Ferent radiation explains the magnetic field around an
electric current, not Special relativity
“Ferent radiation explains the magnetic field around an
electric current”
Adrian Ferent
“In the last 200 years nobody was able to explain why does
an electric current produce a circular magnetic field?”
Adrian Ferent
“Inside the wire, moving electrons emits photons (Ferent
radiation) with the magnetic field oriented in the same direction, which is the
magnetic field around the electric current”
Adrian Ferent
“Ferent radiation explains the magnetic field around an
electric current, not Special relativity”
Adrian Ferent
In 1820, Oersted published his discovery that
a compass needle was deflected by a nearby electric current,
confirming a direct relationship between electricity and magnetism.
An electric current produces a circular magnetic field as it
flows through a wire.
“In the last 200 years nobody was able to explain why does
an electric current produce a circular magnetic field?”
Adrian Ferent
The electric field and magnetic field are two interrelated
aspects of a single object, called the electromagnetic field.
The entire electromagnetic field can be represented in a
single rank-2 tensor called the electromagnetic tensor.
You learned wrong things about:
Why does an electric current produces a magnetic field?
It is due to relativistic effect, magnetic field is simply
electric field viewed from a different frame of reference!
Magnetism is nothing more than electrostatics combined
with special relativity.
“The Aliens do not want to talk to a world that cannot
explain why does an electric current produce a magnetic field?”
Adrian Ferent
For free electrons in the wire, the external electric field
aligns the electrons magnetic dipoles all in the same direction.
For bounded in atoms electrons the possible alignment
depends from the strength of the bounding between the electrons and the
nucleus.
It is the electric field that drives the motion of the
electrons/charge.
For a current flowing along a straight wire segment, so you
line your thumb along it and the curl of your fingers shows the direction of
the magnetic field.
For a loop of wire, you curl your fingers in the direction
of the current flow in the loop of wire and your thumb shows the direction of
the magnetic field.
Electric currents create magnetic fields, which are
used in motors, generators, inductors, and transformers.
“All physicists, all
scientists, all Nobel Laureates, your professors…can not explain the magnetic
field.”
Adrian Ferent
“Ferent radiation explains the magnetic field of a moving
charge”
Adrian Ferent
“All physicists, all scientists, all Nobel Laureates, your
professors…can not explain the magnetic field of a moving charge.”
Adrian Ferent
“Since magnets were discovered 2500 years ago, no one has
been able to explain the magnetic field around magnets”
Adrian Ferent
“Magnetic field is Ferent radiation”
Adrian Ferent
“I quantized the Magnetic field with photons”
Adrian Ferent
“Magnetic field is photons”
Adrian Ferent
“The electron emits photons which carries the magnetic
moment properties of the electron”
Adrian Ferent
“The electron has a magnetic field due to the photon inside
the electron”
Adrian Ferent
“Due to the photon inside the electron, the electron
interacts with the electromagnetic field”
Adrian Ferent
For you the spin is an intrinsic property, because all Nobel
Laureates, the greatest scientists, your professors…were not able to explain
the "spin ħ/2" of the electron.
I calculated the spin of the electron, the spin ħ/2:
“The Spin of the electron is the Orbital angular momentum of
the photon within the electron”
Adrian Ferent
“The electron has an electric field due to the photon inside
the electron”
Adrian Ferent
I calculated the charge created by the photon inside the
electron, e, is the unit of elementary charge.
A rotating electrically charged creates a magnetic
dipole.
For the electron as a charged particle with the angular
momentum L, the magnetic dipole moment μ:
The electron magnetic moment is created by a tiny current I
traveling around the area A
μ = IA = (qv/2πr)πr^2
μ = qvr/2 =
qL/2m
where: q = - e
The classical result is corrected by multiplying it with a
dimensionless correction factor g.
The electron magnetic moment:
The electron magnetic moment in terms of the Bohr magneton
μB:
Spin electron magnetic moment
In quantum mechanics is another kind of angular momentum L,
the spin angular momentum, represented by the spin operator S. The spin of
the electron is ħ/2.
This means: μS = - 9.2 × 10^(-24) J/T
The z component of the electron magnetic moment
Where mS is the spin quantum number.
Orbital magnetic dipole moment
Total magnetic dipole moment
μ is the total magnetic moment, from both orbital
angular momentum and spin of an
electron; J = L + S is its total angular
momentum.
“All physicists, all scientists, all Nobel Laureates, your
professors…can not explain the magnetic field.”
Adrian Ferent
Feynman did not understand Magnetism!
Feynman's point was that we don't know what the mechanism is
that creates the actual attract / repel force.
