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		<pubDate>Fri, 27 Nov 2009 20:39:10 +0000</pubDate>
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		<title>sci fi reality&#8230;..how to compute artificial competition ( a a.i theory)</title>
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		<pubDate>Fri, 27 Nov 2009 20:30:52 +0000</pubDate>
		<dc:creator>benabb</dc:creator>
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		<description><![CDATA[h o w   t o   c o m p u t e   a r t i f i c i a l   c o m p e t i t i o n
on artificial intelligence systems
By Henryk Szubinski
&#160;
&#160;
&#160;
In probability theory, a stochastic process, or sometimes random process, is the counterpart to a deterministic process (or [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=benabb.wordpress.com&blog=3562110&post=30420&subd=benabb&ref=&feed=1" />]]></description>
			<content:encoded><![CDATA[<div class='snap_preview'><br /><p>h o w   t o   c o m p u t e   a r t i f i c i a l   c o m p e t i t i o n</p>
<p>on artificial intelligence systems</p>
<p>By Henryk Szubinski</p>
<p>&nbsp;</p>
<p>&nbsp;</p>
<p>&nbsp;</p>
<p>In <a title="Probability theory" href="http://en.wikipedia.org/wiki/Probability_theory">probability theory</a>, a <strong>stochastic process</strong>, or sometimes <strong>random process</strong>, is the counterpart to a deterministic process (or deterministic system). Instead of dealing with only one possible &#8220;reality&#8221; of how the process might evolve under time (as is the case, for example, for solutions of an <a title="Ordinary differential equation" href="http://en.wikipedia.org/wiki/Ordinary_differential_equation">ordinary differential equation</a>), in a stochastic or random process there is some indeterminacy in its future evolution described by probability distributions. This means that even if the initial condition (or starting point) is known, there are many possibilities the process might go to, but some paths are more probable and others less.</p>
<p>In the simplest possible case (&#8220;discrete time&#8221;), a stochastic process amounts to a sequence of random variables known as a <a title="Time series" href="http://en.wikipedia.org/wiki/Time_series">time series</a> (for example, see <a title="Markov chain" href="http://en.wikipedia.org/wiki/Markov_chain">Markov chain</a>). Another basic type of a stochastic process is a <a title="Random field" href="http://en.wikipedia.org/wiki/Random_field">random field</a>, whose domain is a region of <a title="Space" href="http://en.wikipedia.org/wiki/Space">space</a>, in other words, a random function whose arguments are drawn from a range of continuously changing values. One approach to stochastic processes treats them as <a title="Function (mathematics)" href="http://en.wikipedia.org/wiki/Function_(mathematics)">functions</a> of one or several deterministic arguments (&#8220;inputs&#8221;, in most cases regarded as &#8220;time&#8221;) whose values (&#8220;outputs&#8221;) are random variables: non-deterministic (single) quantities which have certain <a title="Probability distribution" href="http://en.wikipedia.org/wiki/Probability_distribution">probability distributions</a>. Random variables corresponding to various times (or points, in the case of random fields) may be completely different. The main requirement is that these different random quantities all have the same &#8220;type&#8221;.<sup><a href="http://en.wikipedia.org/wiki/Stochastic_process#cite_note-0">[1]</a></sup> Although the random values of a stochastic process at different times may be independent random variables, in most commonly considered situations they exhibit complicated statistical correlations</p>
<p>&nbsp;</p>
<p>There is no sense in working, if this sounds strange,</p>
<p>the knowledge based systems are already working on Earth, as such to define the progress of such a system needs a indication of using emotion in place of time wasting ,,</p>
<p>imagine UNIVERSES and having to avoid trouble ,even where its from , or one of its suspect universes. Upto failure the the greatest foresight is shown to see to it that pulling out of the process is to see to it that one ends up having all one wants</p>
<p>if you ask me its the emotional concept to feel that defines how a astrophysical theory works just as well</p>
<p>imagine throwing three variant formats into a parameter where the bounce back effect is calculated to be accellerated to the format ,not of the cause ( the accelleration while being thrown ) but that the values of strings in the venet where the waveform soundscape is effected only by the absorbtionality of the volumetrical characteristics of the data in its alteration as fluid / solid flow within the quantal exchanges that reallly need only a value = any alteration of the involved sections described in the theory can be altered into a functional dynamics system..</p>
<p>as such the aquired formats are of a Universe a Spherical format  and the value based reference system of a volume..</p>
<p>B.x + Sphere x + Volume = 3</p>
<p><a href="http://benabb.files.wordpress.com/2009/11/img_000312.jpg"><img title="IMG_0003" src="http://benabb.files.wordpress.com/2009/11/img_000312.jpg?w=499&amp;h=359&#038;h=359" alt="" width="499" height="359" /></a></p>
<p>universal BIT = B number</p>
<p>accellerated .F cubed &#8211; ( F. Dia )</p>
<p>Dia cubed =1- F</p>
<p>Volume 1 &#8211; quantality =F . x root 1</p>
<p>Given a <a title="Probability space" href="http://en.wikipedia.org/wiki/Probability_space">probability space</a> <img src="http://upload.wikimedia.org/math/9/b/1/9b188179f9107041f5631a75cfb84b8d.png" alt="(\Omega, \mathcal{F}, P)" />, a <strong>stochastic process</strong> (or <strong>random process</strong>) with state space <em>X</em> is a collection of <em>X</em>-valued <a title="Random variable" href="http://en.wikipedia.org/wiki/Random_variable">random variables</a> indexed by a set <em>T</em> (&#8220;time&#8221;). That is, a stochastic process <em>F</em> is a collection</p>
<dl>
<dd><img src="http://upload.wikimedia.org/math/c/6/7/c6786a1f57cff2e5302d94cc26792401.png" alt=" \{ F_t : t \in T \}" /> </dd>
</dl>
<p>where each <em>F</em><sub><em>t</em></sub> is an <em>X</em>-valued random variable.</p>
<p>A <strong>modification</strong> <em>G</em> of the process <em>F</em> is a stochastic process on the same state space, with the same parameter set <em>T</em> such that</p>
<dl>
<dd><img src="http://upload.wikimedia.org/math/f/8/7/f87c22b5f189e8cd55328b01b84a96da.png" alt=" P ( F_t = G_t) =1 \qquad \forall t \in T." /> </dd>
</dl>
<h3>[<a title="Edit section: Finite-dimensional distributions" href="http://en.wikipedia.org/w/index.php?title=Stochastic_process&amp;action=edit&amp;section=3">edit</a>] Finite-dimensional distributions</h3>
<p>Let <em>F</em> be an <em>X</em>-valued stochastic process. For every finite subset <img src="http://upload.wikimedia.org/math/2/0/6/206a91a7e5723809913624447034e590.png" alt="T' \subseteq T" />, we may write <img src="http://upload.wikimedia.org/math/4/7/3/4731ce706976abd4d0f4209f1d826bd4.png" alt="T'=\{ t_1, \ldots, t_k \}" />, where <img src="http://upload.wikimedia.org/math/2/4/7/247c2b389854c6d22ea373c03a2c662a.png" alt="k=\left|T'\right|" /> and the restriction <img src="http://upload.wikimedia.org/math/a/1/0/a10eb9d68f83d9441f3166cc3b30f0ee.png" alt="F|_{T'}=(F_{t_1}, F_{t_2},\ldots, F_{t_k})" /> is a random variable taking values in <em>X</em><sup><em>k</em></sup>. The distribution <img src="http://upload.wikimedia.org/math/a/c/f/acfaf063b36764ea79a41214e9ccfc99.png" alt="\mathbb{P}_{T'}= \mathbb{P} F|_{T'}^{-1}" /> of this random variable is a probability measure on <em>X</em><sup><em>k</em></sup>. Such random variables are called the <a title="Finite-dimensional distribution" href="http://en.wikipedia.org/wiki/Finite-dimensional_distribution">finite-dimensional distributions</a> of <em>F</em>.</p>
<p>Under suitable topological restrictions, a suitably &#8220;consistent&#8221; collection of finite-dimensional distributions can be used to define a stochastic process (see Kolmogorov extension in the next section).</p>
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			<media:title type="html">benabb</media:title>
		</media:content>

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			<media:title type="html">IMG_0003</media:title>
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		<media:content url="http://upload.wikimedia.org/math/9/b/1/9b188179f9107041f5631a75cfb84b8d.png" medium="image">
			<media:title type="html">(\Omega, \mathcal{F}, P)</media:title>
		</media:content>

		<media:content url="http://upload.wikimedia.org/math/c/6/7/c6786a1f57cff2e5302d94cc26792401.png" medium="image">
			<media:title type="html"> \{ F_t : t \in T \}</media:title>
		</media:content>

