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International Journal of Fundamental Physical Sciences (IJFPS)

 

 

IJFPS, Vol 7, No 1 , Mar , 2017

 

 

 

doi:10.14331/ijfps

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Predicted Dynamic And Structural Criterion Of Evaluation Of Gravitational Waves

DOI:10.14331/ijfps.2017.3300100

 

M. Zhussupov

 

ABSTRACT
The cosmic (physical) vacuum according to modern data possesses the properties of a material medium. In combination with the celestial bodies, this medium is capable of forming dynamic structures. Presumably, these structures have a wave nature, and in their development, the gravitational waves, emitted by the stars and their planetary systems can take part. It is believed that physical vacuum is almost weightless matter. However this study postulates its high density, as a condition for adaptation of the fundamental physical laws for different mediums and substances. The product of this density and gravitational constant gives vent to the frequency, which is entitled as the probable frequency of the gravitational wave background of space and equals to .06 Hz ‎‎(rounded). The supposed spectrum of gravity waves of the solar system could become a model for the spectral analysis of extra-solar systems and the evaluation of habitable planets.

 

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Pick up pattern from logic fuzzy in mathematics for zonation of ‎landslide hazard

DOI:10.14331/ijfps.2017.3300101

 

Rahman Sharifi

 

ABSTRACT

First landslide hazard zonation provided based on Fuzzy logic by landslide area laid on the Slope map, ‎Geology( lithology) map, Aspect map. Then, these maps classes of priority and coming next determine based ‎on existing landslides area in the geology, slope and aspect of maps. In the geology map of tuff, shale, and ‎conglomerate rocks, about with hectare 1440.43(about percent 23.94 ) and shelly limestone ‎‎ about with hectare ‎‎0.88 (about percent 0.01 ) and in the slope map, X>45 classes about with hectare 2794 ( about percent 46.44 ) ‎and 15-25 classes about with hectare 737 ( about percent 12.25) and in the aspect map, East classes with about ‎hectare 1882 ( about percent 31.28 ) and west classes with hectare 579 ( about percent 9.62 ) sequential have ‎most and least landslide area. Then, in final drawer to dimension centimeters 2 in region watershed ‎management of map and we counted from 0 until 863 based on geology, slope and aspect that exist only unit ‎‎624 counted from 0 until 623. Then (y) units settled sequential, numbers 0 to 105 in very low sensitivity class ‎‎(one class), numbers 106 to 207 in low sensitivity class (two class), numbers 208 to 345 in average sensitivity ‎class (three class), numbers 346 to 498 in high sensitivity class (four class) and numbers 499 to 623. then ‎landslide hazard zonation provided base on Fuzzy logic.‎

 

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