That is why:
“The electron emits electromagnetic waves”
Adrian Ferent
“The photon is the superposition of a negative photon and a
positive photon”
Adrian Ferent
I consider a particle with a circular helix trajectory.
“Ferent radiation:
when a particle, Dark Matter particle changes direction emits photons, Dark
photons and gravitons”
Adrian Ferent
A helix is a curve in 3-dimensional space.
A circular helix of radius ‘a’ and pitch 2πb is
described by the following parameterization:
“For high speed particles, Dark Matter particles, the
centripetal force:
F=gma
g
is the Ferent factor”
Adrian Ferent
A centripetal force is a force that makes a body
to follow a curved path.
“For the particle to follow its trajectory, the emitted
photon pushes the particle with a force higher than the centripetal force”
Adrian Ferent
“Electric field is
Ferent radiation”
Adrian Ferent
“Gravitation is Ferent radiation”
Adrian Ferent
“Magnetic field is Ferent radiation”
Adrian Ferent
“The magnetic field around the magnet is Ferent radiation”
Adrian Ferent
This means:
“Magnetic fields satisfy the superposition principle;
the magnetic field is Ferent radiation.”
Adrian Ferent
H(x) = H1(x) + H2(x)
“The magnetic fields
of the photons emitted by unpaired electrons oriented in the same direction is
the magnetic field of the magnet”
Adrian Ferent
The magnetic field of a point charge q moving uniformly on a
straight line with velocity υ:
The magnetic field is at a maximum at locations directly
perpendicular to the path,
The magnetic field is curling around moving charge’s path.
Ampère's circuital law
The thumb points in the direction of the conventional
current (from positive to negative), and the fingers point in the direction of
the magnetic lines of flux
The field is pointing into the page and come out of page
after 180 degrees.
Ferent Quantum Gravity (FQG) explains the magnetic field
around the electric current:
“The electrons in a magnet tend to be oriented the same way;
the magnetic fields of the photons emitted by electrons are oriented in the
same way”
Adrian Ferent
“The electron moves in an electric field or in a magnetic
field, this means the electron magnetic dipole stay in the same direction”
Adrian Ferent
“Moving electron
emits photons (Ferent radiation) with the magnetic field oriented in the same
direction”
Adrian Ferent
Ampère's circuital law
“The magnetic field of the emitted photons by a moving
electron is pointing into the page and come out of page after 180 degrees.”
Adrian Ferent
“The flux of the photons emitted by electron decreases with
r squared”
Adrian Ferent
This means:
“Ferent radiation explains the magnetic field of a moving
charge”
Adrian Ferent
“Magnetic fields satisfy the superposition principle;
the magnetic field is Ferent radiation.”
Adrian Ferent
H(x) = H1(x) + H2(x)
For free electrons in the wire, the external electric field
aligns the electrons magnetic dipoles all in the same direction.
This means:
The magnetic field around the wire is the superposition of
the magnetic field of electrons moving in the same direction.
“Inside the wire, moving electrons emits photons (Ferent
radiation) with the magnetic field oriented in the same direction”
Adrian Ferent
“Inside the wire, moving electrons emits photons (Ferent
radiation) with the magnetic field oriented in the same direction, which is the
magnetic field around the electric current”
Adrian Ferent
“Ferent radiation explains the magnetic field around an
electric current”
Adrian Ferent
“All scientists do not understand what they accelerate in
particle accelerators; they do not understand particles collision”
Adrian Ferent
For physicists magnetism is nothing more than electrostatics
combined with special relativity.
Einstein in his 1905 paper “On the Electrodynamics of Moving
Bodies”: “The force acting on a body in a magnetic field is nothing else but an
electric field.”
“All Nobel Laureates, the scientists, your professors…did
not understand the Electric field and the Magnetic field!”
Adrian Ferent
“All physicists, all scientists, all Nobel Laureates, your
professors…can not explain the magnetic field of a moving charge.”
Adrian Ferent
“In the last 200 years nobody was able to explain why does
an electric current produce a circular magnetic field?”
Adrian Ferent
“Ferent radiation explains the magnetic field around an
electric current, not Special relativity”
Adrian Ferent
618. I am the first who discovered that Ferent radiation
explains the magnetic field around an electric current
619. I am the first who discovered that in the last 200
years nobody was able to explain why does an electric current produces a
circular magnetic field?
620. I am the first who discovered that inside the wire,
moving electrons emits photons (Ferent radiation) with the magnetic field
oriented in the same direction, which is the magnetic field around the electric
current
621. I am the first who discovered that Ferent radiation
explains the magnetic field around an electric current, not Special relativity
https://www.researchgate.net/publication/361415415_Ferent_radiation_explains_the_magnetic_field_around_an_electric_current_not_Special_relativity