자료유형
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Religious Conflicts, Pluralism, and Emptiness: A Madhyamika Buddhist View
Yongpyo Kim 한국종교교육학회 종교교육학연구 13 Pages
한국종교교육학회 종교교육학연구 2011, 제 35권 4 67-79 (13 pages)
wisdom and compassion. The Buddha emphasized tolerance and peace to the people who were embroiled in conflicts between religion. The exclusive attitude, anger, jealousy, and hatred against other religions comes from ignorance that results from selfish avarice or a prejudiced view on truth. Buddhism accepts diversity as it is and by viewing it without clinging to the concept of ultimate reality. The doctrine of emptiness in Mādhyamika Buddhism might transcends the inclusive exclucivism and... -
Modern Methods for Analysis of Antiepileptic Drugs in the Biological Fluids for Pharmacokinetics, Bioequivalence and Therapeutic Drug Monitoring
JuseopKang, Yoo-SinPark, Shin-HeeKim, Sang-HyunKim, Min-YoungJun 대한생리학회-대한약리학회 The Korean Journal of Physiology & Pharmacology 16 Pages
대한생리학회-대한약리학회 The Korean Journal of Physiology & Pharmacology 2011, Vol.15 No.2 1 67-82 (16 pages)
Epilepsy is a chronic disease occurring in approximately 1.0% of the world's population. About 30% of the epileptic patients treated with availably antiepileptic drugs (AEDs) continue to have seizures and are considered therapy-resistant or refractory patients. The ultimate goal for the use of AEDs is complete cessation of seizures without side effects. Because of a narrow therapeutic index of AEDs, a complete understanding of its clinical pharmacokinetics is essential for understanding of the... -
Synthesis and electrochemical analysis of Pt-loaded, polypyrroledecorated, graphene-composite electrodes
Jiyoung Park, Seok Kim 한국탄소학회 Carbon Letters 4 Pages
한국탄소학회 Carbon Letters 2013, Vol.14 No.2 8 117-120 (4 pages)
In this study, an electro-catalyst of Pt nanoparticles supported by polypyrrole-functionalized graphene (Pt/PPy-reduced graphene oxide [RGO]) is reported. The Pt nanoparticles are deposited on the PPy-RGO composite by chemical reduction of H2PtCl6 using NaBH4. The presence of graphene (RGO) caused higher activity. This might have been due to increased electro-chemically accessible surface areas, increased electronic conductivity, and easier charge-transfer at polymer-electrolyte interfaces,... -


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