		<media:content url="http://upload.wikimedia.org/math/f/8/7/f87c22b5f189e8cd55328b01b84a96da.png" medium="image">
			<media:title type="html"> P ( F_t = G_t) =1 \qquad \forall t \in T.</media:title>
		</media:content>

		<media:content url="http://upload.wikimedia.org/math/2/0/6/206a91a7e5723809913624447034e590.png" medium="image">
			<media:title type="html">T' \subseteq T</media:title>
		</media:content>

		<media:content url="http://upload.wikimedia.org/math/4/7/3/4731ce706976abd4d0f4209f1d826bd4.png" medium="image">
			<media:title type="html">T'=\{ t_1, \ldots, t_k \}</media:title>
		</media:content>

		<media:content url="http://upload.wikimedia.org/math/2/4/7/247c2b389854c6d22ea373c03a2c662a.png" medium="image">
			<media:title type="html">k=\left&#124;T'\right&#124;</media:title>
		</media:content>

		<media:content url="http://upload.wikimedia.org/math/a/1/0/a10eb9d68f83d9441f3166cc3b30f0ee.png" medium="image">
			<media:title type="html">F&#124;_{T'}=(F_{t_1}, F_{t_2},\ldots, F_{t_k})</media:title>
		</media:content>

		<media:content url="http://upload.wikimedia.org/math/a/c/f/acfaf063b36764ea79a41214e9ccfc99.png" medium="image">
			<media:title type="html">\mathbb{P}_{T'}= \mathbb{P} F&#124;_{T'}^{-1}</media:title>
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		<title>daryl &amp; oats &#8230;the best needs a best..this one shes a man eater</title>
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		<pubDate>Fri, 27 Nov 2009 18:09:11 +0000</pubDate>
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		<title>sci fi reality&#8230;&#8230;multiverse a.i</title>
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		<pubDate>Fri, 27 Nov 2009 16:40:48 +0000</pubDate>
		<dc:creator>benabb</dc:creator>
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		<description><![CDATA[m u l t i  v e r s e   a.i
By Henryk Szubinski
&#160;
&#160;
in regards to multiple universes
&#160;
THE FASTEST WAY TO GET TO ANOTHER UINIVERSE IS TO LOCATE ITS CONNECTION TO OUR OWN AND THEN TO DISPLACE THROUGH THIS WORM HOLE,WARP SPACE OR WHATEVER IT MIGHT BE,
&#160;
universe&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8211;180 degrees&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;-universe
&#160;
 BUT IT MIGHT AS WELL ALSO BE THE 180 [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=benabb.wordpress.com&blog=3562110&post=30406&subd=benabb&ref=&feed=1" />]]></description>
			<content:encoded><![CDATA[<div class='snap_preview'><br /><p>m u l t i  v e r s e   a.i</p>
<p>By Henryk Szubinski</p>
<p>&nbsp;</p>
<p>&nbsp;</p>
<p>in regards to multiple universes</p>
<p>&nbsp;</p>
<p>THE FASTEST WAY TO GET TO ANOTHER UINIVERSE IS TO LOCATE ITS CONNECTION TO OUR OWN AND THEN TO DISPLACE THROUGH THIS WORM HOLE,WARP SPACE OR WHATEVER IT MIGHT BE,</p>
<p>&nbsp;</p>
<p>universe&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8211;180 degrees&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;-universe</p>
<p>&nbsp;</p>
<p> BUT IT MIGHT AS WELL ALSO BE THE 180 DEGREE HORIZON OF THE CONNECTION DUE TO NON ALTERANCE OF THE</p>
<p>&nbsp;</p>
<p>WAY TO ANOTHER =</p>
<p>&nbsp;</p>
<p>THE WAY TO EVERY SIMILAR EVENT WOULD EVERYWHERE BE THE SAME 180 DEGREE LOCATIONS OFPOINTS ALONG ITS VECTOR..as the shortest displacement</p>
<p>&nbsp;</p>
<p><img src="http://upload.wikimedia.org/wikipedia/commons/e/e8/Effetdel%27horizondes%C3%A9v%C3%A9nementssurlalumi%C3%A8re.gif" alt="" /></p>
<p>&nbsp;</p>
<p>OF COURSE YOU WOULD SAY TO THE COMMENT :</p>
<p>&nbsp;</p>
<p>that if a particle looses its event horizon it would dip down from something that it had to  reaquire in its similar format as a difference similar to its reaquired level this defines the process as a singularity which is the point along the sam spacetime level horizon as a 180 degree vector that has basic similar point quantals all along it&#8230;</p>
<p>&nbsp;</p>
<p>by laws which imply the happhazzard voyage of experiments beyond the hyper universe in its</p>
<p>&nbsp;</p>
<p> action / reaction</p>
<p>&nbsp;</p>
<p>process by high value proiority involvement values and their high velocity conservations to a proovability of continuiim relations in to a 3 set value gone backwards in time or processess that define the basis of a real physical remnant for every reliability of a computation:</p>
<p>&nbsp;</p>
<p>Cosmologist <a title="Max Tegmark" href="http://en.wikipedia.org/wiki/Max_Tegmark">Max Tegmark</a> has provided a <a title="Taxonomy" href="http://en.wikipedia.org/wiki/Taxonomy">taxonomy</a> of universes beyond the familiar <a title="Observable universe" href="http://en.wikipedia.org/wiki/Observable_universe">observable universe</a>. The levels according to Tegmark&#8217;s classification are arranged such that subsequent levels can be understood to encompass and expand upon previous levels, and they are briefly described below.<sup><a href="http://en.wikipedia.org/wiki/Multiverse#cite_note-1">[2]</a></sup><sup><a href="http://en.wikipedia.org/wiki/Multiverse#cite_note-2">[3]</a></sup></p>
<p>&nbsp;</p>
<h4>[<a title="Edit section: Level I: Beyond our cosmological horizon" href="http://en.wikipedia.org/w/index.php?title=Multiverse&amp;action=edit&amp;section=3">edit</a>] Level I: Beyond our cosmological horizon</h4>
<p>&nbsp;</p>
<p>A generic prediction of cosmic inflation is an <a title="Infinity" href="http://en.wikipedia.org/wiki/Infinity">infinite</a> <a title="Ergodic hypothesis" href="http://en.wikipedia.org/wiki/Ergodic_hypothesis">ergodic</a> universe, which, being infinite, must contain <a title="Hubble volume" href="http://en.wikipedia.org/wiki/Hubble_volume">Hubble volumes</a> realizing all initial conditions.</p>
<p>&nbsp;</p>
<p>An <a title="Infinity" href="http://en.wikipedia.org/wiki/Infinity">infinite</a> universe should contain an infinite number of <a title="Hubble volume" href="http://en.wikipedia.org/wiki/Hubble_volume">Hubble volumes</a>. All will have the same <a title="Physical law" href="http://en.wikipedia.org/wiki/Physical_law">physical laws</a> and <a title="Physical constant" href="http://en.wikipedia.org/wiki/Physical_constant">physical constants</a>. However, almost all will be different from our Hubble volume regarding configurations such as how <a title="Matter" href="http://en.wikipedia.org/wiki/Matter">matter</a> is distributed in the volume. But since there are an infinite number of such volumes, then some of these will be very similar or even identical to our own. Thus, far beyond our <a title="Cosmological horizon" href="http://en.wikipedia.org/wiki/Cosmological_horizon">cosmological horizon</a>, there will eventually be a Hubble volume identical to our own. Tegmark estimates that such an identical volume should be about 10<sup>(10<sup>115</sup>)</sup> (larger than a <a title="Googolplex" href="http://en.wikipedia.org/wiki/Googolplex">googolplex</a>) meters away.<sup><a href="http://en.wikipedia.org/wiki/Multiverse#cite_note-TegmarkPUstaple-3">[4]</a></sup><sup><a href="http://en.wikipedia.org/wiki/Multiverse#cite_note-4">[5]</a></sup></p>
<p>&nbsp;</p>
<p>&nbsp;</p>
<p><sup>as regards the weak point of their collective failure to indicate which way contains all other ways to the same value in a drag coefficiency:</sup></p>
<p>&nbsp;</p>
<p>&nbsp;</p>
<p><sup>WOULD BE SUSTAINEMENTS OF 180 DEGREE ALTERATIONS OF EVERY VECTOR MOTION INTO ITS BASIC 1/2 HORIZON DIMENSIONALITY OF A 2d VECTOR =1 D point in 1/2 value</sup></p>
<p>&nbsp;</p>
<p><sup>to sustain this effect a horizon has on a point and its dimensiional inaccuracy ,some general comparatives are needed:</sup></p>
<p>&nbsp;</p>
<p><sup>1/2 horizon = 1 dimension</sup></p>
<p><sup>1/4 horizon = 1/2 dimension</sup></p>
<p><sup>1/8 horizon = 1/4 dimension</sup></p>
<p><sup>1/16 horizon = 1/8 dimensional</sup></p>
<p>&nbsp;</p>
<p><sup>the prcess by which the general reconfigurations are made we might as well consider the real dimensiions as increasing in the same order, so that:</sup></p>
<p>&nbsp;</p>
<p><sup>1/2 horizon = 1 dimension: 1 REAL DIMENSION </sup></p>
<p><sup>1/4 horizon = 1/2 dimension  : 2 REAL DIMENSIONS</sup></p>
<p><sup>1/8 horizon = 1/4 dimension: 3 REAL DIMENSIONS</sup></p>
<p><sup>1/16 horizon = 1/8 dimensional: 4 REAL DIMENSIONS</sup></p>
<p>&nbsp;</p>
<p><sup>UPTO A 10 DIMENSIONAL HYPERSPACE </sup></p>
<p>&nbsp;</p>
<p><sup>1/32 HORIZON =1/16 DIMENSIONAL : 5 TH REAL DIMENSION</sup></p>
<p><sup>1/64 hORIZON = 1/32 DIMENSIONAL : 6 TH REAL DIMENSION</sup></p>
<p><sup>1/128 HORIZON = 1/64 DIMENSIONAL : 7 TH REAL DIMENSION</sup></p>
<p><sup>1/256 HORIZON = 1/128 DIMENSIONAL : 8 TH REAL DIMENSIION</sup></p>
<p><sup>1/512 HORIZON = 1/256 DIMENSIONAL : 9 TH REAL DIMENSION</sup></p>
<p><sup>1/1024 HORIZON = 1/ 512 DIMENSIONAL : 10 TH REAL DIMENSION</sup></p>
<p>&nbsp;</p>
<p>&nbsp;</p>
<p><sup>A 10 DIMENSIONAL HYPERPSACE  IN A DRAG COEFFICIENCY OF THE COMPARATIVES USED AS A RELATIVE 180 DEGREES  AT ABOUT 3 SUCH VALUES COMPARAED TO 6</sup></p>
