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| 1 | Subsidence control method by inversely-inclined slicing and upward mining for ultra-thick steep seams显示文摘Ultra-thick steep coal seam mining will inevitably lead to the increase of greater and violent ground subsidence and deformation.A subsidence control method by inversely-inclined slicing and upward mining is proposed in this paper.By this method,the sequence of collapse of overlying strata and the direction of propagation of strata movement are changed,the extent of roof-side deformation thereby is lessened,and boundary angle of roof-side subsidence is reduced by 5°-10°.The mechanism of this mining method for control of strata movement has been evidenced by numerical simulation and experiments with similarity materials.A subsidence prediction model based on the variation of mining influence propagation angle can be used to evaluate the surface movement and deformation of the mining method.The application of the method in No.3 Mine in Yaojie mining area has yielded the expected result. | Huayang Dai Peng Li Nurpeissova Marzhan Yueguan Yan Chongliang Yuan Tursbekov Serik Junting Guo Yryszhan Zhakypbek Konbay Seituly | 2022 | International Journal of Mining Science and Technology2022,32,1: | 4 |
| 2 | Tuberculosis diagnosis using immunodominant, secreted antigens of Mycobacterium tuberculosis显示文摘 | Aliya Bekmurzayeva Marzhan Sypabekova Damira Kanayeva | 2013 | Tuberculosis2013,,: | 1 |
| 3 | 浅论中哈双边贸易发展现状显示文摘中国和哈萨克斯坦是友好邻邦,自1992年建交以来,两国因区位、要素禀赋、政治等多方面的优势,双边贸易得到了持续稳定的发展。针对近年来中哈双边贸易的发展现状、特点以及重点投资领域等进行比较全面的分析,其中尤其对中国新疆地区与哈萨克斯坦的边疆贸易进行具体研究和政策建议,以便中国企业对中哈贸易有较全面的了解,促进中哈双边贸易顺利健康进行,最终获得两国共赢。 | 曹炳汝 Kazankapova Marzhan玛尔江 | 2013 | 经济研究导刊2013,,13: | 1 |
| 4 | Spatial and Temporal Variability of Snow Depth Derived from Passive Microwave Remote Sensing Data in Kazakhstan显示文摘Snow cover plays an important role in the hydrological cycle and water management in Kazakhstan.However, traditional observations do not meet current needs. In this study, a snow depth retrieval equation was developed based on passive microwave remote sensing data. The average snow depth in winter(ASDW),snow cover duration(SCD), monthly maximum snow depth(MMSD), and annual average snow depth(AASD) were derived for each year to monitor the spatial and temporal snow distribution. The SCD exhibited significant spatial variations from 30 to 250 days. The longest SCD was found in the mountainous area in eastern Kazakhstan, reaching values between 200 and 250 days in 2005. The AASD increased from the south to the north and maintained latitudinal zonality. The MMSD in most areas ranged from 20 to30 cm. The ASDW values ranged from 15 to 20 cm in the eastern region and were characterized by spatial regularity of latitudinal zonality. The ASDW in the mountainous area often exceeded 20 cm. | MASHTAYEVA Shamshagul DAI Liyun CHE Tao SAGINTAYEV Zhanay SADVAKASOVA Saltanat KUSSAINOVA Marzhan ALIMBAYEVA Danara AKYNBEKKYZY Meerzhan | 2016 | Journal of Meteorological Research2016,30,6: | 1 |
| 5 | A New Modification Michaelis-Arbuzov, Allen, Milobendzky-Shulgin, Michaelis-Becker and Raymond Reactions with Organic Compounds Arsenic, Antimony and Bismuth显示文摘 | Aibassov Erkin Zhakenovlch Kenzhaliev Bagdaulet Kenzhalievich Berkinbaeva Ainura Chukmanova Marzhan Iskhakova Renata | 2014 | Journal of Chemistry and Chemical Engineering2014,8,3: | 0 |
| 6 | New Modifications Bart, Bdchamp, Mayer, Rosenmund, Scheller, Sherlyn-Braz Reactions with Halides of Arsenic, Antimony and Bismuth显示文摘 | Aibassov Erkin Zhakenovlch Kenzhaliev Bagdaulet Kenzhalievich Berkinbaeva Ainura Chukmanova Marzhan, Iskhakova Renata AhoacoB E.K. Chukmanova Marzhan | 2014 | Journal of Chemistry and Chemical Engineering2014,8,2: | 0 |
| 7 | Chemical Interaction UO2Cl2 with α-and β-Amino Acids in Aqueous and Organic Solution显示文摘 | Aibassov Erkin Zhakenovich Kenzhaliev Bagdaulet Kenzhalievich2 Tussupbaev Nessipbay Kuandykovich Berkinbaeva Ainura Chukmanova Marzhan Iskhakova Renata Bulenbayev Maxat Zhumabaevich | 2014 | Journal of Chemistry and Chemical Engineering2014,8,7: | 0 |
| 8 | New measurements and reanalysis of^14N elastic scattering on^10B target显示文摘The angular distributions of elastic scattering of^14N ions on^10B targets have been measured at incident beam energies of 21.0 and 24.5 MeV.Angular distributions at higher energies 38–94.0 MeV(previously measured)were also included in the analysis.All data were analyzed within the framework of the optical model and the distorted waves Born approximation method.The observed rise in cross sections at large angles was interpreted as a possible contribution of theα-cluster exchange mechanism.Spectroscopic amplitudes SA2 and SA4 for the configuration^14N→^10B+αwere extracted.Their average values are 0.58±0.10 and 0.81±0.12 for SA2 and SA4,respectively,suggesting that the exchange mechanism is a major component of the elastic scattering for this system.The energy dependence of the depths for the real and imaginary potentials was found. | Marzhan Nassurlla N.Burtebayev T.Kh.Sadykov I.Boztosun N.Amangeldi D.Alimov Zh.Kerimkulov J.Burtebayeva Maulen Nassurlla A.Kurakhmedov S.B.Sakuta Mesut Karakoc Awad A.Ibraheem K.W.Kemper Sh.Hamada | 2020 | Chinese Physics C2020,44,10: | 0 |
| 9 | Preparation of Uranyl Complexes with Sugars显示文摘 | Aibassov Erkin Zhakenovich Kenzhaliev Bagdaulet Kenzhalievich Tussupbaev Nessipbay Kuandykovich Berkinbaeva Ainura Chukmanova Marzhan Iskhakova Renata Bulenbayev Maxat Zhumabaevich | 2014 | Journal of Chemistry and Chemical Engineering2014,8,6: | 0 |
| 10 | New measurements and phase shift analysis of p^16O elastic scattering at astrophysical energies显示文摘The results of new experimental measurements of p^(16)O elastic scattering in the energy range of 0.6–1.0MeV at angles of 40°–160° are given. Phase shift analysis of p^(16)O elastic scattering was made using these and other experimental data on differential cross sections in excitation functions and angular distributions at energies of up to 2.5 Me V. | Sergey Dubovichenko Nassurlla Burtebayev Albert Dzhazairov-Kakhramanov Denis Zazulin Zhambul Kerimkulov Marzhan Nassurlla Chingis Omarov Alesya Tkachenko Tatyana Shmygaleva Stanislaw Kliczewski Turlan Sadykov | 2017 | Chinese Physics C2017,41,1: | 0 |