Planetary Evolution
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Recent papers in Planetary Evolution
We determined radiogenic and cosmogenic noble gases in a mudstone on the floor of Gale Crater. A K-Ar age of 4.21 ± 0.35 billion years represents a mixture of detrital and authigenic components and confirms the expected antiquity of rocks... more
Saturn's Secrets Probed The Cassini spacecraft was launched on 15 October 1997. It took it almost 7 years to reach Saturn, the second-largest planet in the solar system. After almost 6 years of observations of the series of... more
tem-it has no known impact craters-but in another sense one of the most thoroughly evolved. At the other We exploit recent theoretical advances toward the origin and orbital evolution of comets and asteroids to obtain revised extreme sits... more
Varying Constant? Searches for time-varying fundamental constants provide a means to look beyond the standard model of particle physics. Bagdonaite et al. (p. 46 , published online 13 December) set an improved limit on the possible... more
We determined radiogenic and cosmogenic noble gases in a mudstone on the floor of Gale Crater. A K-Ar age of 4.21 ± 0.35 billion years represents a mixture of detrital and authigenic components and confirms the expected antiquity of rocks... more
A strobiology is the science that seeks to understand the story of life in our universe. Astrobiology includes investigation of the conditions that are necessary for life to emerge and flourish, the origin of life, the ways that life has... more
We determined radiogenic and cosmogenic noble gases in a mudstone on the floor of Gale Crater. A K-Ar age of 4.21 ± 0.35 billion years represents a mixture of detrital and authigenic components and confirms the expected antiquity of rocks... more
A comprehensive geochemical study of the Chelyabinsk meteorite reveals further details regarding its history of impact-related fragmentation and melting, and later aqueous alteration, during its transit toward Earth. We support an 930 Ma... more
A strobiology is the science that seeks to understand the story of life in our universe. Astrobiology includes investigation of the conditions that are necessary for life to emerge and flourish, the origin of life, the ways that life has... more
Probably one of the most important roles played by minerals in the origin of life on Earth was to pre-concentrate biomolecules from the prebiotic seas. There are other ways to pre concentrate biomolecules such as wetting/drying cycles and... more
While metal rapidly segregates out of the melt and sinks into the core, the vaporized material orbits the Earth and eventually rains back onto its surface. The content of the mantle in siderophile elements and their chondritic relative... more
New high-P-T experimental data (50 GPa, ~4000 K) on W metal-silicate partitioning improves constraints on core formation conditions and timing (Hf-W).
This brief essay takes poetic license to situate the emergence of the Ecovillage Concept on Earth during this Transformational Epoch as a typical occurrence in a planet's evolution within a larger cosmic context.
The partition coefficients of (Cr, Mn, Fe, Co, Ni) and W between liquid metal, sulfides and silicates is investigated between 1.5 GPa-25 GPa up to 2200°C, at different oxygen fugacity and with different light elements present in the... more
The influence of melt composition and temperature on the partitioning of siderophile elements between magnesiowustite (MW) and silicate melt (Sil) has been studied systematically at 9 GPa. Additional experiments at pressures above 20 GPa... more
We consider planetary systems evolving under the effect of a Stokes-type dissipative force mimicking the outcome of a type II migration process. As inward migration proceeds and the planets follow the circular family (they start on... more
The Earth and the Moon exhibit a unique inventory of refractory and volatile elements that permits valuable insight into early accretion, the giant impact event and late volatile addition. There is a remarkable similarity between the... more
- by Toni Schulz
We have investigated the partitioning of U between silicate melt and Fe liquid at pressures of 3.0 to14.5 GPa and temperatures of 1660 to 2500 oC. The solubility of U in liquid Fe is in the range of 0.6 to 800 ppm and increases with... more
SinceDescartesthemind.brainrelat ionhasbeenconceivedwithintwomain approaches: id""t,ty;";;;;;J"" u"o non-identity perspective' In ourdays' higher and lower analysislo,gu'ii'ution levels of... more