<p>&nbsp;</p>
<p><sup>AS VECTORS  1/ 3 X = 1/ 6 ( DRAG COEFFICIENCY OF A OBJECT SET ON SEPERATING FROM THE 180 DEGREE SURFACE)HORIZON AS SUSTAINED OR AQUIRED LIFT BY MINIMAL COMPARATIVES</sup></p>
<p>&nbsp;</p>
<p>The drag coefficient <em>C<sub>d</sub></em> is defined as:</p>
<dl>
<dd><img src="http://upload.wikimedia.org/math/4/6/c/46ce687f46a6eb1fb9720084ab5f0c69.png" alt=" C_d= \frac{F_d}{\tfrac{1}{2} \rho v^2 A}," /> </dd>
</dl>
<p>where</p>
<dl>
<dd><em>F<sub>d</sub></em> is the <a title="Drag (physics)" href="http://en.wikipedia.org/wiki/Drag_(physics)">drag force</a>, which is by definition the force component in the direction of the flow velocity,<sup><a href="http://en.wikipedia.org/wiki/Drag_coefficient#cite_note-5">[6]</a></sup> </dd>
<dd><em>ρ</em> is the mass density of the fluid, <sup><a href="http://en.wikipedia.org/wiki/Drag_coefficient#cite_note-6">[7]</a></sup> </dd>
<dd><em>v</em> is the <a title="Speed" href="http://en.wikipedia.org/wiki/Speed">speed</a> of the object relative to the fluid, and </dd>
<dd><em>A</em> is the reference <a title="Area" href="http://en.wikipedia.org/wiki/Area">area</a>. </dd>
</dl>
<p>The reference area depends on what type of drag coefficient is being measured. For automobiles and many other objects, the reference area is the frontal area of the vehicle (i.e., the cross-sectional area when viewed from ahead). For example, for a sphere <em>A</em> = <em>π r<sup>2</sup></em> (note this is not the surface area = <em>4 π r<sup>2</sup>).</em></p>
<p>For <a title="Airfoil" href="http://en.wikipedia.org/wiki/Airfoil">airfoils</a>, the reference area is the <a title="Chord (aircraft)" href="http://en.wikipedia.org/wiki/Chord_(aircraft)">chord</a> of the airfoil multiplied with the length of span, which can be easily related to wing area. Since this tends to be a rather large area compared to the projected frontal area, the resulting</p>
<p>drag coefficients tend to be low: much lower than for a car with the same drag, frontal area and at the same speed.</p>
<p><a title="Airship" href="http://en.wikipedia.org/wiki/Airship">Airships</a> and some <a title="Solid of revolution" href="http://en.wikipedia.org/wiki/Solid_of_revolution">bodies of revolution</a> use the volumetric drag coefficient, in which the reference area is the <a title="Square (algebra)" href="http://en.wikipedia.org/wiki/Square_(algebra)">square</a> of the <a title="Cube root" href="http://en.wikipedia.org/wiki/Cube_root">cube root</a> of the airship volume. Submerged streamlined bodies use the wetted surface area.</p>
<p>&nbsp;</p>
<p>&nbsp;</p>
<p>as values in a horizon full of data and as such the process of similarity with a horizon on the very edge of discovery outside the process of a 180 degree measuring system that soon closes its doors over the fased values of</p>
<p>computational halving = tri divisives = 1/3 X</p>
<p>and so on into the general  value in its effect on the mind set as a 180 degree full spectral concept anyway..</p>
<p>&nbsp;</p>
<p>so that to consider why the general concept of timing the comparative is the total value of artificial intelligence</p>
<p>=1/6</p>
<p>&nbsp;</p>
<p>IN LEARNING to approach the subject by the least possible accessible route</p>
<p>AS THE 180 DEGREE DECREASE OF 1/ 3X</p>
<p>MEANING that the vector to it is the concept of</p>
<p>&#8221; do not observe to learn&#8221;</p>
<p>the lesser the value decimal inrelation to 180 degree bits, the value of larger decimals defines the value of a greater exit format from horizontal bound gravity</p>
<p>&nbsp;</p>
<p>AS THE 180 . 1/6 DEGREE INCREASE</p>
<p>&nbsp;</p>
<p>rather go straight into it&#8221; in which case the failure to realise that the barriers through it are in place because the system entails a process through subsequent stages as the ONLY SYSTEM wherein the vector exchanges the non REAL barriers that leads to the reversal of a high value force into the equalisations where there is no artificial SIMULTANEOUS intelligence law of variance:</p>
<p>&nbsp;</p>
<p>Towards a safer Earth and the meaing of the basic data reality in electrons on a horizon  = non parameters of accessability by the process of completing the data computerisations of a a.i course in approach..</p>
<p>&nbsp;</p>
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		<title>sci fi reality&#8230;.universal point relations</title>
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		<pubDate>Fri, 27 Nov 2009 08:52:09 +0000</pubDate>
		<dc:creator>benabb</dc:creator>
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		<description><![CDATA[p o i n t   r e l a t i o n s   o f  t h e   u n i v e r s e
By Henryk Szubinski
The angle between a line and a curve (mixed angle) or between two intersecting curves (curvilinear angle) is defined to be the angle between the tangents at [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=benabb.wordpress.com&blog=3562110&post=30394&subd=benabb&ref=&feed=1" />]]></description>
			<content:encoded><![CDATA[<div class='snap_preview'><br /><p>p o i n t   r e l a t i o n s   o f  t h e   u n i v e r s e</p>
<p>By Henryk Szubinski</p>
<p>The angle between a line and a <a title="Curve" href="http://en.wikipedia.org/wiki/Curve">curve</a> (mixed angle) or between two intersecting curves (curvilinear angle) is defined to be the angle between the <a title="Tangent" href="http://en.wikipedia.org/wiki/Tangent">tangents</a> at the point of intersection. Various names (now rarely, if ever, used) have been given to particular cases:—<em>amphicyrtic</em> (Gr. <em>ἀμφί</em>, on both sides, <em>κυρτός</em>, convex) or <em>cissoidal</em> (Gr. <em>κισσός</em>, ivy), biconvex; <em>xystroidal</em> or <em>sistroidal</em> (Gr. <em>ξυστρίς</em>, a tool for scraping), concavo-convex; <em>amphicoelic</em> (Gr. <em>κοίλη</em>, a hollow) or <em>angulus lunularis</em>, biconcave.</p>
<p><img src="http://upload.wikimedia.org/wikipedia/commons/thumb/7/70/Curve_angles.svg/800px-Curve_angles.svg.png" alt="" width="560" height="347" /></p>
<p>&nbsp;</p>
<p>&nbsp;</p>
<p>A <strong>phantom reference</strong> is one of the strengths or levels of &#8216;non <a title="Strong reference" href="http://en.wikipedia.org/wiki/Strong_reference">strong</a>&#8216; reference defined in the <a title="Java (programming language)" href="http://en.wikipedia.org/wiki/Java_(programming_language)">Java programming language</a>; the others being <a title="Weak reference" href="http://en.wikipedia.org/wiki/Weak_reference">weak</a> and <a title="Soft reference" href="http://en.wikipedia.org/wiki/Soft_reference">soft</a>.</p>
<p>An object is phantomly referenced after it has been <a title="Finalizer" href="http://en.wikipedia.org/wiki/Finalizer">finalized</a>, but before its allocated memory has been reclaimed</p>
<p>&nbsp;</p>
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<p>our own planet earth is ,on the universal scale, such a small point , that to have a situation where a small point on its surface area is as basic a law as the cause of the minimal point that to displace such relations of where the point and the shute were interactively constructing vector values in relation to each other, would also be , by earth rotation in relation to Earth and the Universe also=</p>
<p>the basic 1/2 rotation of their relative positions.</p>
<p><a href="http://benabb.files.wordpress.com/2009/11/img_000216.jpg"><img title="IMG_0002" src="http://benabb.files.wordpress.com/2009/11/img_000216.jpg?w=500&amp;h=362&#038;h=362" alt="" width="500" height="362" /></a></p>
<p>basic data on triangulations which alter their values from a 90 degree to  45 degrees and into the reasons for spherical vectors at the horizon as a 17 degree basis for a similar based value where the basic relations are made to similar 180 degree horizons:</p>
<p>as a type golden section problem of a relation of every rectangular division to a planar value = 180 degrees for each division..</p>
<p>This implies that the same interactions can be occurant in the edge of the universe and its relationships to alternate universes as the basic law of motion continuiims that are based on multi universes as a type 1 similarity of minimal point actions/ reactions..</p>
<p>to have 2 vector directions along such angles is also the cause of similar 2 vector values in a continuiim based on the similarity of</p>
<p>vector horizons = 180 degrees .2.x</p>
