Abstract:
An electromagnetic treatment device (10) includes a magnetic flux generator (12) and a power source (14). The magnetic flux generator (12) includes a plurality of electromagnetic bodies having at least four magnetic poles substantially in a single plane, the magnetic poles being oriented to define the four vertices of a quadrilateral shape. Preferably, the four magnetic poles comprise two positive and two negative poles, the two positive poles defining opposite diagonal vertices and the two negative poles defining opposite diagonal vertices of the quadrilateral shape. Each of the magnetic poles are magnetically attracted to the two oppositely charged poles and magnetically repelled by the like charged poles. Containment means hold the magnetic poles of the magnetic bodies in the above described configuration. Attached to the containment means are three important and function-altering components of the technology. Flux return ring (16a) is attached to the bottom of the described four electromagnetic heads; this ring enhances the flux field and controls unwanted stray induction currents as well as stray flux from the opposite pole. A flux focusing ring (16) is positioned around the flux heads adjacent to the insulated wire coils. Attachment means hold the focusing ring in proper location for maximum benefit. Attached to the flux focusing ring are focusing coils (18a, 20a, 22a, and 24a). These focusing coils are attached to the flux focusing ring in proximity to a head of like charge and at 45~ to 90~ angle to the long axis of the primary flux pole. In this position, the flux focusing coils along with the focusing ring, the flux return ring and the new iron core of this invention make the gradient steeper, increase the field strength and decrease heating and stray high currents. The flux return ring and the flux focusing ring are grounded to reduce stray induction currents and the variables that they add to the therapeutic magnetic field.
Abstract:
A therapeutic permanent magnet device adapted for pain relieving placement on the bodies of living animals is provided. The device includes a plurality of magnet bodies having two positive and two negative magnetic poles and a containment body for holding the magnet bodies in a fixed orientation. A method for therapeutically placing the permanent magnet device on the human body to relieve pain is also provided.
Abstract:
A process which includes the steps of first collecting the green house gases, such as CO2, SO2, Nox, CO, emitted from a furnace where fossil fuels are burned; flowing the gases to a sequestration unit where the gases are cleaned and scrubbed; moving the scrubbed gases to a compressor for reducing the volume of the gases; introducing the gases into a plasma arc for ionizing the gases to charged components; providing a source of free electrons; capturing the free electrons in a dense free electron zone; introducing the charged components from the plasma arc into the dense free electron zone for rendering the ions into elemental fragments of carbon, oxygen gas, nitrogen, hydrocarbons, and other elemental components; collecting the elemental fragments of carbon and other elements; routing the oxygen gas to the furnace to provide oxygen to burn additional fossil fuels.
Abstract:
A method and apparatus for altering the charge distribution upon living membranes with functional stabilization of the membrane physical electrical integrity further comprising a method for using submicroscopic, quadripolar, circular, center charged, energy balanced magnetic device in a four (4) magnet array of alternating polarity in which the magnetic poles are separated only by a distance which will allow a magnetic sphere of influence on all adjacent poles to suppress the firing of action potentials of mammalian sensory neurons. The method and apparatus further provides a static magnetic device for production of a magnetic field for treatment of various disorders. Further there is provided a static magnetic device for production of a magnetic field for treatment of disorders wherein the device provides a static magnetic pole of like polarity on the outer surface of the flux focusing ring adjacent to each of the 4 poles of the invention (focusing magnet) such that the end or top of the focusing magnet is oriented to the geometric side of the pole such that the axis of the two magnets form a 45 to 90 degree angle.
Abstract:
the flux field and controls unwanted stray induction currents as well as stray flux from the opposite pole. A flux focusing ring (16) is positioned around the flux heads adjacent to the insulated wire coils. Attachment means hold the focusing ring in proper location for maximum benefit. Attached to the flux focusing ring are focusing coils (18a, 20a, 22a, and 24a). These focusing coils are attached to the flux focusing ring in proximity to a head of like charge and at 45° to 90° angle to the long axis of the primary flux pole. In this position, the flux focusing coils along with the focusing ring, the flux return ring and the new iron core of this invention make the gradient steeper, increase the field strength and decrease heating and stray high currents. The flux return ring and the flux focusing ring are grounded to reduce stray iThis invention is a magnetic treatment device for therapeutic application to the human body, and more particularly an electromagnetic quadri-polar treatment device (12) with a focusing ring (16) to increase the intensity, focus and gradient of the field for placement against or in proximity to the human body.
Abstract:
A method and apparatus for altering the charge distribution upon living membranes with functional stabilization of the membrane physical electrical integrity further comprising a method for using submicroscopic, quadripolar, circular, center charged, energy balanced magnetic device in a four (4) magnet array of alternating polarity in which the magnetic poles are separated only by a distance which will allow a magnetic sphere of influence on all adjacent poles to suppress the firing of action potentials of mammalian sensory neurons. The method and apparatus further provides a static magnetic device for production of a magnetic field for treatment of various disorders. Further there is provided a static magnetic device for production of a magnetic field for treatment of disorders wherein the device provides a static magnetic pole of like polarity on the outer surface of the flux focusing ring adjacent to each of the 4 poles of the invention (focusing magnet) such that the end or top of the focusing magnet is oriented to the geometric side of the pole such that the axis of the two magnets form a 45 to 90 degree angle.
Abstract:
A method and apparatus for altering the charge distribution upon living membranes with functional stabilization of the membrane physical electrical integrity further comprising a method for using submicroscopic, quadripolar, circular, center charged, energy balanced magnetic device in a four (4) magnet array of alternating polarity in which the magnetic poles are separated only by a distance which will allow a magnetic sphere of influence on all adjacent poles to suppress the firing of action potentials of mammalian sensory neurons. The method and apparatus further provides a static magnetic device for production of a magnetic field for treatment of various disorders. Further there is provided a static magnetic device for production of a magnetic field for treatment of disorders wherein the device provides a static magnetic pole of like polarity on the outer surface of the flux focusing ring adjacent to each of the 4 poles of the invention (focusing magnet) such that the end or top of the focusing magnet is oriented to the geometric side of the pole such that the axis of the two magnets form a 45 to 90 degree angle.
Abstract:
A process which includes the steps of first collecting the green house gases, such as CO 2 , SO 2 , Nox, CO, emitted from a furnace where fossil fuels are burned; flowing the gases to a sequestration unit where the gases are cleaned and scrubbed; moving the scrubbed gases to a compressor for reducing the volume of the gases; introducing the gases into a plasma arc for ionizing the gases to charged components; providing a source of free electrons; capturing the free electrons in a dense free electron zone; introducing the charged components from the plasma arc into the dense free electron zone for rendering the ions into elemental fragments of carbon, oxygen gas, nitrogen, hydrocarbons, and other elemental components; collecting the elemental fragments of carbon and other elements; routing the oxygen gas to the furnace to provide oxygen to burn additional fossil fuels.