• Title/Summary/Keyword: general components

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Design and Implementation of the Prevention System for Side Effects of Polypharmacy Components Utilizing Data Queuing Algorithm

  • Choi, Jiwon;Kim, Chanjoo;Ko, Yunhee;Im, Hyeji;Moon, Yoo-Jin;McLain, Reid
    • Journal of the Korea Society of Computer and Information
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    • v.26 no.11
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    • pp.217-225
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    • 2021
  • In this paper, we designed and implemented the integrated system to prevent adverse drug reactions of polypharmacy components in medicine by supporting component-component information and disease-component information, through data queuing algorithm and vast amounts of pharmaceutical big data. In addition, by providing information for drugs, drug components, prohibited drugs, as well as suppliers and distributors, it could help ease anxiety about taking drugs not only for health-care professionals but also for general users. The representative information provided were side effects between two drugs, main components and effectiveness of particular drugs, drugs manufactured by the same pharmaceutical company, and drug component information for patients with chronic diseases. The future work is to update the database by collecting information on rare & new diseases and new drugs.

Numerical Life Prediction Method for Fatigue Failure of Rubber-Like Material Under Repeated Loading Condition

  • Kim Ho;Kim Heon-Young
    • Journal of Mechanical Science and Technology
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    • v.20 no.4
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    • pp.473-481
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    • 2006
  • Predicting fatigue life by numerical methods was almost impossible in the field of rubber materials. One of the reasons is that there is not obvious fracture criteria caused by nonstandardization of material and excessively various way of mixing process. But, tearing energy as fracture factor can be applied to a rubber-like material regardless of different types of fillers, relative to other fracture factors and the crack growth process of rubber could be considered as the whole fatigue failure process by the existence of potential defects in industrial rubber components. This characteristic of fatigue failure could make it possible to predict the fatigue life of rubber components in theoretical way. FESEM photographs of the surface of industrial rubber components were analyzed for verifying the existence and distribution of potential defects. For the prediction of fatigue life, theoretical way of evaluating tearing energy for the general shape of test-piece was proposed. Also, algebraic expression for the prediction of fatigue life was derived from the rough cut growth rate equation and verified by comparing with experimental fatigue lives of dumbbell fatigue specimen in various loading condition.

Taxonomical Study of Chrysosplenium L. (Saxifragaceae) in Korea Based on Chemical Composition

  • Kim, Hyun-Jun;Jeong, Hea-Seok;Kang, Shin-Ho
    • Korean Journal of Plant Resources
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    • v.26 no.6
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    • pp.718-725
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    • 2013
  • Components extracted from 7 species and 18 populations of Chrysosplenium in Korea were compared and analyzed using GC-MS analysis. 57 components (${\geq}80%$ quality) were identified, of which neophytadiene, palmitic acid and phytol were found at all the taxa. Percentage composition of isolated extracts showed a clear difference in components type and GC-MS profile. On the basis of that result, data matrix was made and cluster analysis using UPGMA was conducted. From the result of cluster analysis, two groups were recombined; one with alternate leaves comprised C. japonicum in Ser. Alternifolia and C. flagelliferum in Ser. Flagellifera and the other with opposite leaves gradationally comprised C. psuedofauriei in Ser. Sinica, C. ramosum in Ser. Oppositifolia and C. sphaerospermum, C. valdepilosum, C. flaviflorum in Ser. Pilosa. These chemotaxonomic results agreed in general with those of existing studies on external morphology and molecular. In conclusion, chemical composition can be an useful characters in understanding the relation analysis among interspecific and intraspecific complex with the help of cluster analysis of 7 species and 18 populations of Chrysosplenium in Korea.

