• Title/Summary/Keyword: two-level

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An Analysis of the Factors Affecting the Interaction between University and Industry (산학협동(産學協同)에 영향(影響)을 주는 요인분석(要因分析) - 문헌(文獻) 분석(分析)을 중심(中心)으로 -)

  • Min, Chang-Kee
    • Journal of the Korean Institute of Educational Facilities
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    • v.2 no.1
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    • pp.15-26
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    • 1995
  • This paper discussed non-physical factors, such as the level of use of organizational channels and the level of R&D investment of the firm. It also explored physical factors such as the distance between the university and industry, transportation conditions between the two, and the availability (surplus capacity) of professors' or firms' research facilities that would affect the interaction such as the contacts in connection with research grants and consultations by professors to high-tech firms. This paper pointed out that the use of organization channel, the level of R&D investment, the availability research facilities of the university and high-tech firm, transportation conditions between the two, subject matter compatibility between professors' areas of expertise and firms' industrial activities, professors' (or staff) research capabilities and professors' (or staff) research times affect the interaction between the university and industry. It also found that the distance between the university and industry affects the interaction between the two in the opposite direction.

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Dishing Reduction on Polysilicon CMP for MEMS Application (MEMS 적용을 위한 폴리실리콘 CMP에서 디싱 감소에 대한 연구)

  • Park, Sung-Min;Jeong, Hae-Do
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2006.11a
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    • pp.376-377
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    • 2006
  • Chemical Mechanical Planarization (CMP) has emerged as an enabling technology for the manufacturing of multi-level metal interconnects used in high-density Integrated Circuits (IC). Recently, multi-level structures have been also widely used m the MEMS device such as micro engines, pressure sensors, micromechanical fluid pumps, micro mirrors and micro lenses. Especially, among the thin films available in IC technologies, polysilicon has probably found the widest range of uses in silicon technology based MEMS. This paper presents the characteristic of polysilicon CMP for multi-level MEMS structures. Two-step CMP process verifies that is possible to decrease dishing amount with two type of slurries characteristics. This approach is attractive because two-step CMP process can be decreased dishing amount considerably more then just one CMP process.

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Time Integration in Reduced System Constructed by Two-level Condensation Scheme (임의의 하중 하에서 축소시스템 구성을 통한 구조물의 동적 거동 연구)

  • 김현기;조맹효
    • Proceedings of the Computational Structural Engineering Institute Conference
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    • 2004.10a
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    • pp.19-26
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    • 2004
  • This study constructs the reduced system by two-level condensation scheme. This scheme consists of two steps. First step selects the candidate area for the primary degrees of freedom by energy estimation in element level. In the second step, the primary degrees of freedom are selected by the sequential elimination scheme. The efficiency and reliability of this scheme is shown through the prediction of eigenvalues of a few numerical examples. Time integration in the reduced system can save the computing time effectively. The well-constructed reduced system can present the accurate behavior of the structure under arbitrary dynamic loads so much as the global system. Through the numerical example, the efficiency and reliability of the proposed scheme will be demonstrated.

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Two-photon excitation in three-level atom (세준위 모델원자에서 2광자 광여기 현상)

  • 김영철;성도현;김기식
    • Korean Journal of Optics and Photonics
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    • v.5 no.2
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    • pp.260-265
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    • 1994
  • In the three-level atom interacting with a single mode radiation field, two-photon excitation between the ground state and the upper most excited state is investigated. Using the resolvant theory, the effective resolvant, containing the ground state and the final excited state, is found and the coupling constant and the detuning being taken as parameters, the excitation mechanism is analyzed. In particular. by introducing an ensemble of effective two-level atoms, a consistent interpretation in terms of inteference phenomena is pursued. rsued.

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Two-level Key Pool Design-based Random Key Pre-distribution in Wireless Sensor Networks

  • Mohaisen, Abedelaziz;Nyang, Dae-Hun;AbuHmed, Tamer
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.2 no.5
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    • pp.222-238
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    • 2008
  • In this paper, the random key pre-distribution scheme introduced in ACM CCS'02 by Eschenauer and Gligor is reexamined, and a generalized form of key establishment is introduced. As the communication overhead is one of the most critical constraints of any successful protocol design, we introduce an alternative scheme in which the connectivity is maintained at the same level as in the original work, while the communication overhead is reduced by about 40% of the original overhead, for various carefully chosen parameters. The main modification relies on the use of a two-level key pool design and two round assignment/key establishment phases. Further analysis demonstrates the efficiency of our modification.