<p>In <a title="Computer programming" href="http://en.wikipedia.org/wiki/Computer_programming">computer programming</a>, a <strong>weak reference</strong> is a <a title="Reference (computer science)" href="http://en.wikipedia.org/wiki/Reference_(computer_science)">reference</a> that does not protect the referent object from collection by a <a title="Garbage collection (computer science)" href="http://en.wikipedia.org/wiki/Garbage_collection_(computer_science)">garbage collector</a>. An object referenced <em>only</em> by weak references is considered <a title="Unreachable memory" href="http://en.wikipedia.org/wiki/Unreachable_memory">unreachable</a> (or &#8220;weakly reachable&#8221;) and so may be collected at any time. Weak references are used to avoid keeping in memory referenced but unneeded objects. Some <a title="Garbage collection (computer science)" href="http://en.wikipedia.org/wiki/Garbage_collection_(computer_science)">garbage-collected</a> languages feature or support various levels of weak references, such as <a title="Java (programming language)" href="http://en.wikipedia.org/wiki/Java_(programming_language)">Java</a>, <a title="C Sharp (programming language)" href="http://en.wikipedia.org/wiki/C_Sharp_(programming_language)">C#</a>, <a title="Python (programming language)" href="http://en.wikipedia.org/wiki/Python_(programming_language)">Python</a>, or Perl.</p>
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		<title>sci fi reality&#8230;&#8230;..mean value universal hokies</title>
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		<pubDate>Thu, 26 Nov 2009 17:56:34 +0000</pubDate>
		<dc:creator>benabb</dc:creator>
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		<description><![CDATA[m e a n   v a l u e   u n i v e r s a l   h o k i
By Henryk Szubinski
The Milky Way, or simply the Galaxy, is the galaxy in which the Solar System is located. It is a barred spiral galaxy that is part of the Local Group of galaxies. [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=benabb.wordpress.com&blog=3562110&post=30375&subd=benabb&ref=&feed=1" />]]></description>
			<content:encoded><![CDATA[<div class='snap_preview'><br /><p>m e a n   v a l u e   u n i v e r s a l   h o k i</p>
<p>By Henryk Szubinski</p>
<p>The <strong>Milky Way</strong>, or simply <strong>the Galaxy</strong>, is the <a title="Galaxy" href="http://en.wikipedia.org/wiki/Galaxy">galaxy</a> in which the <a title="Solar System" href="http://en.wikipedia.org/wiki/Solar_System">Solar System</a> is located. It is a <a title="Barred spiral galaxy" href="http://en.wikipedia.org/wiki/Barred_spiral_galaxy">barred spiral galaxy</a> that is part of the <a title="Local Group" href="http://en.wikipedia.org/wiki/Local_Group">Local Group</a> of galaxies. It is one of billions of galaxies in the <a title="Observable universe" href="http://en.wikipedia.org/wiki/Observable_universe">observable universe</a>. Its name is a translation of the <a title="Latin" href="http://en.wikipedia.org/wiki/Latin">Latin</a> <em>Via Lactea</em>, in turn translated from the <a title="Greek language" href="http://en.wikipedia.org/wiki/Greek_language">Greek</a> Γαλαξίας (<em>Galaxias</em>), referring to the pale band of light formed by the galactic plane as seen from Earth (see <a title="Galaxy" href="http://en.wikipedia.org/wiki/Galaxy#Etymology">etymology of <em>galaxy</em></a>). Some sources hold that, strictly speaking, the term <em>Milky Way</em> should refer exclusively to the band of light that the galaxy forms in the <a title="Night sky" href="http://en.wikipedia.org/wiki/Night_sky">night sky</a>, while the galaxy should receive the full name <strong>Milky Way Galaxy</strong>, or alternatively <em>the Galaxy</em>.<sup><a href="http://en.wikipedia.org/wiki/Milky_Way#cite_note-7">[8]</a></sup><sup><a href="http://en.wikipedia.org/wiki/Milky_Way#cite_note-8">[9]</a></sup><sup><a href="http://en.wikipedia.org/wiki/Milky_Way#cite_note-9">[10]</a></sup> However, it is unclear how widespread this convention is, and the term <em>Milky Way</em> is routinely used in either context</p>
<p>CAN A GALXY BE A REDUCED REFERENCE MATRICE:BY QUANTAL ENTANGLEMENT in multiple relations</p>
<p><strong>Quantum entanglement</strong>, also called the <strong>quantum non-local connection</strong>, is a property of a <a title="Quantum state" href="http://en.wikipedia.org/wiki/Quantum_state">quantum mechanical state</a> of a system of two or more <a title="Physical body" href="http://en.wikipedia.org/wiki/Physical_body">objects</a> in which the <a title="Quantum state" href="http://en.wikipedia.org/wiki/Quantum_state">quantum states</a> of the constituting objects are linked together so that one object can no longer be adequately described without full mention of its counterpart—even if the individual objects are <a title="Nonlocality" href="http://en.wikipedia.org/wiki/Nonlocality">spatially separated</a> in a spacelike manner. The property of entanglement was understood in the early days of quantum theory, although not by that name. Quantum entanglement is at the heart of the <a title="EPR paradox" href="http://en.wikipedia.org/wiki/EPR_paradox">EPR paradox</a> developed in 1935. This interconnection leads to non-classical correlations between observable <a title="Physical property" href="http://en.wikipedia.org/wiki/Physical_property">physical properties</a> of remote <a title="System" href="http://en.wikipedia.org/wiki/System">systems</a>, often referred to as nonlocal correlations.</p>
<p>as a reduction of reference calculations of a positional value</p>
<dl>
<dd><img src="http://upload.wikimedia.org/math/8/5/3/853add453c816023c1a998a03c3c6f69.png" alt=" |\Psi \rangle \in H_A \otimes H_B. " /> </dd>
</dl>
<p>As indicated above, in general there is no way to associate a pure state to the component system <em>A</em>. However, it still is possible to associate a density matrix. Let</p>
<dl>
<dd><img src="http://upload.wikimedia.org/math/a/c/c/acc8b6f075e2a625e482df87f2151595.png" alt="\rho_T = |\Psi\rangle \; \langle\Psi|" />. </dd>
</dl>
<p>which is the projection operator onto this state. The state of <em>A</em> is the <a title="Partial trace" href="http://en.wikipedia.org/wiki/Partial_trace">partial trace</a> of ρ<sub><em>T</em></sub> over the basis of system <em>B</em>:</p>
<dl>
<dd><img src="http://upload.wikimedia.org/math/d/5/2/d52dcbb21493da2c9a44d9b62001d1a0.png" alt="\rho_A \ \stackrel{\mathrm{def}}{=}\   \sum_j \langle j|_B \left( |\Psi\rangle \langle\Psi| \right) |j\rangle_B = \hbox{Tr}_B \; \rho_T " />. </dd>
</dl>
<p>ρ<sub><em>A</em></sub> is sometimes called the reduced density matrix of ρ on subsystem <em>A</em>. Colloquially, we &#8220;trace out&#8221; system <em>B</em> to obtain the reduced density matrix on <em>A</em>.</p>
<p>For example, the density matrix of <em>A</em> for the entangled state discussed above is</p>
<dl>
<dd><img src="http://upload.wikimedia.org/math/9/1/8/918a701fbc3d32a190e642e4f1578e8e.png" alt="\rho_A = (1/2) \bigg(  |0\rangle_A \langle 0|_A + |1\rangle_A \langle 1|_A \bigg)" /> </dd>
</dl>
<p>This demonstrates that, as expected, the reduced density matrix for an entangled pure ensemble is a mixed ensemble. Also not surprisingly, the density matrix of <em>A</em> for the pure product state <img src="http://upload.wikimedia.org/math/7/8/0/7809b01a3d8b2657019bd7bbf48fe3d6.png" alt="|\psi\rangle_A \otimes  |\phi\rangle_B" /> discussed above is</p>
<dl>
<dd><img src="http://upload.wikimedia.org/math/1/2/2/122e472c17017bda8def3647a0d15156.png" alt="\delta_A = |\psi\rangle_A \langle\psi|_A ." /> </dd>
</dl>
<p>In general, a bipartite pure state <em>ρ</em> is entangled if and only if one, meaning both, of its reduced states are mixed states.</p>
<p>PROCESS CERTAINTY</p>
<p><a href="http://upload.wikimedia.org/wikipedia/commons/0/02/Gravitational_lens-full.jpg"><img src="http://upload.wikimedia.org/wikipedia/commons/0/02/Gravitational_lens-full.jpg" alt="File:Gravitational lens-full.jpg" width="491" height="372" /></a></p>
<p><strong> </strong></p>
<p><strong> <a href="http://benabb.files.wordpress.com/2009/11/img_00202.jpg"><img title="IMG_0020" src="http://benabb.files.wordpress.com/2009/11/img_00202.jpg?w=500&amp;h=363&#038;h=363" alt="" width="500" height="363" /></a></strong></p>
<p><strong> </strong></p>
<p><strong>basically any formulation of a multi  relationship with interactive states in dimensional space time would work by defining the reasons why , as Einstein projected &#8221; to be in a dimensional fase of their vector motion in a positionality of relations fully possible as a event in such a large universe as would imply that using Einsteins formulation to solve it would proove it was made by Himself..</strong></p>
<p><strong> </strong></p>