Major Chemical Components in Fermented Beverages of Liriopis Tuber (맥문동 발효음료의 주요 화학성분에 관한 연구)

  • 김순동;구연수;이인자;김미경;박인경
    • Journal of the East Asian Society of Dietary Life
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    • v.10 no.4
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    • pp.281-287
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    • 2000
  • Major chemical components of sweet drink and vinegar prepared with Liriopis tuber were investigated sensory quality. The contents of total soluble solid, total sugar, non-reducing sugar, total saponin, ash and protein in the processed of LIriopis products ranged 7.71~10.67%, 4.94~9.77%, 1.98~4.67%, 0.80~0.59%, 0.40~0.36%, and 0.44~0.49%, respectively. In addition, levels of succinic, malic and acetic acid in the products ranged 78.9~96.3, 23.6~6.3 and 12.7~2686.0mg/100ml respectively. Meanwhile, the sweet drink contained 1.89mg%(w/v) of hydroxyprolin, 0.39mg%(w/v) of glutamic acid, 0.22mg%(w/v) of arginie, 0.15mg%(w/v) of citruline and 0.11mg%(w/v) of potassium. The vinegar contained 2.89mg%(w/w) hydroxyprolin, 248.2$\mu$g/100ml glutamic acid, 99.2$\mu$g/100ml arginine, 205.5$\mu$g/100ml citruline and 143.46$\mu$g/100ml potassium.

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Difference Limen for Just Noticeable Change of Booming Sensation in Frequency (차량 부밍소음의 청감 변화 인지를 위한 주파수 역치)

  • Shin, Sung-Hwan;Ih, Jeong-Guon
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2005.05a
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    • pp.621-624
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    • 2005
  • Among many auditory feelings for the vehicle interior noise, booming is considered as the most important nuisance to the passenger and developer. Because the main source of booming noise is a power train system including engine, in general, it consists of tonal components related to fundamental engine rotation and its harmonics including the firing frequency. Therefore, it is demanded to extract the effective tonal components only by using pitch extraction algorithm based on the place theory enable to find aurally relevant tonal components. However, there is a difference between booming sensation and pitch perception according to frequency change of tonal component. In this study, subjective listening test using a tracking method was performed to find the difference limen for just noticeable change of booming sensation in frequency. 20 Koreans and 10 Japanese were participated in this test and the results obtained from Koreans and Japanese were compared with each other. Finally, 5Hz was determined as the difference limen for just noticeable change of booming sensation in frequency, and by applying this value to booming analysis using pitch concept, it was confirmed that the degree of prediction of booming sensation was improved.

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Structural Vibration Analysis of Electronic Equipment for Satellite under Launch Environments (발사환경에 대한 위성 전장품의 구조진동 해석)

  • 정일호;박태원;한상원;서종휘;김성훈
    • Journal of the Korean Society for Precision Engineering
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    • v.21 no.8
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    • pp.120-128
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    • 2004
  • The impulse between launch vehicle and atmosphere can generate a lot of noise and vibration during the process of launching a satellite. Structurally, the electronic equipment of a satellite consists of an aluminum case containing PCB. Each PCB has resistors and IC. Noise and vibration of the wide frequency band are transferred to the inside of fairing, subsequently creating vibration of the electronic equipment of the satellite. In this situation, random vibration can cause malfunctioning of the electronic equipment of the device. Furthermore, when the frequency of random vibration meets with natural frequency of PCB, fatigue fracture may occur in the part of solder joint. The launching environment, thus, needs to be carefully considered when designing the electronic equipment of a satellite. In general, the safety of the electronic equipment is supposed to be related to the natural frequency, shapes of mode and dynamic deflection of PCB in the electronic equipment. Structural vibration analysis of PCB and its electronic components can be performed using either FEM or vibration test. In this study, the natural frequency and dynamic deflection of PCB are measured by FEM, and the safety of the electronic components of PCB is evaluated according to the results. This study presents a unique method for finite element modeling and analysis of PCB and its electronic components. The results of FEA are verified by vibration test. The method proposed herein may be applicable to various designs ranging from the electronic equipments of a satellite to home electronics.

