This forum is preserved as a permanent archive. The community continues at eMedia Press.

Announcement

Collapse
No announcement yet.

Breaking free from the ferrilens.

Collapse
X
 
  • Filter
  • Time
  • Show
Clear All
new posts

  • #46
    Great circle.

    Look how it wants to make a big circle.

    Attached Files

    Comment


    • #47
      Taylor and Francis,copied from.

      Hi.The magnetic force exerted on a paramagnetic nanoparticle by a 3-D array of magnetite particles was investigated to extend previous work that only involved one magnetite particle. The separation between the magnetite particles in the array, the orientation of the magnetic field, and the distance between the nanoparticle and the surface of the magnetite array were studied. At magnetite particle separations of less than two magnetite diameters, a reduction in the net force on the nanoparticle compared to that associated with a single magnetite particle was realized due to the overlapping behavior of the magnetic fields of the magnetite array. The net force was still strong to overcome thermal (Brownian) motion and attract and retain the nanoparticle. The magnetite array also gives rise to retention zones at any orientation of the magnetite field; this was not true of a single magnetite particle, which exhibited repulsive zones depending on the orientation of the field. When the separation between the magnetite particles was greater than two magnetite diameters, the effect of the array was lost and the nanoparticle interacted essentially with only one of the magnetite particles. The close proximity of the magnetite particles and the associated smoothing effect translated into long-range interactions that leveled off with distance between the nanoparticle and the array. Although too weak to retain the nanoparticle, they were suspected to be strong enough to retain much larger particles approaching the size of the array. These effects could be explained only by the fact that when the magnetite particles were closer to each other they started behaving as a single large particle. Overall, these results suggest that both nanoparticles and particles of the size the array can be attracted to and retained by a magnetic matrix comprising clusters of small and similarly sized magnetite particles.

      Comment


      • #48
        Llp

        A powerful magnetic field, more than several billion gauss (several billion times the magnetic field of the Earth) changes this situation. In any magnetic field, an electron moves in a helical orbit around the direction of the magnetic field line. The size of the orbit, the gyroradius, gets smaller for lower electron velocities and for HIGHER magnetic fields. But quantum mechanics dictates that associated with each electron is a wave, which gets longer as the electron velocity goes down. An electron can only be located with one wavelength, not within a smaller volume.
        From Lawrenceville Plasma.

        Comment


        • #49

          Comment


          • #50
            Attached Files

            Comment


            • #51

              Comment


              • #52
                http://www.energeticforum.com/attach...1&d=1536398868
                Attached Files

                Comment


                • #53

                  Comment


                  • #54
                    Clear.

                    I've puzzled over this thing for years now and have got nowhere.
                    If this quote from Ferrocell himself is true, there isn't much more
                    to it.

                    '"The nano-particles have assembled into microscopic
                    dual chains, oriented perpendicular to the applied magnetic field".

                    This fact would equate perfectly with my Fraudulent Compass!!

                    John.

                    Comment

                    Working...
                    X