• 제목/요약/키워드: PS properties

검색결과 338건 처리시간 0.024초

Principally Small Injective Rings

  • Xiang, Yueming
    • Kyungpook Mathematical Journal
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    • 제51권2호
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    • pp.177-185
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    • 2011
  • A right ideal I of a ring R is small in case for every proper right ideal K of R, K + I ${\neq}$ = R. A right R-module M is called PS-injective if every R-homomorphism f : aR ${\rightarrow}$ M for every principally small right ideal aR can be extended to R ${\rightarrow}$ M. A ring R is called right PS-injective if R is PS-injective as a right R-module. We develop, in this article, PS-injectivity as a generalization of P-injectivity and small injectivity. Many characterizations of right PS-injective rings are studied. In light of these facts, we get several new properties of a right GPF ring and a semiprimitive ring in terms of right PS-injectivity. Related examples are given as well.

Effect of Organoclay and Blends on the Abrasion Resistance and Mechanical Properties of Poly(styrene-block-butadiene-block-styrene)

  • Kim, Ji-Hoo;Kim, Gue-Hyun
    • 한국환경과학회지
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    • 제22권6호
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    • pp.687-694
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    • 2013
  • To investigate organoclay, high styrene resin masterbatch (HSR), high impact polystyrene (HIPS), and polystyrene (PS) as reinforcing materials for the improvement of the abrasion resistance of poly(styrene-block-butadiene-block-styrene) (SBS), SBS/organoclay nanocomposites, SBS/HSR, SBS/HIPS, and SBS/PS blends were prepared. The effect of organoclay and blends on the abrasion resistance and mechanical properties of SBS was investigated. Even though intercalations of organoclay are observed for SBS/Cloisite 20A nanocomposites and not for SBS/Cloisite 30B composites, the abrasion resistance of SBS/Cloisite 20A nanocomposites is worse than that of SBS/Cloisite 30B composites. When SBS was blended with HSR, HIPS and PS, the abrasion resistance of the blends increases with increasing of HSR, HIPS and PS content from 0 to 20 wt%.

돈피, 닭발껍질에서 추출한 collagen의 특성 (Properties of collagen extracted from chicken foot skins)

  • 신미혜
    • 한국조리학회지
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    • 제8권1호
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    • pp.95-105
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    • 2002
  • This study was conducted to present the fundamental data on physicochemical properties of chicken foot collagen by the comparison with those from pork skin, which is present used in the factories as evaluate the usability of chicken foot in the industries of collagen production. Moisture content of chicken foot skin (CFS) was higher than that of pork skin (PS), and crude protein content was higher in PS. Content of other compositions was not different in both samples. At the evaluation of the soaking processing, effective time lapsed for soaking the skin in acid solution (acetic acid of 0.1 M) was about 12 hr for efficient extract ion of collagen, when tested by the changes of pH of the soaking solution and the increase of the weight of skins. L-Hydroxyproline of PS was slightly higher than that of CFS. Collagens were loaded in a SDS-PAGE and compared. Separated pattern of collagen of CFS was very similar to that of PS. Major collagen of CFS might be clarified as type I collagen.

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폴리스티렌/다중벽 탄소나노튜브 나노복합재료의 물리적 분산 방법에 따른 물성 (Comparative Study of Physical Dispersion Method on Properties of Polystyrene/Multi-walled Carbon Nanotube Nanocomposites)

  • 강명환;염효열;나효열;이성재
    • 폴리머
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    • 제37권4호
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    • pp.526-532
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    • 2013
  • 라텍스 기법으로 제조한 폴리스티렌(PS)/탄소나노튜브(CNT) 나노복합재료의 CNT 분산 방법에 따른 유변물성과 전기 전도도를 비교하였다. PS/CNT 나노복합재료는 PS 입자와 CNT를 분산시킨 후 동결건조하여 제조하였다. 본 연구에서는 화학적 개질시 나타나는 CNT의 고유 물성 저하를 방지하기 위하여 sodium dodecylsulfate(SDS)를 첨가하는 방법과 polyvinyl pyrrolidone(PVP)으로 CNT를 감싸는 방법의 물리적 분산법을 적용하였다. 라텍스 기법에 적용한 물리적 분산 방법은 CNT의 분산에 매우 효과적이었다. SDS를 첨가한 경우는 PVP로 감싼 CNT를 사용하여 제조한 경우에 비해 나노복합재료의 유변물성의 증가폭이 낮은데 이는 저분자량인 SDS를 첨가로 인해 매트릭스의 물성이 감소하기 때문이다. CNT를 SDS로 분산시킨 나노복합재료와 PVP로 감싼 CNT를 사용한 나노복합재료의 전기적 임계점은 각각 0.23과 0.90 wt%로 나타났다. PVP로 CNT를 감싼 경우가 전기 전도도 향상 효과가 낮은데 이는 감싸고 있는 절연성의 PVP가 CNT간의 전기적 연결을 억제하기 때문이다.

풍쇄슬래그 잔골재를 사용한 콘크리트의 공학적 특성에 관한 실험적 연구 (An Experimental Study on the Engineering Properties of Concrete using Fine Aggregate of PS ball Slag)

  • 이상수;송하영;김을용
    • 한국건축시공학회지
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    • 제6권3호
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    • pp.107-114
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    • 2006
  • In this study, the experiment was carried out to investigate and analyze the engineering properties of concrete using fine aggregate of PS bal slagl. The main experimental variables were water/cement ratio 30, 40, 50(%), water content $170kg/m^3$, replacement ratio of slag fine aggregate 0, 25, 50, 75(%) in experiment I and water/cement ratio 30, 40, 50(%), water content 165, 170, 175($kg/m^3$), replacement ratio of fine aggregate of PS ball 0, 50 in experiment II. According to the test results, the principle conclusions are summarized as follows (1) The workability of slag fine aggregate-mixed concrete tends to improve, as the replacement rate increases. (2) The air content of slag fine aggregate-mixed concrete tends to decrease, as the replacement rate increases. (3) The unit volume weight of slag fine aggregate-mixed concrete tends to significantly increase, as the replacement rate increases. (4) The compressive strength of slag fine aggregate-mixed concrete tends to show more increasing propensity, in case the curing period is relatively long, as the replacement rate increases.