A Study on the Development of Academic Library Web Style Guide (대학도서관 웹 스타일 가이드 개발에 관한 연구)

  • Lee, Ju-Hyurn;Lee, Eung-Bong
    • Journal of the Korean Society for information Management
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    • v.22 no.2 s.56
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    • pp.103-124
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    • 2005
  • This study analyzed the web style guide of five foreign university library web sites and extracted the web site components of main university libraries in ten domestic areas and then drew the common factors from the components. This study also found out the unity and rule in the general design trends of university library web sites. In order to do this, the results for the usability and accessibility of university library web sites were applied to this study. And being based on it. this study presents the web style guide components of the university libraries which are the factors to endow the web site with the consistently visual identity.

Effects of Angular Velocity Components on Head Vibration Measurements (각속도 성분들이 머리진동 측정치에 미치는 영향)

  • Park Yong Hwa;Cheung Wan Sup
    • The Journal of the Acoustical Society of Korea
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    • v.24 no.1E
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    • pp.7-15
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    • 2005
  • This paper addresses issues encountered in measuring the general, 6-degree-of-freedom motion of a human head, A complete mathematical description for measuring the head motion using the six-accelerometer configured bite-bar is suggested, The description shows that the six-axis vibration cannot be completely obtained without the roll, pitch and yaw angular velocity components, A new method of estimating the three orthogonal (roll, pitch and yaw) angular velocities from the six acceleration measurements is introduced. The estimated angular velocities are shown to enable further quantitative error analysis in measuring the translational and angular accelerations at the head. To make this point clear, experimental results are also illustrated in this paper. They show that when the effects of angular velocities are neglected in the head vibration measurement the maximum percentage errors were observed to be more than $3 \%$ for the angular acceleration of the head and to be close to $5 \%$ for its translational acceleration, respectively. It means that the inclusion of all the angular velocity dependent acceleration components gives more accurate measurement of the head vibration.

Chemical Composition of RR Lyn - an Eclipsing Binary System with Am and λ Boo Type Components

  • Jeong, Yeuncheol;Yushchenko, Alexander V.;Doikov, Dmytry N.;Gopka, Vira F.;Yushchenko, Volodymyr O.
    • Journal of Astronomy and Space Sciences
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    • v.34 no.2
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    • pp.75-82
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    • 2017
  • High-resolution spectroscopic observations of the eclipsing binary system RR Lyn were made using the 1.8 m telescope at the Bohuynsan Optical Astronomical Observatory in Korea. The spectral resolving power was R = 82,000, with a signal to noise ratio of S/N > 150. We found the effective temperatures and surface gravities of the primary and secondary components to be equal to $T_{eff}$ = 7,920 & 7,210 K and log(g) = 3.80 & 4.16, respectively. The abundances of 34 and 17 different chemical elements were found in the atmospheric components. Correlations between the derived abundances with condensation temperatures and the second ionization potentials of these elements are discussed. The primary component is a typical metallic line star with the abundances of light and iron group elements close to solar values, while elements with atomic numbers Z > 30 are overabundant by 0.5-1.5 dex with respect to solar values. The secondary component is a ${\lambda}$ Boo type star. In this type of stars, CNO abundances are close to solar values, while the abundance pattern shows a negative correlation with condensation temperatures.

Prediction of Strain Energy Function for Butyl Rubbers (부틸고무의 변형률 에너지 함수 예측)

  • Kim Nam-Woong;Kim Kug-Weon
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.30 no.10 s.253
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    • pp.1227-1234
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    • 2006
  • Up to now, several mathematical theories based on strain energy functions have been developed for rubber materials. These theories, coupled with the finite element method, can be used very effectively by engineers to analyze and design rubber components. However, due to the complexities of the mathematical formulations and the lack of general guidelines available fur the analysis of rubber components, it is a formidable task for an engineer to analyze rubber components. In this paper a method for predicting strain energy functions - Neo-Hookean model and Mooney-Rivlin model - from the hardness using the empirical equation without any experiment is discussed. First based on the elasticity theories of rubber, the relation between stress and strain is defined. Then for the butyl rubbers, the model constants of Neo-Hookean model and Mooney-Rivlin model are calculated from uniaxial tension tests. From the results, the usefulness of the empirical equation to estimate elastic modulus from hardness is confirmed and, fur Mooney-Rivlin model, the predicted and the experimental model constants are compared and discussed.