<p><strong>Scientific method</strong> refers to a body of <a title="Technique" href="http://en.wikipedia.org/wiki/Technique">techniques</a> for investigating <a title="Phenomenon" href="http://en.wikipedia.org/wiki/Phenomenon">phenomena</a>, acquiring new <a title="Knowledge" href="http://en.wikipedia.org/wiki/Knowledge">knowledge</a>, or correcting and integrating previous knowledge. To be termed scientific, a method of <a title="Inquiry" href="http://en.wikipedia.org/wiki/Inquiry">inquiry</a> must be based on gathering <a title="Observable" href="http://en.wikipedia.org/wiki/Observable">observable</a>, <a title="Empirical" href="http://en.wikipedia.org/wiki/Empirical">empirical</a> and <a title="Measure" href="http://en.wikipedia.org/wiki/Measure">measurable</a> <a title="Evidence" href="http://en.wikipedia.org/wiki/Evidence">evidence</a> subject to specific principles of <a title="Reasoning" href="http://en.wikipedia.org/wiki/Reasoning">reasoning</a>.<sup><a href="http://en.wikipedia.org/wiki/Scientific_method#cite_note-0">[1]</a></sup> A scientific method consists of the collection of <a title="Data" href="http://en.wikipedia.org/wiki/Data">data</a> through <a title="Observation" href="http://en.wikipedia.org/wiki/Observation">observation</a> and <a title="Experiment" href="http://en.wikipedia.org/wiki/Experiment">experimentation</a>, and the formulation and testing of hypotheses.<sup><a href="http://en.wikipedia.org/wiki/Scientific_method#cite_note-1">[2]</a></sup></p>
<p>Although procedures vary from one <a title="Fields of science" href="http://en.wikipedia.org/wiki/Fields_of_science">field of inquiry</a> to another, identifiable features distinguish scientific inquiry from other methodologies of knowledge. Scientific researchers propose <a title="Hypothesis" href="http://en.wikipedia.org/wiki/Hypothesis">hypotheses</a> as explanations of phenomena, and design <a title="Experiment" href="http://en.wikipedia.org/wiki/Experiment">experimental</a> <a title="Research" href="http://en.wikipedia.org/wiki/Research">studies</a> to test these hypotheses. These steps must be repeatable in order to dependably predict any future results. <a title="Theory" href="http://en.wikipedia.org/wiki/Theory#Science">Theories</a> that encompass wider domains of inquiry may bind many independently-derived hypotheses together in a coherent, supportive structure. This in turn may help form new hypotheses or place groups of hypotheses into context.</p>
<p>as type 1 ,2,3 sections in percentages of a localised HOKI event horizon and the reasons for only 3 % as being the shared multiple context of the data on a count of 3 values defined as a mean value process in relation to the exteriorisations of a troph in process to connect similar event values in a volumetrical similarity to being opposed by a southern hemisphere in their 3 trigonometrical value as a combinance of a warp value that could encapsule or immerse itself into envelopment by the process of a value in which comparatives in their states of end values as a type stop by space time positionings where only DOME events can be larger than any active star size event by halved space time to halved  HOKI sizes..</p>
<p>The <strong>history of quantum mechanics</strong><sup><a href="http://en.wikipedia.org/wiki/Quantum_mechanics#cite_note-11">[12]</a></sup> began essentially with the 1838 discovery of cathode rays by <a title="Michael Faraday" href="http://en.wikipedia.org/wiki/Michael_Faraday">Michael Faraday</a>, the 1859 statement of the black body radiation problem by <a title="Gustav Kirchhoff" href="http://en.wikipedia.org/wiki/Gustav_Kirchhoff">Gustav Kirchhoff</a>, the 1877 suggestion by <a title="Ludwig Boltzmann" href="http://en.wikipedia.org/wiki/Ludwig_Boltzmann">Ludwig Boltzmann</a> that the energy states of a physical system could be discrete, and the 1900 quantum hypothesis by <a title="Max Planck" href="http://en.wikipedia.org/wiki/Max_Planck">Max Planck</a> that any energy is radiated and absorbed in quantities divisible by discrete ‘energy elements’, E, such that each of these energy elements is proportional to the <a title="Frequency" href="http://en.wikipedia.org/wiki/Frequency">frequency</a> <em>ν</em> with which they each individually radiate <a title="Energy" href="http://en.wikipedia.org/wiki/Energy">energy</a>, as defined by the following formula:</p>
<dl>
<dd><img src="http://upload.wikimedia.org/math/c/1/5/c1551f84d064b92577165ef341ea5aca.png" alt=" E = h \nu = \hbar \omega\, " /> </dd>
</dl>
<p>where <em>h</em> is Planck&#8217;s Action Constant. Planck insisted<sup><a href="http://en.wikipedia.org/wiki/Quantum_mechanics#cite_note-12">[13]</a></sup> that this was simply an aspect of the processes of absorption and emission of radiation and had nothing to do with the physical reality of the radiation itself. However, this did not explain the <a title="Photoelectric effect" href="http://en.wikipedia.org/wiki/Photoelectric_effect">photoelectric effect</a> (1839), i.e. that shining light on certain materials can function to eject electrons from the material. In 1905, basing his work on Planck’s quantum hypothesis, <a title="Albert Einstein" href="http://en.wikipedia.org/wiki/Albert_Einstein">Albert Einstein</a><sup><a href="http://en.wikipedia.org/wiki/Quantum_mechanics#cite_note-13">[14]</a></sup> postulated that <a title="Light" href="http://en.wikipedia.org/wiki/Light">light</a> itself consists of individual quanta. These later came to be called photons (1926). From Einstein&#8217;s simple postulation was born a flurry of debating, theorizing and testing, and thus, the entire field of quantum physics.</p>
<p>the data on the force of making a value of data on the processess of what is observable as the indivcations of comparative sizes of the hoki events by their referenced galactic amounts into a special theory of waht would cause a larger than 1/2 hemisphere =a string format in its&gt;3x HOKI involvements</p>
<p>= 6 x ( Volume /2)</p>
<p>as a type maintainements of the values in their process to describe how the general data on a internal and external look into the relations of hemi formatted half eway point in the general HOKI fields as their projective similarity ahead of the process of a galaxy having a hoki space for its central core as a type non inhabitable zone of similarisations with type 3= projective responses where a certain amount of data must have basic linear laws with the rotations of events and their data references to a positional angle of a higher than mean or = TO MEAN VALUE ORBITALS  that have had their coincidence displaced over the galactic plane..</p>
<p>with only 20 attempts to locate the greatest collective point dispersals of galaxies in groupings of decimal values , the point system indicated that the resultants were quite low and as such , that there were not many cluster groupings in very high numbers..</p>
<p><a href="http://benabb.files.wordpress.com/2009/11/img_00161.jpg"><img class="alignnone size-full wp-image-30374" title="IMG_0016" src="http://benabb.files.wordpress.com/2009/11/img_00161.jpg?w=500&#038;h=344" alt="" width="500" height="344" /></a></p>
<p>in what would appear to be two players in a sloan digital sky survey topography would imply the 3 rd player being the computer itself in a resultant tally of a 1 % to 2% to 3 % divisive of the top fased layer in a mean value troph that is minimally definable due to the basis of a flat top development divided by 3 values as 3 players ,,, the system seems to indicate a force of mass at the section defined as the cap on the hoki question ( a hoki is a star grouping cluster of stars outside or within a galaxy force field which basically every galaxy has to do with as the type mean curvature at the star and at the dipp down of the roof cap values&#8230;a type interactive system that would, by the general data of the challange to locate the largest amount of galaxies in the sloan collective and to do it within 10 trys..</p>
<p><a href="http://upload.wikimedia.org/wikipedia/commons/8/83/Location_of_central_region_observed_in_whole_panorama_of_the_Milky_Way.jpg"><img src="http://upload.wikimedia.org/wikipedia/commons/thumb/8/83/Location_of_central_region_observed_in_whole_panorama_of_the_Milky_Way.jpg/552px-Location_of_central_region_observed_in_whole_panorama_of_the_Milky_Way.jpg" alt="File:Location of central region observed in whole panorama of the Milky Way.jpg" width="386" height="419" /></a></p>
<p>within a basic milky way format , the general star constellations are at a greatest amount in the middle of the image with a basic indication to the top of the vector horizon of the galaxy itself..</p>
<p><a href="http://upload.wikimedia.org/wikipedia/commons/7/70/Deathvalleysky_nps_big.jpg"><img src="http://upload.wikimedia.org/wikipedia/commons/thumb/7/70/Deathvalleysky_nps_big.jpg/800px-Deathvalleysky_nps_big.jpg" alt="File:Deathvalleysky nps big.jpg" width="560" height="181" /></a></p>
<p>as a galactic position where the general galactic position is obviously clear as being the local galactic bubble where our own solar system and the proximal star systems leading to the orions belt at its limit the general position of the solar system being closest to the centre of the galaxy and in closest proximity to the dark dust clouds that absorb most of the light from the centre, this cloud flows passed the bubble but not into it, rather around it ,giving us the view we have from earth looking out to Orion&#8230;</p>
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			<media:title type="html">benabb</media:title>
		</media:content>

