• Title/Summary/Keyword: Appropriate

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Psychometric Properties of the Vocational Ability Scale in Individuals with Intellectual Disabilities

  • Park, Eun-Young
    • International Journal of Contents
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    • v.15 no.3
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    • pp.1-6
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    • 2019
  • The purpose of this study was to identify the psychometric properties of the vocational ability scale used in the 8th Panel Survey of Employment for the Disabled in Korea by using the Rasch model. The sample data was collected from 398 individuals with intellectual disabilities. Item fitness, item difficulty, the appropriateness of the rating scale, and the separation index of the vocational ability scale were evaluated. All 15 items show an appropriate fitness level. The analysis of item difficulty indicate that modifications are required. Specifically, the need for the addition of less difficult question items is identified. The use of a 5-point rating scale is shown to decrease the test difficulty in terms of clarity and readability when appropriate and a 4-point modification is also determined as appropriate. With respect to the outcomes of the analysis, the person separation reliability value and separation index are high, and the reliability of the items is also high.

An Overview of Time Estimation in the Appraisal of Completeness for Software

  • Kim, Yukyong
    • Journal of Software Assessment and Valuation
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    • v.16 no.1
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    • pp.21-26
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    • 2020
  • The completeness appraisal of software is performed in various forms, such as assessing the completion level in the development process, calculating the defect rate, estimating the development cost, and calculating the redevelopment cost. Along with this, the problem that is often dealt with is estimation of the development time. Even in a dispute over completeness due to delays in software development, issues of calculating an appropriate development time required to develop a delivery software or a development time required for change requests are often included in the appraisal request. In this paper, we introduce the procedure and method for estimating the appropriate project time of software development so that the appraiser can be applied to the appraisal work for determining the completeness. The method is based on the manual for calculating the appropriate project period of software development project.

A Study on the Prediction Model of Total Construction Period according to the Type of Machine Learning Regression (머신러닝 회귀분석 유형에 따른 총 공사기간 예측 모델에 관한 연구)

  • Kang, Yun-Ho;Yun, Seok-Heon
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2023.05a
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    • pp.361-362
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    • 2023
  • In construction work, there is often a difference between the estimated construction period and the actual construction period. Accordingly, the project may be delayed from the scheduled date, leading to huge losses due to problems such as increased costs during construction. In this way, it is important to calculate the appropriate construction period at the project planning stage in construction work. To solve this problem, we would like to study a model that will increase the accuracy of the scheduled construction period at the project planning stage. This study compared and analyzed linear regression, Lasso regression, Ridge regression among the types of regression analysis to select an appropriate construction period prediction model to secure an appropriate construction period at the project planning stage to reduce problems during construction.

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A Study on Cost Standards for Securing Appropriate Construction Costs for Small-Scale Construction Sites (소규모 시공현장 적정공사비 확보를 위한 원가기준 마련 연구)

  • Oh, Jae-Hoon;An, Bang-Yul
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2023.05a
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    • pp.347-348
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    • 2023
  • In construction sites, small-scale construction quantities or limited work hours below the daily work volume may occur due to on-site conditions. For small-scale quantities, the input of equipment and labor is designed based on an hourly basis in the invoice, resulting in a difference from the actual cost. In this study, we aim to explore solutions from the perspective of construction cost standards to secure appropriate construction costs for small-scale and time-limited construction sites. Firstly, to preserve the basic construction costs on-site, we established standards where half the cost would be charged for construction quantities below four hours and a full day's cost would be designed for construction quantities between four to eight hours. Additionally, realistic construction cost calculation standards are expected to be provided by realizing a surcharge rate for work hour limitations to secure appropriate construction costs.

