Solar Equatorial Deceleration and Storm Intensity Increase; Associated Troughs; Friis-Christensen; Lassen; Hoyt and Schatten;
[PLEASE USE CONTROL (+) FOR ZOOMS AND CONTROL (0) FOR NORMAL VIEW]. To see other BSMRA sites the BSM Research Associates Integrated Websites Selection. Also please use included PDFs and WORD files for higher resolution if desired.Included are the solar equatorial deceleration calculations; the solar storm (sunspot) frequency increases and cycle duration decreases; the length-of-time decrease between sunspot cycles; and solar radiance spectral distribution plots indicating increased solar intensities in the UV, Gamma and X-ray portions values of the Sun's emission. Water vapor concentration density increases are the dominant absorptive agent in the atmosphere, and the H2Ov increase is directly coupled to elliptical reverse (feedback) physics. Also included are the global heating increases for the Solar System, Earth and Mars; the Earth's global heating as a function of solar radiance; the Earth's Geo-Core angular rotation decrease which is commensurate with the Sun's equatorial deceleration; the Joukowski curved orbital spin data for the Earth; the Earth's internal heating sources; the Earth's external heating sources; carbon dioxide and methane being functions of hydrothermal venting processes (not factories). Calcium carbonate dissociation into carbon, as well as the release of methane from underlying sedimentary deposited hydrates as a function of sea floor temperature increases are also provided. (BE SURE TO USE THE PDF AND WORD FILES PROVIDED WITH THE IMAGERY FOR HIGH RESOLUTION CAPABILITY.)
Friday, 30 September 2011
Wednesday, 23 March 2011
Evidence for Correlation Between Nuclear Decay Rates and Earth-Sun Distance
Back to BSM Research Associates Homepage
Fishback and Jenkins: Nuclear Decay Rates a Function of Earth-Sun Distance
Jere H. Jenkins,1 Ephraim Fischbach,1, ∗ John B. Buncher,1 John
T. Gruenwald,1 Dennis E. Krause,1, 2 and Joshua J. Mattes1
1Physics Department, Purdue University, 525 Northwestern Avenue, West Lafayette, Indiana, 47907, USA
2Physics Department, Wabash College, Crawfordsville, Indiana, 47933, USA
(Dated: August 25, 2008)
Unexplained periodic fluctuations in the decay rates of 32Si and 226Ra have been reported
by groups at Brookhaven National Laboratory (32Si), and at the Physikalisch-Technische-
Bundesandstalt in Germany (226Ra). We show from an analysis of the raw data in these experiments
that the observed fluctuations are strongly correlated in time, not only with each other, but also with
the distance between the Earth and the Sun. Some implications of these results are also discussed,
including the suggestion that discrepancies in published half-life determinations for these and other
nuclides may be attributable in part to differences in solar activity
Astro-Physics Journal:
Evidence for Correlations Between Nuclear Decay Rates and Earth Sun Distance.pdf
Astroparticle Physics JournalDecay Rates a Function of Earth and Sun Distance.pdf
Sunday, 26 December 2010
The Age of the Universe: A Study of the Poynting Robertson Effect and Extinction of Interplanetary Dust (Stephen J. Duursma; Harold S. Slusher)
BSM RESEARCH ASSOCIATES HOMEPAGE

Interplanetary Dust PRE Introduction.pdf
Interplanetary Dust PRE_0002.pdf
Interplanetary Dust PRE_0003.pdf
Interplanetary Dust PRE_0004.pdf
Interplanetary Dust PRE_0005.pdf
Interplanetary Dust PRE_0006.pdf
Interplanetary Dust PRE_0007.pdf
Interplanetary Dust PRE_0008.pdf
Interplanetary Dust PRE_0009.pdf
Interplanetary Dust PRE_0010.pdf
Interplanetary Dust PRE_0011.pdf
Interplanetary Dust PRE_0012.pdf
Interplanetary Dust PRE_0013.pdf
Interplanetary Dust PRE_0014.pdf
Interplanetary Dust PRE_0015.pdf
Interplanetary Dust PRE_0016.pdf
Interplanetary Dust PRE_0017.pdf
Chapter IV: Extinction of Interplanetary Dust and Conclusions
Interplanetary Dust Poynting Robertson Chapter 4 Extinction.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0001.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0002.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0003.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0004.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0005.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0006.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0007.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0008.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0013.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0014.pdf
Interplanetary Dust Poynting Robertson Chapter 4Extinction_0015.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0017.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0018.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0019.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0020.pdf
Interplanetary Dust Poynting Robertson Chapter 4 Extinction_0016.pdf
Friday, 13 August 2010
Mathematical Derivations for Geomagnetic Field Decay and Geo-Core Diffusion Physics
Related Technical Site: (GMF and Geocore Mathematical Formulations)
These electromagnetic mathematical formulations and derivations may also be viewed, from a slightly different perspective, on the Opera BSMRA technical site. Derivations start with James Clerk-Maxwell Field Equations which are subsequently processed for geo-core applications. Of particular interest is Equation 77 which is commonly attributed to Oliver Heaviside (derived in 1881) and Hendrik Lorentz (derived 1892). As noted the 1861 Clerk-Maxwell formulation of Equation 77 and applied to charged particle force deflection = qvxB, and where B is the geomagnetic field's induction intensity and v is the charged particle velocity; was in fact derived 31 years earlier by Clerk-Maxwell.