		<media:content url="http://upload.wikimedia.org/math/8/5/3/853add453c816023c1a998a03c3c6f69.png" medium="image">
			<media:title type="html"> &#124;\Psi \rangle \in H_A \otimes H_B. </media:title>
		</media:content>

		<media:content url="http://upload.wikimedia.org/math/a/c/c/acc8b6f075e2a625e482df87f2151595.png" medium="image">
			<media:title type="html">\rho_T = &#124;\Psi\rangle \; \langle\Psi&#124;</media:title>
		</media:content>

		<media:content url="http://upload.wikimedia.org/math/d/5/2/d52dcbb21493da2c9a44d9b62001d1a0.png" medium="image">
			<media:title type="html">\rho_A \ \stackrel{\mathrm{def}}{=}\   \sum_j \langle j&#124;_B \left( &#124;\Psi\rangle \langle\Psi&#124; \right) &#124;j\rangle_B = \hbox{Tr}_B \; \rho_T </media:title>
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		<media:content url="http://upload.wikimedia.org/math/9/1/8/918a701fbc3d32a190e642e4f1578e8e.png" medium="image">
			<media:title type="html">\rho_A = (1/2) \bigg(  &#124;0\rangle_A \langle 0&#124;_A + &#124;1\rangle_A \langle 1&#124;_A \bigg)</media:title>
		</media:content>