불포화 폴리에스테르 레진 모르타르의 수축저감 및 강도특성에 관한 연구 (A study on the Shrinkage Reduction and Strengths of Unsaturated Polyester Mortar)

  • 최낙운;최길섭;김완기;조영국;소양섭
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1999년도 봄 학술발표회 논문집(I)
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    • pp.343-348
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    • 1999
  • The purpose of this study is to evaluated the effects of added expanded polystyrene on the basic properties of UP mortar. Polyester resin mortars are prepared with expanded polystyrene ratio in styrene monomer (EPS/PS), and the ratio of total polystyrene resin to UP resin (PS/UP). And it is tested for viscosity of UP resin added PS resin, slump-flow test, working life, flexural and compressive strengths, and curing shrinkage test. From the test result, Viscosity of resin for polymer mortar increases with increasing PS content. Curing shrinkage of UP mortar is considerably smaller than that of plain UP mortar, nevertheless, reduction in the strengths is not recognized according to adding PS resin. In this study, we can obtain the optimum mix proportions of polymer mortar using PS resin.

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Structural and Optical Properties of Porous Silicon Prepared by Electrochemical Etching

  • Lee, Jeong-Seok;Cho, Nam-Hee
    • 한국세라믹학회지
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    • 제39권2호
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    • pp.109-112
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    • 2002
  • The structural and optical features of Porous Silicon(PS) were investigated; the porous silicon was prepared by electrochemical etching of silicon wafers in HF solution. The morphologies and Photoluminescece(PL) features of the PS were investigated in terms of etching time, current density and aging conditions. The average pore diameter and pore depth were determined by current density and etching time, respectively. As-prepared PS exhibited the maximum PL peak at the wavelength of ∼ 450 nm. The degree of deviation from as-prepared PS during aging treatment seemed to depend on the microstructure as well as morphology of the PS. It is found that etching current density played an important role on the microstructural features of the PS.

DMF와 Benzene에서 PS-PEG-PS의 solution거동 (Solution behavior of PS-PEG-PS triblock copolymer in DMF and Benzene)

  • Kim, Eun-Sub;Kim, Byoung-Chul;Ahn, Sung-Kook;Cho, Chang-Gi
    • 한국섬유공학회:학술대회논문집
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    • 한국섬유공학회 2003년도 가을 학술발표회 논문집
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    • pp.179-180
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    • 2003
  • ABA triblock copolymer made up of long middle block(B) and sho.1 terminal blocks(A) is being widely used as thermoplastic elastomers. Block copolymers with non-polar hydrophobic polystyrene and polar hydrophilic poly(ethylene glycol) blocks has been prepared and the physical properties of the solutions of PS-PEG-PS in polar (dimethyl formamide, DMF) and non-polar solvent (benzene) were investigateded[-3]. (omitted)

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Strong Red Photoluminescence from Nano-porous Silicon Formed on Fe-Contaminated Silicon Substrate

  • Kim, Dong-Lyeul;Lee, Dong-Yul;Bae, In-Ho
    • Transactions on Electrical and Electronic Materials
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    • 제5권5호
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    • pp.194-198
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    • 2004
  • The influences of the deep-level concentration of p-type Si substrates on the optical properties of nano-porous silicon (PS) are investigated by deep level transient spectroscopy (DLTS) and photoluminescence (PL). Utilizing a Si substrate with Fe contaminations significantly enhanced the PL intensity of PS. All the PS samples formed on Fe-contaminated silicon substrates had stronger PL yield than that of reference PS without any intentional Fe contamination but the emission peak is not significantly changed. For the PS 1000 sample with Fe contamination of 1,000 ppb, the maximum PL intensity showed about ten times stronger PL than that of the reference PS sample. From PL and DLTS results, the PL efficiency strongly depends on the Fe-related trap concentration in Si substrates.

Magnetic and Temperature-Sensitive Composite Polymer Particles and Adsorption Behavior of Emulsifiers and Trypsin

  • Ahmad, Hasan;Rahman, M.Abdur;Miah, M.A. Jalil;Tauer, Klaus
    • Macromolecular Research
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    • 제16권7호
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    • pp.637-643
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    • 2008
  • A combination of magnetic and temperature-responsive properties in the same polymer composites is expected to increase their potential applications in the biomedical field. Accordingly, micron-sized magnetite/polystyrene/poly(2-dimethylaminoethyl methacrylate-ethyleneglycol dimethacrylate), which are abbreviated as $Fe_3O_4$/PS/P (DM-EGDM) composite polymer particles, were prepared by the seeded copolymerization of DM and EGDM in the presence of magnetite/polystyrene ($Fe_3O_4$/PS) particles. $Fe_3O_4$/PS/P(DM-EGDM) composite particles with magnetic properties showed a temperature-sensitive phase transition at approximately $31^{\circ}C$. The adsorption behavior of the low molecular weight emulsifiers and trypsin (TR) as biomolecules were examined on $Fe_3O_4$/PS/P(DM-EGDM) composite polymer particles at different temperatures. The native conformation of TR was followed by measuring the specific activity under various adsorption conditions. The activity of the adsorbed TR on composite polymer particles was higher than those of the tree TR and TR adsorbed on $Fe_3O_4$/PS particles.