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Analysis of defense procurement agency Study on the appropriate brokerage fee and effectiveness (군수품 무역대리점의 효과성과 적정 중개수수료에 관한 연구)

  • Jeong, Suk-Jae;Kim, Jun Han
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.7
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    • pp.184-190
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    • 2020
  • In this study, two analyses were conducted in relation to the defense procurement agency. The first was a questionnaire survey conducted by defense business personnel to quantitatively measure the effectiveness of the defense procurement agency's utilization. In the second, the appropriate standard for brokerage fees was developed, the actual work of the defense procurement agency in overseas sales was surveyed, and the brokerage profit of the general product was applied to the defense procurement agency's brokerage profit data. Using the defense procurement agency was 1.07 times more effective than not using it, and the appropriate brokerage fee varied according to the project size. For medium / small projects, 5.1 ~ 8.7% of the total project cost is an appropriate brokerage fee, compared to 1.2 ~ 1.8% for big-scale projects. The government's appropriate brokerage fee is not fixed, but is elastically applied according to the size of the total project cost, and it is appropriate to analyze the characteristics of the project and identify and adjust the required activity cost in advance.

Selection of Transition Point through Calculation of Cumulative Toxic Load -Focused on Incheon Area- (누적독성부하 산정을 통한 주민소산 전환시점 선정에 관한 연구 -인천지역을 중심으로-)

  • Lee, Eun Ji;Han, Man Hyeong;Chon, Young Woo;Lee, Ik Mo;Hwang, Yong Woo
    • Journal of the Korean Society of Safety
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    • v.35 no.6
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    • pp.15-24
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    • 2020
  • With the development of the chemical industry, the chemical accident is increasing every year, thereby increasing the risk of accidents caused by chemicals. The Ministry of Environment provides the criteria for determining shelter-in-place or outdoor evacuation by material, duration of accident, and distance from the toxic substance leak. However, it is hard to say that the criteria for determining the transition point are not clear. Transition point mean the time that evacuation method is switched from shelter-in-place to outdoor evacuation. So, the purpose of this study was to calculate appropriate transition point by comparing the cumulative toxic load. Namdong-gu in Incheon Metropolitan City was finally selected as the target area, considering the current status of the population of Incheon Metropolitan City in 2016 and the statistical survey of chemicals in 2016. The target materials were HCl, HF, and NH3. Modeling was simulated by ALOHA and performed assuming that the entire amount would be leaked for 10 min. Residents' evacuation scenarios were assumed to be shelter-in-place, immediate outdoor evacuation, and outdoor evacuation at an appropriate time after shelter-in-place. Based on the above method, the appropriate transition point from residents located in A(800 m away), B(1,200 m away), C(1,400 m away) and D(2,200 m away) was identified. In HCl, appropriate transition point was after 15 min, after 16 min, after 17 min, after 20 min in order by A, B, C and D. In HF, appropriate transition point was before 1 min or after 16 min, before 4 min or after 19 min, before 5 min or after 20 min, before 14 min or after 26 min in order by A, B, C and D. In NH3, appropriate transition point at A was before 4 min or after 16. Others are not in chemical cloud. This study confirmed the transition point to minimize the cumulative toxic load can be obtained by quantitative method. Through this, it might be possible to select evacuation method quantitatively that cumulative toxic load are minimal. In addition, if the shelter-in-place is maintained without transition to outdoor evacuation, the cumulative toxic load will increase more than outdoor evacuation. Therefore, it was confirmed that actions to reduce the concentration of chemicals in the room were necessary, such as conducting ventilation after the chemical cloud passed through the site.

