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wissenschaftlicher Artikel videnskabelig artikel επιστημονικό άρθρο 2016年の論文 vitskapeleg artikkel научни чланак 2016年學術文章 article científic artikel ilmiah 2016年学术文章 article scientific artigo científico научна статия 2016年學術文章 scienca artikolo articolo scientifico 2016年学术文章 2016년 논문 научни чланак tieteellinen artikkeli 2016年学术文章 مقالة علمية نشرت في يوليو 2016 wetenschappelijk artikel artikulong pang-agham מאמר מדעי 2016年學術文章 artículu científicu scientific article published in July 2016 2016 nî lūn-bûn bài báo khoa học artigo científico บทความทางวิทยาศาสตร์ 2016年学术文章 vetenskaplig artikel articol științific სამეცნიერო სტატია article scientifique জুলাই ২০১৬-এ প্রকাশিত বৈজ্ঞানিক নিবন্ধ tudományos cikk bilimsel makale vedecký článok vědecký článek 2016年學術文章 мақолаи илмӣ artikull shkencor наукова стаття, опублікована в липні 2016 vitenskapelig artikkel 2016年學術文章 scientific article published in July 2016 scientific article published in July 2016 научная статья artykuł naukowy artigo científico artículo científico publicado en 2016 2016年学术文章 naučni članak 2016年学术文章 teaduslik artikkel
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Ravi Shankar Johannes Hellwagner Niels Chr Nielsen Lasse A Straasø Matthias Ernst
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Improved transfer efficiencies in radio-frequency-driven recoupling solid-state NMR by adiabatic sweep through the dipolar recoupling condition. Improved transfer efficiencies in radio-frequency-driven recoupling solid-state NMR by adiabatic sweep through the dipolar recoupling condition.
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Improved transfer efficiencies in radio-frequency-driven recoupling solid-state NMR by adiabatic sweep through the dipolar recoupling condition. Improved transfer efficiencies in radio-frequency-driven recoupling solid-state NMR by adiabatic sweep through the dipolar recoupling condition.
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Improved transfer efficiencies in radio-frequency-driven recoupling solid-state NMR by adiabatic sweep through the dipolar recoupling condition. Improved transfer efficiencies in radio-frequency-driven recoupling solid-state NMR by adiabatic sweep through the dipolar recoupling condition.
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Improved transfer efficiencies in radio-frequency-driven recoupling solid-state NMR by adiabatic sweep through the dipolar recoupling condition.
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