• 제목/요약/키워드: The Place of Boundary

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Word-boundary and rate effects on upper and lower lip movements in the articulation of the bilabial stop /p/ in Korean

  • Son, Minjung
    • 말소리와 음성과학
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    • 제10권1호
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    • pp.23-31
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    • 2018
  • In this study, we examined how the upper and lower lips articulate to produce labial /p/. Using electromagnetic midsagittal articulography, we collected flesh-point tracking movement data from eight native speakers of Seoul Korean (five females and three males). Individual articulatory movements in /p/ were examined in terms of minimum vertical upper lip position, maximum vertical lower lip position, and corresponding vertical upper lip position aligned with maximum vertical lower lip position. Using linear mixed-effect models, we tested two factors (word boundary [across-word vs. within-word] and speech rate [comfortable vs. fast]) and their interaction, considering subjects as random effects. The results are summarized as follows. First, maximum lower lip position varied with different word boundaries and speech rates, but no interaction was detected. In particular, maximum lower lip position was lower (e.g., less constricted or more reduced) in fast rate condition and across-word boundary condition. Second, minimum lower lip position, as well as lower lip position, measured at the time of maximum lower lip position only varied with different word boundaries, showing that they were consistently lower in across-word condition. We provide further empirical evidence of lower lip movement sensitive to both different word boundaries (e.g., linguistic factor) and speech rates (e.g., paralinguistic factor); this supports the traditional idea that the lower lip is an actively moving articulator. The sensitivity of upper lip movement is also observed with different word boundaries; this counters the traditional idea that the upper lip is the target area, which presupposes immobility. Taken together, the lip aperture gesture is a good indicator that takes into account upper and lower lip vertical movements, compared to the traditional approach that distinguishes a movable articulator from target place. Respective of different speech rates, the results of the present study patterned with cross-linguistic lenition-related allophonic variation, which is known to be more sensitive to fast rate.

무주-설천 지역 변성암류의 지질구조: 옥천벨트와 영남육괴의 경계부 고찰 (Geological Structure of the Metamorphic Rocks in the Muju-Seolcheon Area, Korea: Consideration on the Boundary of Ogcheon Belt and Ryeongnam Massif)

  • 강지훈
    • 암석학회지
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    • 제28권1호
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    • pp.25-38
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    • 2019
  • 옥천벨트와 영남육괴의 경계부에 위치하는 것으로 알려져 있는 무주-설천 지역은 시대미상 내지 선캠브리아기 변성암류[호상흑운모편마암, 변성퇴적암류(흑색천매암, 운모편암, 결정질석회암, 규암), 화강암질편마암, 각섬암], 중생대 퇴적암류와 화성암류로 구성되어 있다. 이 연구에서는 주요 변형된 암석구조의 기하학적 운동학적적 특성과 중첩된 변형구조들의 선후관계로부터 무주-설천 지역 변성암류의 변형단계별 구조적 특성을 규명하고, 기존에 보고된 연대학적, 지화학적, 구조지질학적 자료와 함께 옥천벨트와 영남육괴 사이의 경계 위치를 고찰하였다. 연구지역의 지질구조는 적어도 네 번의 변형단계(Dn-1, Dn, Dn+1, Dn+2 변형)를 걸쳐 형성되었다. Dn-1 변형은 광역엽리 Sn이 형성되기 이전에 발생하여 Fn 습곡에 의해 습곡되는 Sn-1 엽리를 형성시켰다. Dn 변형은 광역엽리 Sn을 형성시킨 변형작용이다. Sn 엽리는 변성암류의 대상 분포 방향과 일치하는 북동 방향으로 우세한 방향성을 보인다. Fn 습곡축이 신장선구조의 방향과 일치하는 A-형습곡 내지 칼집습곡은 결정질석회암에서 노두규모로 종종 관찰된다. Dn+1 변형은 광역엽리 Sn을 습곡시키는 변형작용으로 북북서~남북 방향의 압축응력 하에서 발생하여 동북동~동서 방향의 Fn+1 습곡을 형성시켰다. 광역엽리 Sn은 주로 Fn+1 습곡작용에 의해 재배열되어, 분산된 Sn 엽리의 극점배열의 파이-축의 방향성은 Fn+1 습곡축의 우세한 방향성과 거의 일치한다. Dn+2 변형은 Sn 엽리와 Sn+1 엽리를 습곡시키는 변형작용으로 동서 방향의 압축응력 하에서 발생하여 남북 방향의 Fn+2 개방습곡을 형성시켰다. 그리고 이러한 네 번의 변형작용은 무주-설천 지역의 옥천벨트와 영남육괴에서 모두 관찰되고, 무주-설천 지역에서 이들 지체구조구를 구분할 수 있는 구조적 특성과 차이점은 관찰할 수 없었다. 지화학적 자료와 연대학적 자료에 따르면, 무주-설천 지역 일대 변성암류의 형성시기 내지 변성시기는 중기~후기 고원생대이다. 이는 이 지역에서 산출되는 결정질석회암은 적어도 중기 고원생대 이전에 퇴적되었음을 지시하고, 이러한 퇴적시기는 최근에 보고된 옥천누층군의 지질시대(신원생대~후기 고생대)와 다르다. 따라서 지금까지의 연구결과를 고찰해 볼 때, 무주-설천 지역에서 결정질석회암을 포함하는 변성퇴적암류를 시대미상의 옥천층군으로 추정하여 설정된 옥천벨트와 영남육괴 사이의 지체구조구 구분은 재고될 필요가 있다.