Earth's core may contain C, and it has been suggested that C in the core could stabilize the formation of a solid inner core composed of Fe 3 C. We experimentally examined the Fe-C system at a pressure of 5 GPa and determined the Fe-C... more
A model of core formation is presented that involves the Earth accreting heterogeneously through a series of impacts with smaller differentiated bodies. Each collision results in the impactor's metallic core reacting with a magma ocean... more
Geochemical models of core formation are commonly based on core and mantle abundances of siderophile elements. Because of the affinity of these elements for metallic phases, they are thought to be highly concentrated in Earth's core.... more
We have investigated the partitioning of U between silicate melt and Fe liquid at pressures of 3.0 to14.5 GPa and temperatures of 1660 to 2500 o C. The solubility of U in liquid Fe is in the range of 0.6 to 800 ppm and increases with... more
We have investigated the partitioning of U between silicate melt and Fe liquid at pressures of 3.0 to14.5 GPa and temperatures of 1660 to 2500 o C. The solubility of U in liquid Fe is in the range of 0.6 to 800 ppm and increases with... more
Keywords: multistage core formation metal-silicate equilibration light elements magma oceans high pressure A model of core formation is presented that involves the Earth accreting heterogeneously through a series of impacts with smaller... more
The reality in discovering a falsified planetary history to enslave the masses
A discussion of the relationship between symbols, dynamics, and thermodynamics and a critique of common practice of conjuring "magic makers" in cognitive and biological theories. An introduction to autocatakinetics, the law of maximum... more
– Time-dependent nonextensivity in a stellar astrophysical scenario combines nonex-tensive entropic indices qK derived from the modified Kawaler's parametrization, and q, obtained from rotational velocity distribution. These q's are... more
The metal-silicate partition coefficients of Ni and Co in a model C 1 chondrite were determined at pressures ranging from 1.2 to 12.0 GPa and temperatures between 2123 and 2750 K. At 5.0 GPa and 2500 K, the effect of variable oxygen... more
a b s t r a c t Editor: R.W. Carlson Keywords: siderophile elements Fe-FeS high pressure experiments solid metal-liquid metal partitioning iron sulfur
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The 238 U/ 204 Pb ratio of the Earth's mantle is conventionally seen as reflecting the loss of lead to the Earth's core, implying that this element is siderophile. A contrasting view holds that lead may be depleted because it did not... more
We investigate the effects of tidal interactions on the planetary orbits and stellar spin rates of the WASP-18 and WASP-19 planetary systems using a forward integration scheme. By fitting the resulting evolutionary tracks to the observed... more
Something has meaning when it has the property of "information about" some part of the world with respect to an end or ends of some intentional system or agent. Intentional systems are end-directed systems, but not all end-directed... more
An argument is developed to show that the origin and evolution of the perceptual guidance of movements and the movement enhancement of opportunities to perceive, that is, perception-action cycles, have a direct and deep connection with... more
The paper reviews how the evolution and development of living things and their behavior, including Darwin's biological extremum "the fecundity principle" follow from universal law.
At a planetary scale the Earth evolves as a single planetary system for which the origin and maintenance of planetary O2 at relatively constant level is prima facie evidence. But for orthodox evolutionary theory, namely evolution... more
The paper shows the nomological basis for the emergence of intentionality and meaning, the "epistemic dimension of the world" from first (universal physical) principles.
The Fourth Law of Thermodynamics or Law of Maximum Entropy Production significantly expands thermodynamics in its universal scope applying near and far from equilibrium to all ranges and scales.
Natural selection is a special case of physical selection that follows from the law of entropy production maximization (the 4 Law) where the components are replicating (an autocatakinetic replicating system).
Selection is entailed by self-organization and a direct consequence of entropy production maximization (LMEP) and natural selection is a special case. The origin and evolution of life is seen to be a direct consequence of universal... more