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6篇 您的检索式:作者名="J.Mulder"
    题名 作者 年代 出处 被引量
1Lack of Effectiveness of a Multidisciplinary Fall‐Prevention Program in Elderly People at Risk: A Randomized, Controlled Trial显示文摘Marike R. C.Hendriks Michel H. C.Bleijlevens Jolanda C. M.Van Haastregt Harry F. J. M.Crebolder Joseph P. M.Diederiks Silvia M. A. A.Evers Wubbo J.Mulder Gertrudis I. J. M.Kempen ErikVan Rossum Joop M.Ruijgrok Paul A.Stalenhoef Jacques Th. M.Van Eijk 2008Journal of the American Geriatrics Society2008,,8:1
2An 800Ms/s dual-residue pipeline ADC in 40nm CMOS显示文摘D.Vecchi J.Mulder F.M.L.van der Goes J.R.Westra E.Ayranci 0,,:1
3Increased expression of the tight junction molecule claudin‐18 A1 in both experimental colitis and ulcerative colitis显示文摘AntonieZwiers Ivan J.Fuss SuzanneLeijen Chris J.Mulder GeorgKraal GerdBouma 2008Inflamm Bowel Dis2008,,12:1
4There is no increased risk for colorectal cancer and adenomas in patients with diverticulitis: a retrospective longitudinal study显示文摘T. J.Lam M. M.Meurs‐Szojda L.Gundlach J. A. M.Belien G. A.Meijer C. J.Mulder R. J. F.Felt‐Bersma 2009Colorectal Disease2009,,11:1
5KVI-AECR离子源的现状报告(英文)显示文摘In this paper the first results of the new ECR source at the KVI are presented.The source has been built following the design of Jyv(?)skyl(?) University,which is based on the AECR-U of LBNL.As the commissioning is going on,it seems that the extraction and analysing systems inherited from the old source are the limiting factors for the performance of the new source.Beam currents achieved with the source are at the moment a factor of 3 lower than the AECR source used at the Jyv(?)skyl(?) University.Further modifications to improve the source performance will be discussed.H.R.Kremers J.P.M.Beijers S.Brandenburg J.Mulder 2007Chinese Physics C2007,31,S1:0
6Porous solid inspired hyper-crosslinked polymer liquids with highly efficient regeneration for gas purification显示文摘Separation media that combine the desired material properties within a single material for a given process remain an ongoing challenge for the gas separations in industry.Process integration of porous solid adsorbents is difficult due to their limited volumetric capacity,whereas issues of volatility and high regeneration temperatures exist for liquid amines and physical solvents.Herein,we report a family of polymer liquids inspired by hyper-crosslinked polymers(HCPs),a class of highly swellable network polymers.Compared with a chemically similar porous solid,the HCP-liquids demonstrate good volumetric capacity and improved selectivity of carbon dioxide over methane.Uptake appears to be enhanced by intramolecular swelling of the HCP-liquids at elevated pressures,while guests are strongly rejected from the HCP-liquids at slightly elevated temperatures,leading to highly efficient regeneration.Heat of adsorption and specific heat capacity of the HCP-liquids are also low,further suggesting favourable process thermodynamics.Additionally being easily prepared at scale,the presented HCP-liquids represent a promising step towards a material with the requisite properties to replace conventional scrubbing solvents to drastically reduce the footprint and energy needs of gas separations.Stefan J.D.Smith Colin D.Wood Paul H.M.Feron Hamidreza Mahdavi Roger J.Mulder Cara M.Doherty Matthew R.Hill Xavier Mulet 2022Science China Materials2022,65,7:0
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