Tribological diagnostics of machinery

  • Myshkin, N.K.
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 1990년도 제11회 학술강연회초록집
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    • pp.7-31
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    • 1990
  • Tribologicsl diagnostics as the ensemble of means and methods of continuous monitoring of the state of friction characteristics of moving junctions is playing an ever important part in the development of friction, lubrication, and wear theory end practice. The scheme presenting the main areas of tribological diagnostics is given in Fig. I. This growing part of TD is determined by the general tendency of modern technology, expressed in an attempt to organically combine the functions of measuring, evaluating,and predicting the parameters and characteristics of the processee taking place in the operating device. The logical result of this integration in future is the closed system correcting its operation in accordance with sn established program. Unfortunately, tribotechnicsl devices are still very far from such an ideal system at the present time. While in the friction assemblies with hydrodynamic lubrication it is possible in the first approximation to realize feed-backs in the lubricant circulation system with the aid of monitoring of the pressure, temperature and filtration, in the systems operating without lubrication and with boundary lubricetion even the process of selection of the diagnostic parameters has not been completed.

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Modeling and Simulation of the Photocatalytic Treatment of Wastewater using Natural Bauxite and TiO2 doped by Quantum Dots

  • Becheikh, Nidhal;Eladeb, Aboulbaba;Ghazouani, Nejib
    • International Journal of Computer Science & Network Security
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    • 제22권6호
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    • pp.91-96
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    • 2022
  • The photocatalytic degradation of salicylic acid takes place in several stages involving coupled phenomena, such as the transport of molecules and the chemical reaction. The systems of transport equations and the photocatalytic reaction are numerically solved using COMSOL Mutiphysics (CM) simulation software. CM will make it possible to couple the phenomena of flow, the transport of pollutants (salicylic acid) by convection and diffusion, and the chemical reaction to the catalytic area (bauxite or TiO2 doped by nanoparticles). The simulation of the conversion rate allows to correctly fit the experimental results. The temporal simulation shows that the reaction reaches equilibrium after a transitional stage lasting over one minute. The outcomes of the study highlight the importance of diffusion in the boundary layer and the usefulness of injecting micro-agitation into the microchannel flow. Under such conditions, salicylic acid degrades completely.

나노임프린트 리소그래피 공정에서 Slip에 의한 경계 효과 (Effect of Boundary Slip Phenomena in Nanoimprint Lithography Process)

  • 이영훈;김남웅;신효철
    • 한국공작기계학회논문집
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    • 제18권2호
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    • pp.144-153
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    • 2009
  • It is widely known that no-slip assumptions are often violated on regular basis in micrometer- or nanometer-scale fluid flow. In the case of cavity-filling process of nanoimprint lithography(NIL), slip phenomena take place naturally at the solid-to-liquid boundaries, that is, at the mold-to-polymer or polymer-to-substrate boundaries. If the slip or partial slip phenomena are promoted at the boundaries, the processing time of NIL, especially of thermal-NIL which consumes more tact time than that of UV-NIL, can be significantly improved. In this paper it is aimed to elucidate how the cavity-filling process of NIL can be influenced by the slip phenomena at boundaries and to what degree those phenomena increase the process rate. To do so, computational fluid dynamics(CFD) analysis of cavity filling process has been carried out. Also, the effect of mold pattern shape and initial thickness of polymer resist were considered in the analysis, as well.

