O N      H I G H     R E F E R E N C E    A C T I V I T Y

By Henryk Szubinski..

 increase the distance to the universe edge and the resultant is a less dense effect upto a few examples of stars or early galaxies..use the process in the highest values of oppositions of volumes inside the universe and theese are in turn EQUAL TO THE format of the force of motivation of volume displacements ……..SHOWN IN THE GENERAL DENSITY FROM THE BOTTOM IMAGE TO THE TOP ONE (the format for forece pull can be a top muon higgs)

LAW II: The alteration of motion is ever proportional to the motive force impressed; and is made in the direction of the right line in which that force is impressed. — If a force generates a motion, a double force will generate double the motion, a triple force triple the motion, whether that force be impressed altogether and at once, or gradually and successively. And this motion (being always directed the same way with the generating force), if the body moved before, is added to or subtracted from the former motion, according as they directly conspire with or are directly contrary to each other; or obliquely joined, when they are oblique, so as to produce a new motion compounded from the determination of both.

Using modern symbolic notation[12], Newton’s second law can be written as a vector differential equation:

\mathbf F = {\mathrm{d}(m \mathbf v) \over \mathrm{d}t}

where F is the force vector, m is the mass of the body, v is the velocity vector and t is time.

The product of the mass and velocity is momentum (which Newton himself called “quantity of motion”). Therefore, this equation expresses the physical relationship between force and momentum. Consistent with the law of inertia, the time derivative of the momentum is non-zero when the momentum changes direction, even if there is no change in its magnitude (see time derivative). The equation implies that, under zero net force, the momentum of a body is constant.

However, any mass that is gained or lost by the body will cause a change in momentum that is not the result of an external force. This equation does not hold in such cases (see open systems). Because the law describes the motion of bodies of constant mass only,[13][14][15] the mass can be moved outside the differential operator:

\mathbf F = m \ \frac{\mathrm{d} \mathbf v}{\mathrm{d}t}

By substitution using the definition of acceleration, this differential equation can be rewritten in a more familiar form:

\mathbf F = m \mathbf a

A verbal equivalent of this is “the acceleration of an object is proportional to the force applied, and inversely proportional to the mass of the object”. In general, at slow speeds (slow relative to the speed of light), the relationship between momentum and velocity is approximately linear. Nearly all speeds within the human experience fall within this category. At higher speeds, however, this approximation becomes increasingly inaccurate and the theory of special relativity must be applied.

 

 

 

processess of high value accumulative cyclism in a r.p.m increase of the data to a displacement in impulse values to a stable state of the designated value dark matter decllerative process in a delay sequence to derive the 45 degree cause of the data intermix in value problems based on high energy sporadic events in the thermal process of a steady state of the positionality in high activity by Newtons…..law of motion to a system stability of the processings to accelerate a process transferrancen motivations of a high point interaction on the levls of point linear connectives and the definitions of data on the procesings of high motivted force of interactions transparency of a planar response to a space time continiim.(a higgs top muon)

 

As the processings of debilitative values of interactions based on suffocation in deep space and the processes of transferrant terminal states of awareness as basic to the subdivisions of processes without radical particle counterparts and the free zopned ware of vechicularity as based on the definitions inherent in diagrammatical probabilityies of the designated levels of 3 x involvements to the resultant of a demarkative resultant of every functional system in a standby

sustainment =sustanance of the basic problems in slid flow as a fluid basis lower difficulaty in the star systems and their designated positions..

The fewer than noon resultants and their free definition programmings to which a full state of diagramatic ressoonance of the free dimensional state quantality in the processings of the full data access environments ———>basic references made to a higher definitionss delay quantal volumetricality with decellerative withdrawals ont he basics of reusage..=x lim.

Data on the process of the basics of the elongative data on the processings of hiogh similarity of volumetrical comparatives with resonance similar characteristics rresultant in displacements of similar value…