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  • SPACE SCIENCES  (47)
  • 1
    Publication Date: 2006-10-26
    Description: Photographic analysis of radial structures surrounding lunar mare basins
    Keywords: SPACE SCIENCES
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  • 2
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    Publication Date: 2011-08-16
    Description: Origin and evolution of multiring basins on lunar surface, giving crater diameter distribution
    Keywords: SPACE SCIENCES
    Type: ; ADEMIE DES SCIENCES
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  • 3
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    Publication Date: 2011-08-16
    Description: Apollo lunar rock sample solidification and impact rates, deriving cratering time behavior
    Keywords: SPACE SCIENCES
    Type: ; TROPHYSICAL JOURNAL
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  • 4
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    Publication Date: 2011-08-16
    Description: A semiquantitative analysis of clearing in the 1971 great dust storm on Mars is presented as a function of time and altitude, using Mariner 9 orange- and visual-light photos. Steady settling of dust approximately accounts for the decline of the storm after Dec. 22, 1971. Continuous settling cannot be invoked prior to that date; injection of dust into the atmosphere, i.e., a storm resurgence, occurred in mid-December 1971. Theoretical models of optical depth vs time are developed for various distributions of particles in the atmosphere. By interpreting settling in terms of Stokes' law, estimates of the maximum radii of dust particles throughout the atmosphere have been obtained. Models which best account for the dust-storm decline indicate particles less than 5 microns in diameter high in the atmosphere, with a concentration of larger particles near the ground in the lowest parts of Mars.
    Keywords: SPACE SCIENCES
    Type: Icarus; 21; Jan. 197
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  • 5
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    Publication Date: 2011-08-16
    Description: This paper considers the extent to which Martian craters can be explained by considering asteroidal impact. Sections I, II, and III of this paper derive the diameter distribution of hypothetical asteroidal craters on Mars from recent Palomar-Leiden asteroid statistics and show that the observed Martian craters correspond to a bombardment by roughly 100 times the present number of Mars-crossing asteroids. Section IV discusses the early bombardment history of Mars, based on the capture theory of Opik and probable orbital parameters of early planetesimals. These results show that the visible craters and surface of Mars should not be identified with the initial, accreted surface. A backward extrapolation of the impact rates based on surviving Mars-crossing asteroids can account for the majority of Mars craters over an interval of several aeons, indicating that we see back in time no further than part-way into a period of intense bombardment. An early period of erosion and deposition is thus suggested. Section V presents a comparison with results and terminology of other authors.
    Keywords: SPACE SCIENCES
    Type: Icarus; 15; Dec. 197
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  • 6
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    Publication Date: 2011-08-16
    Description: Discussion of a theoretical basis for interpretation of Martian crater obliteration. Strong evidence is found that Martian craters are being degraded and obliterated at a rate much faster than on the moon, but much slower than on earth. The theory obviates the need to interpret the diameter distribution in terms of two classes of impacting bodies, as has been done elsewhere. It is suggested that obliteration is caused by filling of the craters, probably by deposition of dust.
    Keywords: SPACE SCIENCES
    Type: Icarus; 15; Dec. 197
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  • 7
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    Publication Date: 2011-08-11
    Description: IR nebula in Orion as protocluster with massive stars imbedded in opaque dust cloud, discussing collapse and lifetime
    Keywords: SPACE SCIENCES
    Type: ASTROPHYSICAL JOURNAL
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  • 8
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    Publication Date: 2011-08-16
    Description: Icarus asteroidal nature and fragmentation origin suggested from inclusion in angular momentum density-mass diagram
    Keywords: SPACE SCIENCES
    Type: ; YAL SOCIETY (
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  • 9
    Publication Date: 2011-08-16
    Description: Multicolor photography of Venus by 36-inch telescope
    Keywords: SPACE SCIENCES
    Type: COMMUN. OF THE LUNAR AND PLANETARY LAB., VOL. 6, PT. 4, NO. 100-104 1969; P 262-264
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  • 10
    Publication Date: 2011-08-16
    Description: Solidification ages for Mare Tranquillitatis solidification ages for Mare Tranquillitatis
    Keywords: SPACE SCIENCES
    Type: ; YAL SOCIETY (
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