A New Perspective of the Force on a Magnetizable Rod inside a Solenoid
- 1 Departamento de Física, Facultad de Ciencias, Universidad Nacional Autónoma de México, México D. F., México
- 2 Departamento de Física, Facultad de Ciencias, Universidad Nacional Autónoma de México, México D. F., México
- 3 área de Física Teórica y Materia Condensada, División de Ciencias Básicas e Ingeniería, Universidad Autónoma Metropolitana Unidad Azcapotzalco, México D. F., México
Abstract
We analyze the familiar effect of the pulling of a magnetizable rod by a magnetic field inside a solenoid. We find that the analogy with the pulling of a dielectric slab by a charged capacitor is not as direct as usually thought. Indeed, there are two possibilities to pursue the analogy, according to the correspondence used, either E → B and D → H , or E → H and D → B . One of these results in an incorrect sign in the force, while the other gives the correct result. We avoid this ambiguity in the usual energy method applying a momentum balance equation derived from Maxwell’s equations. This method permits the calculation of the force with a volume integration of a force density, or with a surface integration of a stress tensor. An interpretation of our results establishes that the force acts at the interface and has its origin in Maxwell′s magnetic stresses at the medium-vacuum interface. This approach provides new insights and a new perspective of the origin of this force.
- Boyer, T.H. (2001) Electric and Magnetic Forces and Energies for a Parallel-Plate Capacitor and a Flattened, Slip-Joint Solenoid. American Journal of Physics, 69, 1277-1279. https://doi.org/10.1119/1.1407255
- Wangsness, R.K. (1986) Electromagnetic Theory. 2nd Edition, John Wiley and Sons, New York.
- Reitz, J.R., Milford, F.J. and Christy, R.W. (1993) Foundations of Electromagnetic Theory. 4th Edition, Addison-Wesley, Reading.
- Nayfeh, M.H. and Brussel, M.K. (2015) Electricity and Magnetism. Dover, Mineola.
- Margulies, S. (1984) Force on a Dielectric Slab Inserted into a Parallel-Plate Capacitor. American Journal of Physics, 52, 515-518. https://doi.org/10.1119/1.13861
- Utreras-Diaz, C. (1988) Dielectric Slab in a Parallel-Plate Condenser. American Journal of Physics, 56, 700-701. https://doi.org/10.1119/1.15504
- Naini, A. and Green, M. (1997) Fringing Fields in a Parallel-Plate Capacitor. American Journal of Physics, 45, 877-879. https://doi.org/10.1119/1.11075
- Dietz, E.R. (2004) Force on a Dielectric Slab: Fringing Field Approach. American Journal of Physics, 72, 1499-1500. https://doi.org/10.1119/1.1764563
- Griffiths, D.J. (1999) Introduction to Electrodynamics. 3nd Edition, Prentice-Hall, Englewood.
- Campos-Flores, I., Jiménez-Ramírez, J.-L. and Roa-Neri, J.-A.-E. (2018) How Does Arise the Force on a Dielectric Slab in a Parallel Plate Capacitor? Journal of Electromagnetic Analysis and Applications, 10, 131-142. https://doi.org/10.4236/jemaa.2018.107010
- Campos, I., Jiménez, J.L. and López-Mariño, M.A. (2012) Electromagnetic Momentum Balance Equation and the Force Density in Material Media. Revista Brasileira de Ensino de Fisica, 34, 2303.
- Landau, L.D., Lifshitz, E.M. and Pitaevskii, L.P. (1984) Electrodynamics of Continuous Media, Vol. 8 Course If Theoretical Physics. 2nd Edition, Pergamon, Oxford.
- Purcell, E.M. and Morin, D.J. (2013) Electricity and Magnetism. 3rd Edition, Cambridge, New York.
- Becker, R. (1982) Electromagnetic Field and Interactions. Dover, Mineola.
- Jackson, J.D. (1998) Classical Electrodynamics 3rd Edition, Wiley and Sons, New York.
- Stratton, J.A. (1941) Electromagnetic Theory. McGraw-Hill, New York.