Showing posts with label wavelength. Show all posts
Showing posts with label wavelength. Show all posts

Wednesday, April 6, 2022

High Frequency Thought Waves -- Relatively Quick Transference

 A given arbitrary Noether-Based thought wave, that is here to be of a relatively low wavelength, may often tend to work to bear a relatively high frequency, to where, if such a respective thought wave is here to be incurred upon, by a recursively covariant isotropically stable kinematic source, of gauge-action-related phenomenology, in such a manner, to where the resultant kinematic transversally applied wave-tug, is here to work to bear a monomial tense of a scalar amplitude, this will often tend to consequently work, to cause the said thought wave in question here, to be physically transferred to its transversally delineated destination, at a relatively higher rate of velocity, than it otherwise would. TO BE CONTINUED! SAM.

Wavelength Of Gravitational Perturbation

 When the given arbitrary Noether-Based wavelength of gravitational perturbation is zero, the directly corresponding  Ricci Curvature, is thence to be flat, and, the correlative Ricci Flow, will thereby tend to be smooth. When the given arbitrary Noether-Based wavelength of gravitational perturbation is less than zero, the directly corresponding Ricci Curvature, is thence to have a general tendency, of being eminently associated with a fractional value, and, the correlative Ricci Flow, will thereby tend to not be smooth. Furthermore; When the given arbitrary Noether-Based wavelength of gravitational perturbation is more than zero, the directly corresponding Ricci Curvature is thence to have a general tendency, of being eminently associated, with a value that is more than one, and, the correlative Ricci Flow, will thereby tend to not be smooth. I WILL CONTINUE WITH THE SUSPENSE LATER! TO BE CONTINUED! SAM ROACH.

Monday, February 21, 2022

Thought Waves That Often Tend To Be Most Succinctly Incurred

 Thought waves of an isotropic nature, that are of both a relatively small wavelength, while also acting as respective individually taken solitons, often tend to be more capable, of being able to most succinctly incur upon the neurons of the subconscious mind of the brain of a biological entity, than other genre of thought waves do. I WILL CONTINUE WITH THE SUSPENSE LATER! SINCERELY, SAM ROACH.

Monday, October 26, 2020

Resonant Vibration Of Thought Waves

 Let us consider two different given arbitrary propagated thought waves. Both are here to work to bear the same wavelength, as well as bearing the same intrinsic frequency. Next; let's say that, basically the only difference between the propagational nature of these two different said thought waves, of this particular case scenario, -- is that one of such said thought waves, is to be more harmonically propagated than the other of these two said respective given arbitrary thought waves. That thought wave of the two, -- that is here to be propagated more harmonically, than the other respective thought wave, will consequently tend to result in working to bear a higher resonant vibration, than the other of such said thought waves. SAM.

Tuesday, October 13, 2020

Harmonic Resonant Vibration

 Thought waves that are both high in frequency, and low in wavelength, as well as also being of such a nature -- to where these are to act, in a manner that is similar to that of a soliton, -- tend to work to bear more of a  harmonic resonant vibration, for their volume of  transmitted holonomic eigenstate, than thought waves, that are, instead, to behave in a different manner than I have must mentioned. Sincerely, SAM ROACH.

Wednesday, November 14, 2018

Magnetism And The Right-Hand-Rule

As a beam of electromagnetic energy, is here to be propagating through time and space -- the correlative respective magnetic field, that is of such a case, is here to be wrapped around the correlative respective electric field, as is to be considered as by what is here to be called, -- the "right-hand-rule."
Let us here to be considering such a said propagation of electromagnetic energy -- to be traveling through the medium of a vacuum.  Next, let us consider that such a said beam of electromagnetic energy, is here to be set at one given arbitrary wavelength.  Such a said wavelength, is here to be the scalar distance -- that is here to be directly associated with one compete cycle of the fluctuation of the directly corresponding respective electric field.  Let us next say that the forward motion of the propagation of the correlative electric field, is here to be considered as the relative forward-holomorphic direction.  So, as a beam of such a tense of electromagnetic energy -- that is to here to be propagated by the distance of the so-eluded-to wavelength, that is of the so-eluded-to light-like phenomenology -- then, the directly corresponding magnetic field, that is here to be wrapped around the directly corresponding electric field, is to spiral in a clockwise manner -- around the respective electric field by one complete increment of cycle.  The larger that the wavelength of the light-like phenomenon is to be, the less tightly that the helicity or the spiraling will be, of the Laplacian-related torsion of such a said case -- when this is in consideration of the respective magnetic field to be wrapping around the respective electric field.  Consequently -- the smaller that the wavelength of the light-like phenomenon is to be, the more tightly that the helicity or spiraling will be, of the Laplacian-related torsion of such a case -- when this is in consideration of the respective magnetic field to be wrapping around the respective electric field.
I will continue with the suspense later!  To Be Continued!  Sincerely, Samuel David Roach.

