Arafed image of a diagram of a planetary system

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First
,
we assume that the two-dimensional plane is curved into a spherical surface
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the three-dimensional space is curved into a four-dimensional solar system-four-dimensional universe surface
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and then time is five-dimensional
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The numerical universe parameter values are assumed to be: angular velocity w = 1
;
radius a = 1
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speed of light v = c = n/P
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spatial radial polar coordinate r = n/P * t
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Then
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we have the following space-time coordinate equations: x = r cos(t) cos(a t) = n/P t cos(t) cos(t) (x coordinate equation 1) y = r Without(t) cos(a t) = n/P t without(t) cos(t) (y coordinate equation 1) z = r sin(a t) = n/P t without(t) (z coordinate equation 3) w = r = n/P * t (w coordinate equation 3) Where
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t represents time
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w corresponds to the time axis
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Next
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we have the following quantum field and probability five-dimensional polar coordinate value equations: u = u_n-1 + sin(t + m) (five-dimensional polar coordinate value equation 5) Where
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the value of m follows a probability distribution
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with a probability of 1/8 for 0
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a probability of 1/8 for 1/2P
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a probability of 1/8 for P
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and a probability of 1/8 for 3/2P
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There is a probability of 1/2 that there is no superposition wave at 2P
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When Sin(t + m) is zero
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u_n = u_n-1 is the same as the previous wave form
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