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20篇 您的检索式:作者名="Monoj"
    题名 作者 年代 出处 被引量
1First experimental constraints on WIMP couplings in the effective field theory framework from CDEX显示文摘We present weakly interacting massive particles(WIMPs) search results performed using two approaches of effective field theory from the China Dark Matter Experiment(CDEX), based on the data from both CDEX-1B and CDEX-10 stages. In the nonrelativistic effective field theory approach, both time-integrated and annual modulation analyses were used to set new limits for the coupling of WIMP-nucleon effective operators at 90% confidence level(C.L.) and improve over the current bounds in the low mχregion. In the chiral effective field theory approach, data from CDEX-10 were used to set an upper limit on WIMP-pion coupling at 90% C.L. We for the first time extended the limit to the m_(χ)<6 GeV/c^(2) region.Yi Wang Zhi Zeng Qian Yue LiTao Yang KeJun Kang YuanJing Li Mehment Agartioglu HaiPeng An JianPing Chang JingHan Chen YunHua Chen JianPing Cheng Cheng Yi Chiang WenHan Dai Zhi Deng ChangHao Fang XinPing Geng Hui Gong QiuJu Guo XuYuan Guo HongJian He Li He ShengMing He JinWei Hu TuChen Huang HanXiong Huang HaiTao Jia LiPing Jia Xi Jiang HauBin Li JianMin Li Jin Li MingXuan Li RenMingJie Li Xia Li YuLan Li Bin Liao FongKay Lin ShinTed Lin ShuKui Liu YanDong Liu Yu Liu YuanYuan Liu ZhongZhi Liu Hao Ma YuCai Mao QiYuan Nie JinHua Ning Hui Pan NingChun Qi Jie Ren XiChao Ruan ChangSong Shang Vivek Sharma Ze She Lakhwinder Singh Monoj Kumar Singh TianXi Sun ChangJian Tang WeiYou Tang Yang Tian GuangFu Wang Li Wang Qing Wang Yu Chen Wang YunXiang Wang Zhen Wang Henry Tsz-King Wong ShiYong Wu YuCheng Wu HaoYang Xing Yin Xu Tao Xue YuLu Yan Nan Yi ChunXu Yu HaiJun Yu JianFeng Yue Ming Zeng BingTao Zhang Lei Zhang FengShou Zhang ZhenYu Zhang KangKang Zhao MingGang Zhao JiFang Zhou ZuYing Zhou JingJun Zhu 2021Science China(Physics,Mechanics & Astronomy)2021,64,8:3
2Isolation of plasmid pRL form Arthrobacter oxydans 317 and demonstration of its role in steroid 1 (2)-dehydration显示文摘Sarman U Monoj K R Singh H D 1994Basic Microbiol1994,34,:1
3New experimental results of combined SO2 and NO removal from simulated gas stream by NaC10 as low - cost absorbent显示文摘Mondal Monoj Kumar Chelluboyana Vaishnava Raghunath 2013Chemical Engineering Journal2013,217,:1
4Multivariate sensory characteristics of low and ultra-low linoleic soybean oils displayed as faces 显示文摘Su Caiping Monoj Gupta White P 2003Journal of the American Oil Chemists'' Society2003,80,12:1
5Removal of Pb (Ⅱ) from aqueous solution by adsorption using activated tea waste 显示文摘Monoj Kumar Mondal 2010Korean J Chem Eng2010,271,:1
6Removal of Pb(II)from aqueous solution by adsorption using activated tea waste显示文摘Monoj K M 2010Korean J Chem Eng2010,,1:1
7New experimental results of combined SO 2 and NO removal from simulated gas stream by NaClO as low-cost absorbent显示文摘Monoj Kumar Mondal Vaishnava Raghunath Chelluboyana 2013Chemical Engineering Journal2013,,:1
8Isolation of plasmid pRL form Arthrobacter oxydans 317 and demonstration of its role in steroid 1 (2)-dehydration显示文摘Sarman U Monoj K R Singh H D 1994Basic Microbiol1994,34,:1
9Removal of Pb(II) from aqueous solution by adsorption using activated tea waste 显示文摘Monoj Kumar Mondal 2010Korean J Chem Eng2010,27,1:1
10Removal of Pb(Ⅱ) from aqueous solution by adsorption using activated tea waste显示文摘Monoj Kumar Mondal 2010Korean J Chem Eng2010,27,1:1
11Prevalence, molecular fingerprinting and drug resistance profile of enterovirulent Escherichia coli isolates from free-ranging yaks of Tawang district, Arunachal Pradesh, India显示文摘Samiran Bandyopadhyay Chandan Lodh Mihir Sarkar Monoj K. Ghosh Asit K. Bera Debasish Bhattacharyya Dipak K. Mondal Kishore K. Baruah 2012Tropical Animal Health and Production2012,,5:1
12Removal of Pb(II) from aqueous solution by adsorption using activated tea waste 显示文摘Monoj Kumar Mondal 2010KoreanJ Chem Eng2010,27,1:1
13Multivariate sensory characteristics of low and ultra-low linolenic soybean oils displayed as faces显示文摘Caiping Su Monoj Gupta Pamela White 2003Journal of the American Oil Chemists’ Society2003,,12:1
14Removal of Pb(11)from aqueous solution by adsorption using activated tea waste显示文摘Monoj Kumar Mondal 2010Korean J Chem Eng2010,27,1:1
