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  1. #1
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    single jungle bangle dangle bungle jingle mangle tangle

    Each of these eight word contraction angles can represent the directional properties of spacetime charges. If used properly they can prevent the outcome of an embarrassing mingle wangle spangle of superstring’s Calabi-Yau structure entangle. See http://www.en.wikipedia.org/wiki/Calabi-Yau_manifold.

    First of all, all spacetime charges are singularly quantized. They are singles. However, if one positive, it always pair with one that is negative. This infinitesimal yin-yang has no color, weak, or electric charge. And the universe is in a state of dynamic equilibrium. All infinitesimal primary forces are repulsive. For every plus there exists a minus such that everything is freely taken or given. However, in some local regions of spacetime, there might be more pluses than minuses that are closer together even though global spacetime remains colorless and electrically neutral. Groups of neutral configuration tend to obey certain laws of random distribution and non-discriminate organization. These laws approach those of complexity theory and chaos theory. Nonetheless, at special domains, classical, quantum, both special and general relativity mechanics all approach linear model approximation.

    By a principle of self-organization, quarks, leptons, and bosons (both scalar and vector) were able to form planets, stars, galaxies, plants, animals, as well as human beings using codes of a divine proportion. Within the human populations, those who lack certain degrees of intelligence, the external world becomes a jungle. They can be attracted by a slight dangle jingle of intelligent bangle. However, distortion, mismanagement, and misinformation in the mangle can only lead to entangled bungles.
    Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: a(tr(t)=c²

  2. #2
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    Re: single jungle bangle dangle bungle jingle mangle tangle

    Nonetheless, at special domains, classical, quantum, both special and general relativity mechanics all approach linear model approximation.

    And yet there is no direct path. Frustrating isn't it.

  3. #3
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    Re: single jungle bangle dangle bungle jingle mangle tangle

    The shortest path in a curved spacetime is called a geodesic. However, in a quantum spacetime, it becomes the longest path. That is in order to go to the future we must first go to the past.
    Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: a(tr(t)=c²

  4. #4
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    Smile Re: single jungle bangle dangle bungle jingle mangle tangle

    Quote Originally Posted by AntonioLao View Post
    The shortest path in a curved spacetime is called a geodesic. However, in a quantum spacetime, it becomes the longest path. That is in order to go to the future we must first go to the past.

    However,if there is only the ever present now,then one would be snookered by
    any positioning away from now.




    regards michael.
    Humilty,coupled with boldness,surprises truth to
    reveal herself?

  5. #5
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    Re: single jungle bangle dangle bungle jingle mangle tangle

    With the uncertainty principle where is that path anyways?

  6. #6
    Raider of the lost time
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    Re: single jungle bangle dangle bungle jingle mangle tangle

    If there is always a NOW then we need not go anywhere or anywhen. I'll be happy to stay in a particular space and at a particular time and live forever.
    Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: a(tr(t)=c²

  7. #7
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    Smile Re: single jungle bangle dangle bungle jingle mangle tangle

    Quote Originally Posted by AntonioLao View Post
    If there is always a NOW then we need not go anywhere or anywhen. I'll be happy to stay in a particular space and at a particular time and live forever.

    Then so mote it be!



    regards michael.
    Humilty,coupled with boldness,surprises truth to
    reveal herself?

  8. #8
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    Re: single jungle bangle dangle bungle jingle mangle tangle

    Quote Originally Posted by AntonioLao View Post
    If there is always a NOW then we need not go anywhere or anywhen. I'll be happy to stay in a particular space and at a particular time and live forever.

    BORING!!!!!!

  9. #9
    Raider of the lost time
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    Re: single jungle bangle dangle bungle jingle mangle tangle

    Quote Originally Posted by Profpat
    With the uncertainty principle where is that path anyways
    You mean uncertain about where to go and when to do? If we are sure about staying put then we dont need a path.
    Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: a(tr(t)=c²

  10. #10
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    Smile Re: single jungle bangle dangle bungle jingle mangle tangle

    Quote Originally Posted by Profpat View Post
    BORING!!!!!!

    NO NO Pat,think this through,remember you will also have unlimited opportunities.



    regards michael.
    Humilty,coupled with boldness,surprises truth to
    reveal herself?

 

 
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