Fluctuation In Electric Field

The wavelength of a beam of any given arbitrary tense of electromagnetic energy, is equal to one complete oscillation of the fluctuation of the directly corresponding respective electric field.
Here's one way of looking at what is here to be meant by "the fluctuation of the directly corresponding electric field."
Let us consider a metaphorical "shaft of brightness," that is here to be at one given arbitrary maximum cross-sectional measure of thickness, for such a so-eluded-to beam.  Let us now say that this said respective shaft, is here to be traveling in a vacuum -- to where it will be propagated, in so as to be traveling as straight as the general innate bending of space and time is to be designated-- along the general course of space and time.  As this said "shaft of brightness" is to be propagated along the general course of space and time -- the so-eluded-to projected beam of brightness, that is here to be linearly delineated, will then tend to go from smoothly decreasing in its cross-sectional thickness, to then going into smoothly re-gaining its initial so-eluded-to cross-sectional thickness, and back again.  In the meanwhile, the center of such a harmonic tense of a fluctuation is to be going as perfectly straight -- as the natural bending of space and time will tend to allow. The scalar distance that is to be considered here, as being taken along the vantage-point, of an extrapolation that is here to be Poincare to the topology-related center of such a so-named shaft of brightness, in which there is here to be the completion of one whole individually taken tense, of the earlier mentioned harmonic perturbation in the cross-sectional thickness of the so-eluded-to beam -- may be here to be analogous to what is meant -- as to what is here to be happening to a beam of electromagnetic energy, as it is here to be harmonically fluctuating in its electric field over time.
I will continue with the suspense later!  To Be Continued!  Sincerely, Samuel David Roach.

Wednesday, December 4, 2013

The First Set Of The Test Solutions To The Last Test To Course 14 About Group Action

1)  The fractal of an electric field in the substringular is the angular momentum of superstrings.  The angular momentum of superstrings is the Hamiltonian-based leveraged wave-tug/wave-pull that is exerted in a transversal manner upon a substringular phenomenon.  Amperage itself is charge per time.

2)  The fractal of a magnetic field in the substringular is the Hamiltonian-based spin-orbital-momentum that exists among substringular phenomena.  This is the Hamiltonian-based leveraging of the wave-tug/wave-pull that is exerted in a radial manner upon a substringular phenomenon.  Voltage is energy per charge.

3)  Planck phenomena flow as the discrete units of energy impedance in the substringular.  Wavelength of electromagnetic energy pulsates in a manner in so that the electric field that directly corresponds to this fluctuates over time, in accordance to the extrapolation-based measurments of their respective directly corresponding eluded to wavelengths.

4)  Electrons are comprised of more plain kinetic energy than neucleons, over time.  Plain kinetic energy bears discrete energy permittivity in the form of open-superstrings.  The just eluded to open strings close when such kinetic energy is released from a dropping electron, in the form of a photon.  A photon is a discrete unit of electromagnetic energy.

Wednesday, March 24, 2010

Course 3, Session 2

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When we look at the world around us, we see motion. If you were to examine a still object close enough, you would see that it too is constantly in motion. Sight is the most predominant sensory perception of most animals. If you can see something, its detection is keener in one’s mind than if it were sensed otherwise. Light is the basis of visual detection and warmth. (Heat is a form of electromagnetic energy.) If there were no heat, there would be no life or molecules. Since heat is light when at a certain wavelength, light is the most fundamental and important component and factor in allowing life to exist. Since light allows the motion of material phenomena, then there must be a relationship between the existence of light and the motion of objects.
Earlier, we discussed how light is created. An atom exists as a set of nucleon(s) that are surrounded by electrons. Things tend to take the path of least resistance. This is because phenomena tends to work at coming to rest or at least “trying” to expel the least amount of energy that it can. Look at people, they tend to try to do things in the easiest manner that they can. This is because when a person or a thing conserves energy, it has less of a tendency to be disorganized and thus this person or thing finds more stability. If something is more stable, then it is in less of a state of disorder. Disorder is entropy. Although entropy allows for important changes, such as melting, it also causes things to eventually fly apart. Look at your room. The more disorder it’s in, the more things get scattered. Life requires order, since it’s composed of a general organization of certain molecules. This is why life tends to try to stay at rest, and thus find more stability. Other material phenomena acts the same general way, since stability and thus the condition of staying at rest helps the phenomena. So, these obey the same general rule that of previously described. So when an electron finds a chance to exist with less energy in such a manner that it does not have to meet up with any undo resistance then, naturally, that electron will do what it takes to go to the general location that provides it with the opportunity to be more at rest. This entails an electron dropping an energy level in order to then have less energy, although maintaining mass at least for the most part. At this point, it releases that energy, since everything goes somewhere. This energy organizes in order to be a specific thing and is called a photon. Photons in the surrounding area come together in whatever number accompanies the direction in which these are propagated. Remember, the basic energy and wavelength of photons are discrete units. Depending on the combination of photons that form a single wavelength of a given type of light, that light could be whatever form of electromagnetic energy this would describe. Since light is key to existence, and is also a key residue of it, the very nature of light’s movement is key to the motion of all other physical phenomena.