15Synthesis,characterization and application of Lagerstroemia speciosa embedded magnetic nanoparticle for Cr(Ⅵ)adsorption from aqueous solution显示文摘Lagerstroemia speciosa bark(LB) embedded magnetic nanoparticles were prepared by co-precipitation of Fe^(2+) and Fe^(3+) salt solution with ammonia and LB for Cr(Ⅵ) removal from aqueous solution.The native LB,magnetic nanoparticle(MNP),L.spedosa embedded magnetic nanoparticle(MNPLB) and Cr(Ⅵ) adsorbed MNPLB particles were characterized by SEM-EDX,TEM,BET-surface area,FT-IR,XRD and TGA methods.TEM analysis confirmed nearly spherical shape of MNP with an average diameter of 8.76 nm and the surface modification did not result in the phase change of MNP as established by XRD analysis,while led to the formation of secondary particles of MNPLB with diameter of 18.54 nm.Characterization results revealed covalent binding between the hydroxyl group of MNP and carboxyl group of LB particles and further confirmed its physico-chemical nature favorable for Cr(Ⅵ) adsorption.The Cr(Ⅵ) adsorption on to MNPLB particle as an adsorbent was tested under different contact time,initial Cr(Ⅵ) concentration,adsorbent dose,initial pH,temperature and agitation speed.The results of the equilibrium and kinetics of adsorption were well described by Langmuir isotherm and pseudo-second-order model,respectively.The thermodynamic parameters suggest spontaneous and endothermic nature of Cr(Ⅵ)adsorption onto MNPLB.The maximum adsorption capacity for MNPLB was calculated to be 434.78 mg/g and these particles even after Cr(Ⅵ) adsorption were collected effortlessly from the aqueous solution by a magnet.The desorption of Cr(Ⅵ)-adsorbed MNPLB was found to be more than 93.72%with spent MNPLB depicting eleven successive adsorption-desorption cycles.Shalini Srivastava Shashi Bhushan Agrawal Monoj Kumar Mondal 2017Journal of Environmental Sciences2017,29,5:1
16Removal of Pb (II) from aqueous solution by adsorption using activated tea waste 显示文摘Monoj Kumar Mondal 2010Korean J Chem Eng2010,27,1:1
17Determination of epoxy equivalent weight of glycidyl ether based epoxides via near infrared spectroscopy显示文摘Monoj Pramanik Sharathkumar K. Mendon James W. Rawlins 2012Polymer Testing2012,,5:1
18Thermally induced crosslinking in blends of poly (vinyl chloride) and hydrogenated acrylonitrile- butadiene rubber显示文摘MONOJ N R DE P P DE S K 1993Rubber Chem Technol1993,66,4:1
19Potential of a novel antibiotic, 2‐methylheptyl isonicotinate, as a biocontrol agent against fusarial wilt of crucifers显示文摘Gojen NBordoloi BabitaKumari ArijitGuha DebajitThakur ManabjyotiBordoloi Monoj KRoy Tarun CBora 2002Pest Manag Sci2002,,3:1
20Performances of a prototype point-contact germanium detector immersed in liquid nitrogen for light dark matter search显示文摘The CDEX-10 experiment searches for light weakly interacting massive particles, a form of dark matter, at the China Jinping Underground Laboratory, where approximately 10 kg of germanium detectors are arranged in an array and immersed in liquid nitrogen. Herein, we report on the experimental apparatus, detector characterization, and spectrum analysis of one prototype detector. Owing to the higher rise-time resolution of the CDEX-10 prototype detector as compared with CDEX-1 B, we identified the origin of an observed category of extremely fast events. For data analysis of the CDEX-10 prototype detector, we introduced and applied an improved bulk/surface event discrimination method. The results of the new method were compared to those of the CDEX-1 B spectrum. Both sets of results showed good consistency in the 0-12 ke Vee energy range, except for the 8.0 keV K-shell X-ray peak from the external copper.Hao Jiang LiTao Yang Qian Yue KeJun Kang JianPing Cheng YuanJing Li Henry Tsz-King Wong M.A?artio?lu HaiPeng An JianPing Chang JingHan Chen YunHua Chen Zhi Deng Qiang Du Hui Gong Li He Jin Wei Hu QingDong Hu HanXiong Huang LiPing Jia HauBin Li Hong Li Jian Min Li Jin Li Xia Li XueQian Li YuLan Li Bin Liao FongKay Lin ShinTed Lin ShuKui Liu YanDong Liu YuanYuan Liu ZhongZhi Liu Hao Ma JingLu Ma Hui Pan Jie Ren XiChao Ruan B.Sevda Vivek Sharma ManBin Shen Lakhwinder Singh Monoj Kumar Singh TianXi Sun ChangJian Tang WeiYou Tang Yang Tian GuangFu Wang JiMin Wang Li Wang Qing Wang Yi Wang ShiYong Wu YuCheng Wu HaoYang Xing Yin Xu Tao Xue SongWei Yang Nan Yi ChunXu Yu HaiJun Yu JianFeng Yue XiongHui Zeng Ming Zeng Zhi Zeng FengShou Zhang YunHua Zhang MingGang Zhao JiFang Zhou ZuYing Zhou JingJun Zhu ZhongHua Zhu 2019Science China(Physics,Mechanics & Astronomy)2019,62,3:0
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