		<media:content url="http://upload.wikimedia.org/math/7/8/0/7809b01a3d8b2657019bd7bbf48fe3d6.png" medium="image">
			<media:title type="html">&#124;\psi\rangle_A \otimes  &#124;\phi\rangle_B</media:title>
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		<media:content url="http://upload.wikimedia.org/math/1/2/2/122e472c17017bda8def3647a0d15156.png" medium="image">
			<media:title type="html">\delta_A = &#124;\psi\rangle_A \langle\psi&#124;_A .</media:title>
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		<media:content url="http://upload.wikimedia.org/wikipedia/commons/0/02/Gravitational_lens-full.jpg" medium="image">
			<media:title type="html">File:Gravitational lens-full.jpg</media:title>
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		<media:content url="http://upload.wikimedia.org/math/c/1/5/c1551f84d064b92577165ef341ea5aca.png" medium="image">
			<media:title type="html"> E = h \nu = \hbar \omega\, </media:title>
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			<media:title type="html">File:Location of central region observed in whole panorama of the Milky Way.jpg</media:title>
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		<title>sci fi reality&#8230;&#8230;..what are the dimensions of the milky way in the universe dimensionality</title>
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		<pubDate>Thu, 26 Nov 2009 12:34:20 +0000</pubDate>
		<dc:creator>benabb</dc:creator>
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		<description><![CDATA[s p a c e  t i m e  u n i v e r s e  m i l k y  w a y
as a evaluation of dimensional problems with x and y graphing in z spacetime dimensions
By Henryk Szubinski
the system developed here will show the milky way galaxy position in relation to the [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=benabb.wordpress.com&blog=3562110&post=30356&subd=benabb&ref=&feed=1" />]]></description>
			<content:encoded><![CDATA[<div class='snap_preview'><br /><p>s p a c e  t i m e  u n i v e r s e  m i l k y  w a y</p>
<p>as a evaluation of dimensional problems with x and y graphing in z spacetime dimensions</p>
<p>By Henryk Szubinski</p>
<p>the system developed here will show the milky way galaxy position in relation to the solan structures in the background and how the dimensional alteration of flipping the galaxy view will show the alternate side of the sloan structure as a format for incluisons in the x,y,z system of measurement and why the basic alterations of the x,y values in a z spacetime dimensiionality which illustrates the expensions of lsoan verticies in their point of emission and also in their point spread based relations to the general conservations of energy by the flipp back of the measurement system as the effect seen with the gebneral sloan great wall of galaxies as a core based reference system for all galaxies in the universe:</p>
<p>the diagramm goes to lengths to show how the background of a galaxies over positionality will be forced into the sloan background surface as it is pushed into the displacement through it by the Force Volume and the relationships of a progressive record of how much background is traversed in the relations to the galaxy mooving  both in the x axis and the y axi to locate the 90 degree as  the system of measure:</p>
<p>Towards a basis of flipping the dimensional perspective which shows how comples the relationship is to hyperspace as the galaxy thickness in close proximity to a non LONGER displacement needed from the system of measure as the general system of the background remaining in the reverse dimension of dark spacetime&#8230;as the background remaining in the background by a foreground complexity that is based on positionality by need as a type a.i</p>
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<p>this will assist in artificial intelligence computations where the general data on any format begining with a x,y graph measurement to define how the spread on the measurement system used will interrelate to graphing a dark matter ring ,for example, or why a black ghole is where it is as a point. It will alos assist in the computations of strings by a diagrammatic comparative with sinusodial effects on warping the formats of calculous and general graphing techniques as a format for a z axial inclusion that will also assist in the dimensional problems of using thermal imagings based on (x,y,z) graphing techniques to derive answers to the superconductability at room temperatures . The data on the general illustrations of how a faster than light warping by using similar computations where Einstein was concerned ,not with graphing in the x,y parameters but based his theories in the quantum mechanical parameters of cloud cxhamber experiments&#8230;The basis of a orientation in z space time will also assist in orientating the theoretics of any theoretical evaluation of the values in x qnd y formats as basic introductions to using the specified relations of the age of the universe and its size.</p>
<p><a href="http://benabb.files.wordpress.com/2009/11/img_00105.jpg"><img title="IMG_0010" src="http://benabb.files.wordpress.com/2009/11/img_00105.jpg?w=500&amp;h=705&#038;h=705" alt="" width="500" height="705" /></a></p>
<p>the data positionality is based on the f= frequency zone where the locational positional alterator as a type indicator of where one wants to  go in the sloan spacetime = to a basic alteration of high frequency alterations in conservations of x and y values but also of the parameters of x values and y values as their common interactions of frequency based interactions of a common value in interactions which will show how the minimal distance behind the formats of the system x,y,z has a type shadow zone that will assist in the expansions of the system..</p>
<p>&nbsp;</p>
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<p>i made a construct compositional image by using the data vectors and their measurement system similarities and inputted them into a dynamic type rleationship to design a spaceship or flying car that will lift by basic involvance with dynamics</p>
<p>&nbsp;</p>
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		<title>sci fi reality&#8230;&#8230;&#8230;waveform super conductability of audiality</title>
		<link>http://benabb.wordpress.com/2009/11/26/30326/</link>
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		<pubDate>Thu, 26 Nov 2009 10:01:08 +0000</pubDate>
		<dc:creator>benabb</dc:creator>
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		<description><![CDATA[w a v e f o r m   s u p e r   a u d i a l    c o n d u c t i o n
By Henryk Szubinski
on SUPER SIMILARITY OF MEASURMENT INSTRUMENTS TO  dark matter rings and black holes
In mathematics, a geometric progression, also known as a geometric sequence, is a [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=benabb.wordpress.com&blog=3562110&post=30326&subd=benabb&ref=&feed=1" />]]></description>
			<content:encoded><![CDATA[<div class='snap_preview'><br /><p>w a v e f o r m   s u p e r   a u d i a l    c o n d u c t i o n</p>
<p>By Henryk Szubinski</p>
<p>on SUPER SIMILARITY OF MEASURMENT INSTRUMENTS TO  dark matter rings and black holes</p>
<p>In <a title="Mathematics" href="http://en.wikipedia.org/wiki/Mathematics">mathematics</a>, a <strong>geometric progression</strong>, also known as a <strong>geometric sequence</strong>, is a <a title="Sequence" href="http://en.wikipedia.org/wiki/Sequence">sequence</a> of <a title="Number" href="http://en.wikipedia.org/wiki/Number">numbers</a> where each term after the first is found by multiplying the previous one by a fixed non-zero number called the <em>common ratio</em>. For example, the sequence 2, 6, 18, 54, &#8230; is a geometric progression with common ratio 3. Similarly 10, 5, 2.5, 1.25, &#8230; is a geometric sequence with common ratio 1/2. The sum of the terms of a geometric progression is known as a <strong>geometric series</strong>.</p>
<p>Thus, the general form of a geometric sequence is</p>
<dl>
<dd><img src="http://upload.wikimedia.org/math/1/5/b/15b1e5bc8f8e8c5e7d46fd177eb625d6.png" alt="a,\ ar,\ ar^2,\ ar^3,\ ar^4,\ \ldots" /> </dd>
</dl>
<p>and that of a geometric series is</p>
<dl>
<dd><img src="http://upload.wikimedia.org/math/e/8/d/e8d3eb469951c8d01627845afb636c4c.png" alt="a + ar + ar^2 + ar^3 + ar^4 + \cdots" /> </dd>
</dl>
<p>where <em>r</em> ≠ 0 is the common ratio and <em>a</em> is a <a title="Scale factor" href="http://en.wikipedia.org/wiki/Scale_factor">scale factor</a>, equal to the sequence&#8217;s start value.</p>
<p>general data on a input of  mass to velocity ratio in the functionings of spacetime as the areas in warp by the process of a inertial object in motion to which decelleration increases the depth of the dimensional field into the type dark matter areas as a type ; &#8221; put a prodd  through a tensile field   while closing the measurement device into a circumferencial stabiliser( dark matter ring type relation to measurement device )   related to a secondary type ( black hole measurement device )and you will find that the process area of the ciruclar format is a type tensile relational area that continues through the warped field  to define the same basic relationship by inputting a tensile area to prodd similarity with black holes .</p>
<p>.</p>
<p>A+ S ( m +Vel) = 1/2 ( x -a)Inertia</p>
<p>as for the measurement uncertainties</p>
<p>Cir 1 / Cir 2 = m ( c +m)</p>
<p>&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;</p>
<p><a href="http://benabb.files.wordpress.com/2009/11/img23.jpg"><img class="alignnone size-full wp-image-30325" title="IMG" src="http://benabb.files.wordpress.com/2009/11/img23.jpg?w=500&#038;h=372" alt="" width="500" height="372" /></a></p>
<p>In <a title="Mathematics" href="http://en.wikipedia.org/wiki/Mathematics">mathematics</a>, an <strong>arithmetic progression</strong> (A.P.) or <strong>arithmetic sequence</strong> is a <a title="Sequence" href="http://en.wikipedia.org/wiki/Sequence">sequence</a> of <a title="Number" href="http://en.wikipedia.org/wiki/Number">numbers</a> such that the difference of any two successive members of the sequence is a constant. For instance, the sequence 3, 5, 7, 9, 11, 13, … is an arithmetic progression with common difference 2.</p>
<p>If the initial term of an arithmetic progression is <em>a</em><sub>1</sub> and the common difference of successive members is <em>d</em>, then the <em>n</em>th term of the sequence is given by:</p>
<dl>
<dd><img src="http://upload.wikimedia.org/math/a/9/3/a93173b2cdeea431ce818315ca84ae87.png" alt="\ a_n = a_1 + (n - 1)d," /> </dd>
</dl>
<p>and in general</p>
<dl>
<dd><img src="http://upload.wikimedia.org/math/7/5/e/75e8cd43dc5817d40487480b96a07447.png" alt="\ a_n = a_m + (n - m)d." /> </dd>
</dl>
<p>A finite portion of an arithmetic progression is called a <strong>finite arithmetic progression</strong> and sometimes just called an arithmetic progression.</p>
<p>&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;-</p>
<p>type data on formatts of motion to imply that sections of wave fronts have their similarities in what is defined as internal alterations of force fields</p>
<p>AS GEOMETRIC PROGRESSION:</p>
<p>and their referenced positional interactions by similar shapes of the waveformats.</p>
<p>AS ARITHMETIC PROGRESSION</p>
<p>The values of the waveformats are basic to the definitions of a subsequent subtractionability of universe alterance by the forefront of the wave vector values and the continued usage of the dark matter</p>
<p>COMMON DIFFERENCE x</p>
<p><a href="http://upload.wikimedia.org/wikipedia/en/b/bd/Birkeland-anode-globe-fig259.jpg"><img src="http://upload.wikimedia.org/wikipedia/en/b/bd/Birkeland-anode-globe-fig259.jpg" alt="File:Birkeland-anode-globe-fig259.jpg" width="461" height="360" /></a></p>
<p>Laboratory simulation of the magnetosphere&#8217;s influence on the Solar Wind; these auroral-like <a title="Birkeland current" href="http://en.wikipedia.org/wiki/Birkeland_current">Birkeland currents</a> were created in a <a title="Terrella" href="http://en.wikipedia.org/wiki/Terrella">terrella</a>, a magnetised anode globe in an evacuated chamber</p>
<p>as a non defined continued process of wave similarity to spherical or oblong data..volumes in their responsive enviroenments the values of data on projected values of reference and also the values in usage with combined data of the process in which subsequent data formats are used in their referenced signal deviciveness to locate extra biological planets and the values ahead of the data on how to project alterations of dark matter surface features</p>
<p>COMMON RATIO y</p>
<p>the point to be made here is the vertical and verticie vector values that are basically predefined as in a external state of non input into alternate volumes as maintaining their own external reference points in what are force fields  in their referenced common divisive as a objective to input a spherical form into a oblong spherioid type form by the usage of the projective data on background radiations of the solar effect where the measurements made to the spacetime behind the sun at specific points in orbital time =</p>
<p>to a basic format of data and registrations by telescopes of the x effct to whcih data on the possibility of values in which the data pocket space time is defined as the value of string warping of the  basic</p>
<p>2x + F ( string.x ) .Volume= 3</p>
<p>as such the process in which data computations are made with the motivation to use 2 areas where a prodd is pushing the area spacetime through a spacetime gravity event. The resultant mobility of such orbital pressurisations are to a high degree vectorisable by input into new spacetime warps. Not by plugging the hole but by continuing the process of input of a Enthropy matter value&#8230;seen from the side this would seem to be a a wave form ( shown in the  (one) diagram) from either side ,Only when in action / reaction defined by Newton.</p>
<p><a href="http://benabb.files.wordpress.com/2009/11/img_000110.jpg"><img title="IMG_0001" src="http://benabb.files.wordpress.com/2009/11/img_000110.jpg?w=500&amp;h=372&#038;h=372" alt="" width="500" height="372" /></a></p>
<p>that are basically a similarisations process of the minimal alterations of superconductive audiality. As such also a process in which the data on the usage of stop vector motion points of dark matter as being the value derived ahead of the general data audiality of interaction between the states of waveform similarity and the derived universe volumes used for the process of a fluid format in whic basic data in forced into fow by the process progression.</p>
<p><a href="http://benabb.files.wordpress.com/2009/11/img_000311.jpg"><img title="IMG_0003" src="http://benabb.files.wordpress.com/2009/11/img_000311.jpg?w=500&amp;h=362&#038;h=362" alt="" width="500" height="362" /></a></p>
<p>the greater the combinations of space time events= the same value prodd effect as the gravity value by the</p>
<p>h= g</p>
<p>as a type distributional expansions of the weakened gravity field at the x + 1 = g</p>
<p>basis level, As such the prodd is dissengaged from the process of gravity as a stabilisation in similar gravity parameters..</p>
<p>&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;-</p>
<p><img src="http://upload.wikimedia.org/wikipedia/commons/thumb/4/4b/Geometric_progression_convergence_diagram.svg/200px-Geometric_progression_convergence_diagram.svg.png" alt="" /></p>
<p>progression diagrams with the internal point specific rectangular area</p>
<p>&nbsp;</p>
<p><a href="http://benabb.files.wordpress.com/2009/11/img_00079.jpg"><img title="IMG_0007" src="http://benabb.files.wordpress.com/2009/11/img_00079.jpg?w=500&amp;h=362&#038;h=362" alt="" width="500" height="362" /></a></p>
<p>&nbsp;</p>
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			<media:title type="html">a,\ ar,\ ar^2,\ ar^3,\ ar^4,\ \ldots</media:title>
		</media:content>