Mathematical Geomagnetic Field and Geo-Core Diffusion.pdf
Barnes Origin and Destiny Earth's Magnetic Field Section 1.pdf
Cowling Anti-Dynamo Theorem.mht
Dr Thomas Barnes Origin and Destiny of the Earth Magnetic Field Mathematical Section 2.pdf
Relativity (and Evolution) are finally being observed for what they are: At best, non-validated models; or worse, pseudo-science
Friday, 04 December 2009
Clifford Anthony Paiva_BSMRA: Geomagnetic Field Intensity Decrease as a Function of Decreasing Earth Angular (Rotational) Velocity
That this planet is tending toward equilibrium (dying) may seem strange to some, however check the information on this page [I]carefully[/I]; as it is based on planetary and electromagnetic physical processes. For example, danger to Earth's biosphere as it is increasingly exposed to high energy charged particle flux (cosmic rays, x-rays, etc.); global [I]increased [/I] heating through planetary angular velocity [I]decrease;[/I] geo-core thermal generation as a function of gravitational tidal friction, and electrical induced currents' joule heating; all of these increase as a functions of time. Further, these processes apply to all Solar System planets, satellites and asteroids, not just Earth. New values for the Geo-Core conductivity and current decreases, and resistance increases are calculated from latest International Geomagnetic Reference Field (IGRF) space and Earth-based sensor's data. As the conductivity and current density within the Earth's Geo-Core decreases, so does the induced magnetic field intensity (geomagnetic field) [I]decrease [/I].[/B][/COLOR]BSM Research bases its geo-electromagnetic physics on Curl [B]E[/B] and Curl [B]H[/B] for moving (rotating) spherical conductors. or [B]w[/B]x[B][B]r[/B][/B]x[B]H[/B][I]mu[/I][SUB]geocore[/SUB]; here w=omega and wxr = va (angular velocity)for rotating Earth. The core's electrical current, generated by the Earth's core rotating through the Sun's interplanetary magnetic field, is dying since the planet's angular velocity is decreasing. Also dying is the induced magnetic field (primary signal field) of the Earth. If the Solar rotational deceleration continues, the field energy will have been converted into heat within approximately 544 years.
Clifford A. Paiva_BSMRA:_Javaraiah Solar Equatorial Deceleration.pdf
Tuesday, 17 November 2009
Clifford Anthony Paiva_BSMRA: Commencement of Active Solar (Sunspot) Cycle 24: Friis-Christensen and K. Lassen Danish Meteorological Institute Confirmation
BSM RESEARCH ASSOCIATES HOMEPAGE
Solar Storm (sunspot) Cycle 23 has been quiet; not so Cycle 24. Things are heating up. This changes in accord with Friis-Christensen and K. Lassen cumulative field data observations as the Cycle 24 begins. Some other folks maintain a local reversal of the associated sunspot magnetic fields are necessary before the commencement of a new cycle. Others think Cycle 24 must be weak. Notwithstanding, the Friis-Chrisensen plots predict a commencement of Solar Storm Cycle 24.
Friis Christensen Primary Paper.pdf www.geocraft.com_WVFossils_greenhouse_data.pdf
Solanki and Fligge Max Planck.pdf
Clifford Anthony Paiva_BSMRA_Geomagnetic Field Mathematics.doc
SolarStorm Cycle 24 Started.doc
Monday, 07 September 2009
Clifford Anthony Paiva_BSMRA: Solar Storm Frequency and Intensity Correlations to Global Mean Temperature (GMT): LOW; Absorptive Water Vapor Concentration Density Increasing Thermal Feedback to the Oceans
Solar storm frequency and intensity is correlated to global mean temperatures (GMT) revealing high correlation. GMT is then correlated to the Earth's geomagnetic field (GMF) for the ratio GMF/GMT and plotted. A one-to-one comparison is calculated to be R^2 = .68 confidence. This may be interpreted to the effect that geomagnetic field decay's induced electrical currents within the geo-core, generally increasing resistive div ExH joule heat intensity, as a direct result of such GMF decay, is increasing temperatures within the core, mantle, lithosphere and atmosphere, and of course reduction in the Earth's angular velocity. The cumulative (solar storm frequency ) and intensity to GMT indicates a direct solar forcing function; in effect driving the Earth to increased temperatures as a function of time. [Associated Areas: http://en.wikivisual.com/index.php/Greenhouse_gases; http://smtp.antelecom.net/blogs/bsmaGMF/; Increased solar brightness and warming of the Earth since 1979.doc; http://smtp.antelecom.net/blogs/bsmaArk/ (CIA and US NSWC Dahlgren Laboratory Involvment)
Abstract by Friis-Christensen and K. Lassen
Article by Friis-Christensen and K. Lassen
BSMRA The Climatic Effects of Water Vapour_complete.doc
BSMRAThe Greenhouse Effects of Water Vapor Versus Carbon Dioxide.doc
BSMRA_Clifford A. Paiva RESUME 2009.doc
BSMRA_Data Solar Rotation Decrease From 1956 up to present.doc
BSMRA_Total Solar Radiance Increase
Clifford Anthony Paiva_BSMRA_Geomagnetic Field Mathematics.doc












Cliff: As the temperature of the Earth's geocore increases as a function of increasing gravitational tidal and electrical joule heat (from the collapsing geomagnetic field), the lithospheric crust increases, heating the oceans. This results in increasing evaporation of the oceans generating increased water vapor concentration. (09/07/09)