와점성 변화가 회전곡면으로 이루어진 마이크로 슬롯 유동장에 미치는 영향 (Effects of Vortex Viscosity Variation on the Flowfields in a Micro-slot between Rotating Surfaces of Revolution)

  • 최근우;김윤제
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 추계학술대회논문집B
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    • pp.591-596
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    • 2001
  • Micron-size mechanical devices are becoming more prevalent, both in commercial applications and in scientific inquiry. Within the last decade, a dramatic increase in research activities has taken place, mostly due to the rapidly expanding growth of applications in areas of MEMS(Micro-Electro-Mechanical Systems), bioengineering, chemical systems, and advanced energy systems. In this study, we have described the effects of vortex viscosity variation on the flowfields in a micro-slot between rotating surfaces of revolution using a micropolar fluid theory. In order to solve this problem, we have used boundary layer equations and applied non-zero values of the microrotation vector on the wall. The results are compared with the corresponding flow problems for Newtonian fluid. Results show that the coefficient $\delta$ controls the main part of velocity ${\upsilon}_x$ and the coefficient M controls the main part of microrotation component ${\Omega}_{\theta}$.

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클래딩 자유단의 열응력 해석 (Thermal Stresses near the Edge in a Clad)

  • 김형남;최성남;장기상
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 1999년도 특별강연 및 추계학술발표대회 개요집
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    • pp.306-309
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    • 1999
  • Based on the principle of complementary energy, an analytical method is developed which focused on the end effects for determining thermal stress distributions in the claded beam. This method gives the stress distributions which completely satisfy the stress-free boundary condition at the edge. Numerical result shows that shear stress and peeling stress at the interface between the substrate and clad are significant near the edge and become negligible in the interior region. Even though the relative location where the maximum or minimum stresses take place moves to interior as the length of the beam become smaller, the absolute location from the free end and the value of these stresses are the same in spite of the variation of the length of beam.

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Conformational Analysis and Molecular Dynamics Simulation of Lactose

  • 오재택;김양미;원영도
    • Bulletin of the Korean Chemical Society
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    • 제16권12호
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    • pp.1153-1162
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    • 1995
  • The conformational details of β-lactose are investigated through molecular dynamics simulations in conjunction with the adiabatic potential energy map. The adiabatic energy map generated in vacuo contains five local minima. The lowest energy structure on the map does not correspond to the structure determined experimentally by NMR and the X-ray crystallography. When aqueous solvent effect is incorporated into the energy map calculation by increasing the dielectric constant, one of the local minima in the vacuum energy map becomes the global minimum in the resultant energy map. The lowest energy structure of the energy map generated in aquo is consistent with the one experimentally determined. Molecular dynamics simulations starting from those fivelocal minima on the vacuum energy map reveal that conformational transitions can take place among various conformations. Molecular dynamics simulations of the lactose and ricin B chain complex system in a stochastic boundary indicate that the most stable conformation in solution phase is bound to the binding site and that there are conformational changes in the exocyclic region of the lactose molecule upon binding.

Investigation of One-dimensional Stress-Release Mechanism in Sand from Model Test

  • Zhuang, Li;Kim, Dongwook;Kim, Ukgie
    • 한국지반환경공학회 논문집
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    • 제14권10호
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    • pp.17-27
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    • 2013
  • This paper explores stress release induced by unloading in dry sand. A series of model tests were carried out to measure stresses developed in testing sand during loading and those released during unloading for different boundary conditions. It was found that stress in the sand increased linearly with applied load. At the onset of unloading, almost no stress release was observed. Significant stress release took place when the shear stress in the sand induced by unloading exceeded the frictional resistance and caused movement of sand particles. The initiation and the magnitude of stress release depend on the stress condition prior to unloading, the decrease of external load, and also the frictional resistance in sand. A new conceptual stress-release model was next developed based on the model test results by considering the fundamental frictional behavior of granular materials.

클래딩 자유단의 열응력 해석 (Thermal Stresses near the Edge in a Clad)

  • 김형남;최성남;장기상
    • Journal of Welding and Joining
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    • 제18권1호
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    • pp.104-109
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    • 2000
  • Based on the principle of complementary energy, an analytical method is developed which focused on the end effects for determining thermal stress distributions in the clad beam. This method gives the stress distributions which completely satisfy the stress-free boundary condition at the edge. Numerical results shows that shear and peeling stress at the interface between the substrate and clad are significant near the edge and become negligible in the interior region. Even thought the relative location where the maximum or minimum stresses take place moves to interior as the length of the beam becomes smaller, the absolute location from the free end and the value of these stresses are the same in spite of the variation of the length of beam.

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