Now We Can Explore the Universe: Difference between revisions
Imported from text file |
Fill in keywords from the wiki's abstract records |
||
| (2 intermediate revisions by 2 users not shown) | |||
| Line 3: | Line 3: | ||
| url = [http://www.naturalphilosophy.org/pdf/abstracts/abstracts_6354.pdf Link to paper] | | url = [http://www.naturalphilosophy.org/pdf/abstracts/abstracts_6354.pdf Link to paper] | ||
| author = [[Harvey L Morgan]] | | author = [[Harvey L Morgan]] | ||
| keywords = universe, velocity of light | |||
| published = 1998 | | published = 1998 | ||
| num_pages = 6 | | num_pages = 6 | ||
| pages = 1-10 | | pages = 1-10 | ||
| Line 13: | Line 13: | ||
==Abstract== | ==Abstract== | ||
''IEEEAES Systems Magazine, January 1998'', pp. 1-10. The scientific myth: ?Nothing can go faster than light!? is not true. Experimental results of tests on non-inductive cable have established that electrical currents, which have a small mass, can go much faster than light. The velocity of propagation (V<sub>OP</sub>) measured by determining signal current wavelength, could not be distinguished from infinite VOP. The theoretical basis for the experimental work is an equation from electromagnetics, used for decades by communications engineers and also the theoretical basis for Lenz's laws of physical optics: ''V<sub>OP</sub> = C / Sqrt(U*e)'', where C is the vacuum velocity of light, U is magnetic permeability and e is dielectric constant. When U or e is zero, the indicated V<sub>OP</sub> is infinite.[[Category:Scientific Paper]] | ''IEEEAES Systems Magazine, January 1998'', pp. 1-10. The scientific myth: ?Nothing can go faster than light!? is not true. Experimental results of tests on non-inductive cable have established that electrical currents, which have a small mass, can go much faster than light. The velocity of propagation (V<sub>OP</sub>) measured by determining signal current wavelength, could not be distinguished from infinite VOP. The theoretical basis for the experimental work is an equation from electromagnetics, used for decades by communications engineers and also the theoretical basis for Lenz's laws of physical optics: ''V<sub>OP</sub> = C / Sqrt(U*e)'', where C is the vacuum velocity of light, U is magnetic permeability and e is dielectric constant. When U or e is zero, the indicated V<sub>OP</sub> is infinite. | ||
[[Category:Scientific Paper|explore universe]] | |||
Latest revision as of 07:27, 21 July 2026
| Scientific Paper | |
|---|---|
| Title | Now We Can Explore the Universe |
| Read in full | Link to paper |
| Author(s) | Harvey L Morgan |
| Keywords | universe, velocity of light |
| Published | 1998 |
| No. of pages | 6 |
| Pages | 1-10 |
Read the full paper here
Abstract
IEEEAES Systems Magazine, January 1998, pp. 1-10. The scientific myth: ?Nothing can go faster than light!? is not true. Experimental results of tests on non-inductive cable have established that electrical currents, which have a small mass, can go much faster than light. The velocity of propagation (VOP) measured by determining signal current wavelength, could not be distinguished from infinite VOP. The theoretical basis for the experimental work is an equation from electromagnetics, used for decades by communications engineers and also the theoretical basis for Lenz's laws of physical optics: VOP = C / Sqrt(U*e), where C is the vacuum velocity of light, U is magnetic permeability and e is dielectric constant. When U or e is zero, the indicated VOP is infinite.