that is more suitable for an open and externally driven system, like the solar corona. The resulting magnetic field equation is more general than force-free. Its solution can be expressed as the superposition of two linear (constant-$\alpha$) force-free fields (LFFFs) with distinct $\alpha$ parameters, and one potential field. Thus the original extrapolation problem is decomposed into three LFFF extrapolations, utilizing boundary data. The full MDR-based approach requires two layers of vector magnetograph measurements on solar surface, while a slightly modified practical approach only requires one. We test both approaches against 3D MHD simulation data in a finite volume. Both yield quantitatively good results. The errors in the magnetic energy estimate are within a few percents. In particular, the main features of relatively strong perpendicular current density structures, representative of the non-force freeness of the solution, are well recovered.

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30A First Principle Approach To Rescale The Dynamics Of Simulated Coarse-Grained Macromolecular Liquids

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We present a detailed derivation and testing of our approach to rescale the dynamics of mesoscale simulations of coarse-grained polymer melts (I. Y. Lyubimov et al. J. Chem. Phys. \textbf{132}, 11876, 2010). Starting from the first-principle Liouville equation and applying the Mori-Zwanzig projection operator technique, we derive the Generalized Langevin Equations (GLE) for the coarse-grained representations of the liquid. The chosen slow variables in the projection operators define the length scale of coarse graining. Each polymer is represented at two levels of coarse-graining: monomeric as a bead-and-spring model and molecular as a soft-colloid. In the long-time regime where the center-of-mass follows Brownian motion and the internal dynamics is completely relaxed, the two descriptions must be equivalent. By enforcing this formal relation we derive from the GLEs the analytical rescaling factors to be applied to dynamical data in the coarse-grained representation to recover the monomeric description. Change in entropy and change in friction are the two corrections to be accounted for to compensate the effects of coarse-graining on the polymer dynamics. The solution of the memory functions in the coarse-grained representations provides the dynamical rescaling of the friction coefficient. The calculation of the internal degrees of freedom provides the correction of the change in entropy due to coarse-graining. The resulting rescaling formalism is a function of the coarse-grained model and thermodynamic parameters of the system simulated. The rescaled dynamics obtained from mesoscale simulations of polyethylene, represented as soft colloidal particles, by applying our rescaling approach shows a good agreement with data of translational diffusion measured experimentally and from simulations. The proposed method is used to predict self-diffusion coefficients of new polyethylene samples.

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31A New Approach To The Experiment Intended To Test The Weak Equivalence Principle For The Neutron

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A new approach to the free fall experiment with UCN is proposed. The idea is that the experiment is performed with neutrons from different equidistant lines of a discrete energy spectrum with a precisely known distance between the lines. Such a spectrum may be formed by neutron diffraction from a moving phase grating. Time-of-flight values of neutrons from different lines of the spectrum must be measured. Neither the initial neutron energy, nor the geometry parameters of the installation are required to be known in this method.

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32ERIC ED267626: The Immersion Approach: Principle And Practice.

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A discussion of the immersion approach to second language instruction contains: a description of the approach and its goals; a brief history of its introduction into public schools; a description of the most common immersion program designs (early total, early partial, middle or delayed, and late); a review of available information on program results concerning effects on English skills, second language skills, and the learning of subject content material, achievement as related to IQ and learning disabilities, differences between partial and total immersion programs, and outcomes from late immersion; an examination of the benefits of early immersion; a description of the distribution of programs in the United States and of the Milwaukee, Wisconsin public schools program; and an analysis of the theoretical foundations of the approach and links to other second language instructional approaches. (MSE)

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33The As If Principle : The Radically New Approach To Changing Your Life

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A discussion of the immersion approach to second language instruction contains: a description of the approach and its goals; a brief history of its introduction into public schools; a description of the most common immersion program designs (early total, early partial, middle or delayed, and late); a review of available information on program results concerning effects on English skills, second language skills, and the learning of subject content material, achievement as related to IQ and learning disabilities, differences between partial and total immersion programs, and outcomes from late immersion; an examination of the benefits of early immersion; a description of the distribution of programs in the United States and of the Milwaukee, Wisconsin public schools program; and an analysis of the theoretical foundations of the approach and links to other second language instructional approaches. (MSE)

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34The Practice Of Principle : In Defence Of A Pragmatist Approach To Legal Theory

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A discussion of the immersion approach to second language instruction contains: a description of the approach and its goals; a brief history of its introduction into public schools; a description of the most common immersion program designs (early total, early partial, middle or delayed, and late); a review of available information on program results concerning effects on English skills, second language skills, and the learning of subject content material, achievement as related to IQ and learning disabilities, differences between partial and total immersion programs, and outcomes from late immersion; an examination of the benefits of early immersion; a description of the distribution of programs in the United States and of the Milwaukee, Wisconsin public schools program; and an analysis of the theoretical foundations of the approach and links to other second language instructional approaches. (MSE)

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35The Matrix Principle : A Revolutionary Approach To Muscle Development

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xiii, 221 p., 8 p. of plates : 23 cm

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36The Noah Plan History And Geography Curriculum Guide: The Principle Approach, Kindergarten Through Twelfth Grade

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xiii, 221 p., 8 p. of plates : 23 cm

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37DTIC ADA462787: Overcoming The S&T Assessment Uncertainty Principle: An Approach To Enterprise-Wide Assessment Of The DOD S&T Program

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The science and technology (S&T) program supported by the Department of Defense (DoD) is a large undertaking (approximately $11 billion in 2004) aimed at ensuring continued technological superiority of the U.S. military. Exercising stewardship over this program is of great importance. In this regard the program is subjected to numerous reviews dealing with its relevance, viability, and productivity. At various levels of detail, every element of the program is reviewed. However, the sum of all the reviews does not constitute an assessment of the entire DoD S&T enterprise. This study examines why this is the case and examines the prospects for rectifying this situation. An effective enterprise-wide assessment (EWA) would contribute to the ability of the Director of Defense Research and Engineering (DDR&E) to provide oversight to enhance the content of the S&T portfolio through metrics of program quality, performance, and relevance. It would increase collaboration between projects with aligned objectives and provide a knowledge base of the S&T program sufficient to justify the investment to the services and Congress. An effective EWA also would support the services in that it would focus their internal topical reviews to problem areas identified in the EWA. It also would provide them a broader insight into the entire S&T program and their place within it. This would result in greater program coordination and reliance on other service programs. Also, an EWA could form the basis of an interrelated community of experts across the entire S&T spectrum.

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38DTIC ADA462956: Catalytic Reaction Sets: A First-Principle Approach To The Evolution Of Communication

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This report results from a contract tasking Universidade de Sao Paulo as follows: The Grantee will investigate how the information processing capability of an agent (i.e., the learning algorithm the agent uses to infer the meaning of a signal it receives and to decide which signal to emit given the environment variables) determines the structure of the language that emerges in the population.

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  • Title: ➤  DTIC ADA462956: Catalytic Reaction Sets: A First-Principle Approach To The Evolution Of Communication
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  • Language: English

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The book is available for download in "texts" format, the size of the file-s is: 24.97 Mbs, the file-s for this book were downloaded 60 times, the file-s went public at Sat Jun 09 2018.

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