Modified Two-Level Skip-Lot Sampling Plans (수정된 2단계 스킾-로트 샘플링 검사계획)

  • 최병철;천영민
    • Journal of Korean Society for Quality Management
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    • v.29 no.1
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    • pp.113-127
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    • 2001
  • Skip-lot sampling plans for lot-by-lot inspection are more desirable than the continuous sampling plans for units in modern mass production system under the condition of the submitted product is good. Perry(1973a, 1973b) extended the Dodge(1955)′s skip-lot sampling plans to single and two-level skip-lot sampling plans and Parker & Kessler (1981) modified Perry(1973a)′s plans so that a sample of size one is taken from every lot skipped during the skipping mode. In this paper, Perry(1973b)′s two-level skip-lot sampling plans are modified by applying Parker & Kessler′s plan, designated as MTSkSP1, MTSkSP2, MTSkSP3. Operating characteristic(OC) functions, average sample numbers(ASN) and average outgoing qualities(AOQ) for the proposed plans are derived using Markov chain properties and compared each other and Perry′s plans. The proposed plans not only reduce the ASN but also avoid the danger skipping lots entirely when the lots are produced during sudden "out-of-control".

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Energy Consumption Evaluation for Two-Level Cache with Non-Volatile Memory Targeting Mobile Processors

  • Matsuno, Shota;Togawa, Masashi;Yanagisawa, Masao;Kimura, Shinji;Sugibayashi, Tadahiko;Togawa, Nozomu
    • IEIE Transactions on Smart Processing and Computing
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    • v.2 no.4
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    • pp.226-239
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    • 2013
  • A number of systems have several on-chip memories with cache memory being one of them. Conventional cache memory consists of SRAM but the ratio of static energy to the total energy of the memory architecture becomes larger as the leakage power of traditional SRAM increases. Spin-Torque Transfer RAM (STT-RAM), which is a variety of Non-Volatile Memory (NVM), has many advantages over SRAM, such as high density, low leakage power, and non-volatility, but it consumes too much writing energy. This study evaluated a wide range of energy consumptions of a two-level cache using NVM partially on a mobile processor. Through a number of experimental evaluations, it was confirmed that the use of NVM partially in the two-level cache effectively reduces energy consumption significantly.

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Simulation of Tidal Fields around a Huge Floating Marina using a Multi-level Method

  • BOO SUNG YOUN
    • Proceedings of the Korea Committee for Ocean Resources and Engineering Conference
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    • 2004.11a
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    • pp.114-119
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    • 2004
  • Floating marina has been interests as an alternative to the facilities for recreational boats because of its cost effectivenes and less environmental conflicts. For tile present research, a square floating marina with a length of 400m and draft of 5m was used. This marina can be extended to 800m by putting anotjer one together. Tidal field around tile marina was simulated using a multi-level finite difference method. Tidal motion was assumed sinusoidal in a closed rectangular bay. Velocities and residual current were investigated for two cases of single marina and two marinas installed in tile bay. It was found that the horizontal velocity fields from the water surface to the structure bottom around tile marina were affected. In the marina basin, magnitude of velocity was reduced considerably but overall quality of water circulation was preserved even after two marina were installed.

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Independence and Transparency of the Central Bank of Kazakhstan

  • Nurbayev, Daniyar
    • The Journal of Asian Finance, Economics and Business
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    • v.2 no.4
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    • pp.31-38
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    • 2015
  • During the last two decades the idea that central bank independence and transparency helps to maintain price stability, became popular among economists and central bankers. Many countries' governments give their monetary authorities higher independence and transparency to achieve the price stability goal. However, emerging countries such as Kazakhstan, suffer from high inflation. This inflation occurs largely due to a low level of independence and transparency of central banks. This research project measures the current level of independence and transparency of central bank of Kazakhstan. Indices were used to measure central bank independence and transparency. Central bank independence was measured by two types of indices: based on central bank laws (legal independence) and based on central banks governor's turnover (TOR). Developing countries have a weak legal framework, implying that a legal independence index cannot be appropriate to use as a measures of actual independence. Therefore, by paying attention to the other two indices, we can say that the central bank of Kazakhstan has a low level of independence and transparency. This, in turn, can be one of the causes of high inflation in Kazakhstan.

Intravital Laser-scanning Two-photon and Confocal Microscopy for Biomedical Research

  • Moon, Jieun;Kim, Pilhan
    • Medical Lasers
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    • v.10 no.1
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    • pp.1-6
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    • 2021
  • Intravital microscopy is a high-resolution imaging technique based on laser-scanning two-photon and confocal microscopy, which allows dynamic 3D cellular-level imaging of various biological processes in a living animal in vivo. This unique capability allows biomedical researchers to directly verify a hypothesis in a natural in vivo microenvironment at the cellular level in a physiological setting. During the last decade, intravital microscopy has become an indispensable technique in several fields of biomedical sciences such as molecular and cell biology, immunology, neuroscience, developmental, and tumor biology. The most distinct advantage of intravital microscopy is its capability to provide a longitudinal view of disease progression at the cellular-level with repeated intravital imaging of a single animal over time by saving the images after each session.