		<media:content url="http://upload.wikimedia.org/math/e/8/d/e8d3eb469951c8d01627845afb636c4c.png" medium="image">
			<media:title type="html">a + ar + ar^2 + ar^3 + ar^4 + \cdots</media:title>
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		<media:content url="http://upload.wikimedia.org/math/a/9/3/a93173b2cdeea431ce818315ca84ae87.png" medium="image">
			<media:title type="html">\ a_n = a_1 + (n - 1)d,</media:title>
		</media:content>

		<media:content url="http://upload.wikimedia.org/math/7/5/e/75e8cd43dc5817d40487480b96a07447.png" medium="image">
			<media:title type="html">\ a_n = a_m + (n - m)d.</media:title>
		</media:content>

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			<media:title type="html">File:Birkeland-anode-globe-fig259.jpg</media:title>
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		<title>sci fi reality&#8230;..time dialations in projective positions</title>
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		<pubDate>Wed, 25 Nov 2009 16:00:14 +0000</pubDate>
		<dc:creator>benabb</dc:creator>
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		<description><![CDATA[D I A L A T I O N S   I N   D E S T I N A T I O N S   P R O B L EM S
a time dialation would make certain routes in usage by faster than light travel a problem:
By Henryk Szubinski
&#160;
when a tensil relationship is exited and the [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=benabb.wordpress.com&blog=3562110&post=30317&subd=benabb&ref=&feed=1" />]]></description>
			<content:encoded><![CDATA[<div class='snap_preview'><br /><p>D I A L A T I O N S   I N   D E S T I N A T I O N S   P R O B L EM S</p>
<p>a time dialation would make certain routes in usage by faster than light travel a problem:</p>
<p>By Henryk Szubinski</p>
<p>&nbsp;</p>
<p>when a tensil relationship is exited and the remaining universe seems like a dark and massive</p>
<p>space time littered with galaxies which seem everywhere to keep the same order of rotation;</p>
<p>there is a general law to define the complications of colliding galaxies and the law that describes how</p>
<p>they can be a resultant interactions of a close miss instead of a deadly coures of the unavoidable.</p>
<p>By using markers in whatever spacetime position as indicative of a type vector direction of a motivation</p>
<p>to guide any process be it a energetic experiment such as a accellerator in space or a vechicle testing ground in outer space,</p>
<p>for a relational data environment,  the ultimate effects of spacetime multiplications in their positional data parameters</p>
<p>can be measured and remeasured to define the minimal alteration degree of Area comparatives be they</p>
<p>circular or triangular, the basic format of a rectangle will do for now.</p>
<p>So to use the vechicle experiment case; A VECHICLE IS PROPELLED ALONG THE LINES THAT</p>
<p>DEFINE THE motion parameters to gain a certain effect:</p>
<p>the data on the loss or gain of one specific marker ( most markers in outerpsace would be burners) so that to imply the</p>
<p>first law of a process of certainty where the object in motion displaces thrrough a field and alters its specific marker would entail</p>
<p>some general law of recombination or a certauinty that the unified field would remaion, its angle altered by a marker would</p>
<p>= a angle of alterance of the whole plane, But then there are reapparent markers that stabilise a system after it has changed,,</p>
<p>,theese event markers exist everywhere in the universe; they are photons:</p>
<p>If you displace through a field and notice a altered marker situation and the problem</p>
<p> is that the precise and unavoidable effect of motion would imply</p>
<p>that the objective to define such spacetime activity on a minature data card would</p>
<p>be in effect a format to define the vector through a field where loss of the card or its alteration</p>
<p>in space time would also be a effect in volved with the the alterations of a problematic</p>
<p> signalling elementy in the card which could be used to derive the function of</p>
<p>:MOTION LOSS REACTIVATIONS.</p>
<p>Because the basis of the vector involvance at a card point would be registered to any</p>
<p> horizon the point  inddicator MARKER on the card could be</p>
<p>gauged to calculate vanishing points that are the basis of the opposite,</p>
<p>namely the reaquired spacetime parameter of the user of</p>
<p>a rectabngular fioeld in the experiment.,.As such the data gained is input into the</p>
<p>main computer and the Universal Marker value is</p>
<p>reconfigured to the position of the vechicles original position prior to start and the</p>
<p> basis of proof for the destinations of spaceships is defined as the</p>
<p>basis of unalterable destiny that cannot be altered by a vector involvance with the</p>
<p>process where to have a acess card =is to have no destination</p>
<p>as reversal of time in multiple processess.</p>
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		<title>sci fi reality&#8230;&#8230;&#8230;restaurant in space</title>
		<link>http://benabb.wordpress.com/2009/11/25/30309/</link>
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		<pubDate>Wed, 25 Nov 2009 12:41:31 +0000</pubDate>
		<dc:creator>benabb</dc:creator>
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		<description><![CDATA[restaurant in space:
the comparatives of a butterfly screw within a butterly screw with their own generative tipps with
motor generators that are engeged in the process of rotation in opposite directions while maintaining a
type shock absorbance involvement with the type or referenced magnetic polarisation and the general screw format itself
being a type magnetic coil which is [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=benabb.wordpress.com&blog=3562110&post=30309&subd=benabb&ref=&feed=1" />]]></description>
			<content:encoded><![CDATA[<div class='snap_preview'><br /><p>restaurant in space:<a href="http://benabb.files.wordpress.com/2009/11/img_00019.jpg"><img class="alignnone size-full wp-image-30311" title="IMG_0001" src="http://benabb.files.wordpress.com/2009/11/img_00019.jpg?w=500&#038;h=353" alt="" width="500" height="353" /></a></p>
<p>the comparatives of a butterfly screw within a butterly screw with their own generative tipps with</p>
<p>motor generators that are engeged in the process of rotation in opposite directions while maintaining a</p>
<p>type shock absorbance involvement with the type or referenced magnetic polarisation and the general screw format itself</p>
<p>being a type magnetic coil which is accellerated by values of gravity as a type screw on by the weight effect of one butterfly</p>
<p> with the other in stationary position on the ground as the larger format of the larger butterfly fallen around the smaller butterfly..</p>
<p>within it..</p>
<p>tthe earth</p>
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