Appropriate Technology, Responding to the COVID-19 Pandemic - Redefined Roles in a Public Health Crisis (Part II) (COVID-19 대유행에 대응하는 적정기술 : 보건 위기에서 재정의된 역할 - 파트 2)

  • Pyun, Nayoon;Lee, Sungwoo;Suh, Jungwoo;Kim, Jaeeun;Jang, Dongyoon;Shin, Kwanwoo
    • Journal of Appropriate Technology
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    • v.6 no.2
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    • pp.256-270
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    • 2020
  • The collapse of the medical and healthcare system in the pandemic is resulting in the voluntary participation of civil society and a new way of responding. Some of new countermeasure can be immediately utilized at the forefront of the health crisis. Appropriate technology is no longer an intermediate technology, demonstrating its role as a technology capable of overcoming the crisis of not only developing countries but also any countries where the health system has collapsed. In this Part 2, examples of health fields such medical devices as negative pressure chambers and ventilators, diagnostic chips, and diagnostic techniques, are being discussed as a quick response to the collapse of health systems under COVID-19, within the framework of appropriate technologies. Finally, the important role of scientists and engineers is discussed for the prevention of severe impacts on the vulnerable people in terms of socioeconomic status.

Development and Implementation of Blockchain Appropriate Technology Science School Program of Europe-Korea Conference on Science & Technology (유럽-한인 과학기술학회의 블록체인 적정기술 과학교실 프로그램 개발과 적용)

  • Kim, Gahyoung;Choi, Kevin Kyeong-iI;Kim, Dowon;Son, Muntak;Kim, Byoung-Yoon
    • Journal of Appropriate Technology
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    • v.6 no.2
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    • pp.190-199
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    • 2020
  • The purpose of this study is to develop and implement the Appropriate Technology Science School program (ATSS) for youth operated by the Europe-Korea Conference on Science & Technology (EKC) since 2016. The development process consisted of pre-online management meetings, online and offline tutor training, operation of ATSS for youth, and satisfaction surveys. As a result of the development, the management team selected the mission-solving theme of "Transforming village using blockchain technology" through a pre-online meeting. The contents were reorganized according to the level of the participating tutees, and various learning activities such as co-building activities, games, and plays were newly introduced and developed first, and the programs developed through tutor training were demonstrated and improved. A total of 38 tutees and tutors from 6 countries participated in the 2018 ATSS. As a result, participants showed positive satisfaction overall. Tutees showed interest in dome co-building activities and hash function calculation activities, and tutors showed interest in lectures and monopoly games related to blockchain technology. The development and of the 2018 ATSS will contribute to the improvement of expertise in the operation of the EKC ATSS in the future to the management team. It will be an opportunity for tutors to experience that high-tech science and technology have a good impact on appropriate technology for the third world and community society. In addition, Tutees will be provided with an opportunity to indirectly experience the local situation and community society through a role play on the impact of blockchain technology on African villages.

Appropriate Smart Factory : Demonstration of Applicability to Industrial Safety (적정 스마트공장: 산업안전 기술로의 적용 가능성 실증)

  • Kwon, Kui-Kam;Jeong, Woo-Kyun;Kim, Hyungjung;Quan, Ying-Jun;Kim, Younggyun;Lee, Hyunsu;Park, Suyoung;Park, Sae-Jin;Hong, SungJin;Yun, Won-Jae;Jung, Guyeop;Lee, Gyu Wha;Ahn, Sung-Hoon
    • Journal of Appropriate Technology
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    • v.7 no.2
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    • pp.196-205
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    • 2021
  • As industrial safety increases, various industrial accident prevention technologies using smart factory technology are being studied. However, small and medium enterprises (SMEs), which account for the majority of industrial accidents, are having difficulties in preventing industrial accidents by applying these smart factory technologies due to practical problems. In this study, customized monitoring and warning systems for each type of industrial accident were developed and applied to the actual field. Through this, we demonstrated industrial accident prevention technology through appropriate smart factory technology used by SMEs. A customized monitoring system using vision, current, temperature, and gas sensors was established for the four major disaster types: worker body access, short circuit and overcurrent, fire and burns due to high temperature, and emission of hazardous gas. In addition, a notification method suitable for each work environment was applied so that the monitored risk factors could be recognized quickly, and real-time data transmission and display enabled workers and managers to understand the disaster risk effectively. Through the application and demonstration of these appropriate smart factory technologies, the spread of these industrial safety technologies is to be discussed.