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On a family of cohomological degrees
Doan Trung Cuong,Pham Hong Nam 대한수학회 2020 대한수학회지 Vol.57 No.3
Cohomological degrees (or extended degrees) were introduc\-ed by Doering, Gunston and Vasconcelos as measures for the complexity of structure of finitely generated modules over a Noetherian ring. Until now only very few examples of such functions have been known. Using a Cohen-Macaulay obstruction defined earlier, we construct an infinite family of cohomological degrees.
A Broadband On-chip Power Divider up to W-band with Three-dimensional Three-coupled Lines
Trung-Sinh Dang,Nhut-Tan Doan,Byung-Sung Kim,Nam-Yoon Kim,Chang-Woo Kim,Sang-Woong Yoon 대한전자공학회 2018 Journal of semiconductor technology and science Vol.18 No.1
A state-of-the-art broadband on-chip power divider in millimeter-wave up to 103 GHz is presented. The power divider employs novel three-dimensional (3-D) three-coupled lines to achieve the desired mode impedances for an extremely wideband characteristic. The power divider was implemented in TSMC 180 nm RF CMOS IC technology with six metal layers. Measurements show the absolute bandwidth from 11 to 103 GHz with matching conditions of all of the ports and isolation between two outputs of less than -10 dB. The fractional bandwidth is 161.4%. The insertion loss is between 1.2 and 7.9 dB across the overall bandwidth. The core size of the power divider is 0.18 mm × 0.68 mm.
ON A FAMILY OF COHOMOLOGICAL DEGREES
Cuong, Doan Trung,Nam, Pham Hong Korean Mathematical Society 2020 대한수학회지 Vol.57 No.3
Cohomological degrees (or extended degrees) were introduced by Doering, Gunston and Vasconcelos as measures for the complexity of structure of finitely generated modules over a Noetherian ring. Until now only very few examples of such functions have been known. Using a Cohen-Macaulay obstruction defined earlier, we construct an infinite family of cohomological degrees.
( Lieu My Dong ),( Doan Trung Nam ),( Tran Thi Phuong ),( Dang Kim Thuy ) 한국미생물생명공학회(구 한국산업미생물학회) 2021 한국미생물·생명공학회지 Vol.49 No.2
Agarwood (Aquilaria spp) has high economic value. However, essential oil production from agarwood is a time-consuming process. Additionally, agarwood leaves have not been utilized even though they contain various bioactive ingredients. In this study, agarwood leaves were fermented using Lactobacillus plantarum ATCC 8014 with or without Stevia (4, 8, and 12%; v/v). The fermented fluid was mixed with maltodextrin (15%; w/v) and subjected to spray drying (inlet temperature, 120℃; outlet temperature, 65-70℃). The contents of polyphenols, polysaccharides, saponins, and flavonoids and the viability of L. plantarum were determined. Fermentation enhanced the levels of bioactive compounds. The contents of polyphenol (69.19 ± 4.05 mg GAE/g of sample), polysaccharide (20.75 ± 0.98 mg GE/g of sample), saponin (305.23 ± 4.21 mg OAE/g of sample), and flavonoid (7.86 ± 0.72 mg QE/g of sample), and the viability of L. plantarum (8.72 ± 0.17 log CFU/ml) were markedly upregulated in the samples containing Stevia (12%; v/v). This indicated that the supplementation of Stevia during fermentation decreases the fermentation time (9 h), upregulates bioactive compound production in agarwood leaves, enhances microencapsulation during spray drying, and increases the viability of L. plantarum under simulated gastric digestion conditions.
Phuong T.M. Ha,Binh T.T. Le,Trung C. To,Son H. Doan,Tung T. Nguyen,Nam T.S. Phan 한국공업화학회 2017 Journal of Industrial and Engineering Chemistry Vol.54 No.-
Iron-organic framework Fe3O(BPDC)3 was synthesized, and subsequently utilized as an productive heterogeneous catalyst for the cyclization reaction of N,N-dialkylanilines with ketoxime carboxylates to produce aryl-substituted pyridines. This iron-organic framework catalyst demonstrated remarkably higher catalytic productivity for the synthesis of aryl-substituted pyridines as compared to numerous conventional homogeneous catalysts as well as MOF-based catalysts. It was possible to reuse the iron- framework catalyst in the cyclization transformation for numerous cycles without a noticeable decline in activity. To our best knowledge, this is the first heterogeneous catalytic approach towards the synthesis of aryl-substituted pyridines from ketoximes.