• 제목/요약/키워드: Behavior Change Theory

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약물사용자의 치료서비스 이용 의도 예측 연구 - 확장된 건강서비스이용행동모형의 적용 - (A Study on Drug Users' Intention to Use Treatment Services - Application of Extended Behavioral Model of Health Services Use -)

  • 김낭희
    • 한국사회복지학
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    • 제69권3호
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    • pp.165-191
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    • 2017
  • 본 연구는 국내 약물사용자의 치료서비스 이용 의도에 대한 주요 예측요인을 규명하는 데 목적이 있다. 건강서비스이용행동모형에 계획행동이론을 수렴한 확장된 건강서비스이용행동모형을 이론적 틀로 하여, 약물사용자의 개인 특성 요인(선행, 가능, 욕구요인)과 약물중독 치료서비스 이용에 대한 태도, 주관적 규범, 지각된 행동통제감이 약물중독 치료서비스 이용 의도에 미치는 영향을 분석하였다. 분석결과, 약물사용자의 개인 특성 중 치료서비스 이용 의도에 직 간접적으로 유의한 영향을 미치는 요인은 선행요인 중 성별, 과거치료경험, 그리고 욕구요인 중 정신과적 진단, 불안 우울, 약물남용심각도로 나타났다. 계획행동이론의 설명 요인 중 치료서비스 이용 의도에 통계적으로 유의한 영향을 미치는 요인은 주관적 규범과 지각된 행동통제감으로 분석되었다. 본 연구결과를 통해 약물사용자의 약물중독 치료서비스 이용 증진을 위하여 여성에 대한 고려, 긍정적 치료 노출 확대, 치료서비스에 대한 주관적 규범 및 지각된 행동통제감 강화 등의 노력이 필요함을 확인하였다.

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Wave dispersion analysis of rotating heterogeneous nanobeams in thermal environment

  • Ebrahimi, Farzad;Haghi, Parisa
    • Advances in nano research
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    • 제6권1호
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    • pp.21-37
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    • 2018
  • In the present article, wave dispersion behavior of a temperature-dependent functionally graded (FG) nanobeam undergoing rotation subjected to thermal loading is investigated according to nonlocal strain gradient theory, in which the stress numerates for both nonlocal stress field and the strain gradient stress field. The small size effects are taken into account by using the nonlocal strain gradient theory which contains two scale parameters. Mori-Tanaka distribution model is considered to express the gradually variation of material properties across the thickness. The governing equations are derived as a function of axial force due to centrifugal stiffening and displacements by applying Hamilton's principle according to Euler-Bernoulli beam theory. By applying an analytical solution, the dispersion relations of rotating FG nanobeam are obtained by solving an eigenvalue problem. Obviously, numerical results indicate that various parameters such as angular velocity, gradient index, temperature change, wave number and nonlocality parameter have significant influences on the wave characteristics of rotating FG nanobeams. Hence, the results of this research can provide useful information for the next generation studies and accurate deigns of nanomachines including nanoscale molecular bearings and nanogears, etc.

Vibrational characteristics of multi-phase nanocomposite reinforced circular/annular system

  • Zhou, Changlin;Zhao, Yi;Zhang, Ji;Fang, Yuan;Habibi, Mostafa
    • Advances in nano research
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    • 제9권4호
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    • pp.295-307
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    • 2020
  • The vibrational characteristics of Multi-Phase Nanocomposite (MPC) reinforced annular/circular plate under initially stresses are presented using the state-space formulation based on three-dimensional elasticity theory (3D-elasticity theory) and Differential Quadrature Method (DQM). The MPC reinforced annular/circular plate is under initial lateral stress and composed of multilayers with Carbon Nanotubes (CNTs) uniformly dispersed in each layer, but its properties change layer-by-layer along the thickness direction. The State-Space based Differential Quadrature Method (SS-DQM) is presented to examine the frequency behavior of the current structure. Halpin-Tsai equations and fiber micromechanics are used in the hierarchy to predict the bulk material properties of the multi-scale composite. A singular point is investigated for modeling the circular plate. The CNTs are supposed to be randomly oriented and uniformly distributed through the matrix of epoxy resin. Afterward, a parametric study is done to present the effects of various types of sandwich circular/annular plates on frequency characteristics of the MPC reinforced annular/circular plate using 3D-elasticity theory.

Thermal post-buckling behavior of imperfect temperature-dependent sandwich FGM plates resting on Pasternak elastic foundation

  • Barka, Merbouha;Benrahou, Kouider Halim;Bakora, Ahmed;Tounsi, Abdelouahed
    • Steel and Composite Structures
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    • 제22권1호
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    • pp.91-112
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    • 2016
  • In this paper, post-buckling behavior of sandwich plates with functionally graded (FG) face sheets under uniform temperature rise loading is examined based on both sinusoidal shear deformation theory and stress function. It is supposed that the sandwich plate is in contact with an elastic foundation during deformation, which acts in both compression and tension. Thermo-elastic non-homogeneous properties of FG layers change smoothly by the variation of power law within the thickness, and temperature dependency of material constituents is considered in the formulation. In the present development, Von Karman nonlinearity and initial geometrical imperfection of sandwich plate are also taken into account. By employing Galerkin method, analytical solutions of thermal buckling and post-buckling equilibrium paths for simply supported plates are determined. Numerical examples presented in the present study discuss the effects of gradient index, sandwich plate geometry, geometrical imperfection, temperature dependency, and the elastic foundation parameters.

분무 주조 과공정 Al-Si 계 합금의 응력이완 및 Creep 천이 거동 (Load Relaxation and Creep Transition Behavior of a Spray Casted Hypereutectic Al-Si Alloy)

  • 김민수;방원규;박우진;장영원
    • 소성∙가공
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    • 제14권6호
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    • pp.502-508
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    • 2005
  • Hypereutectic Al-Si alloys have been regarded attractive for automotive and aerospace application, due to high specific strength, good wear resistance, high thermal stability, low thermal expansion coefficient and good creep resistance. Spray casting of hypereutectic Al-Si alloy has been reported to provide distinct advantages over ingot metallurgy (IM) or rapid solidification/powder metallurgy (RS/PM) process in terms of microstructure refinement. In this study, hypereutectic Al-25Si-2.0Cu-1.0Mg alloy was prepared by OSPREY spray casting process. The change of strain rate sensitivity and Creep transition were analyzed by using the load relaxation test and constant creep test. High temperature deformation behavior of the hypereutectic Al-Si alloy has been investigated by applying the internal variable theory proposed by Chang et al. Especially, the creep resistance of spray casted hypereutectic Al-Si alloy can be enhanced considerably by the accumulation of prestrain.

스핀오프 애니메이션 캐릭터의 역할과 욕구 변화에 대한 연구: 미니언즈와 장화신은 고양이 작품을 중심으로 (A Study on the Role and Desire Changes of Spin-off Animation Characters: Minions and Puss in Boots Cat Work Analysis)

  • 공현희
    • Journal of Information Technology Applications and Management
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    • 제31권4호
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    • pp.149-162
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    • 2024
  • This paper explored the characters in spin-off works that are becoming a hot topic not only in Korea but also in the world. I would like to find out whether there are changes in the character in the original and the character's character and behavior in the spin-off work, and if there are changes, for what reason the changes occur. The subjects of the study were "Puss in Boots" and "Minions," which released a number of spin-off works based on the original. As analysis tools, we used the five-step theory of need by Abraham H. Maslow and the behavioral model of Greimas. As a result, in the spin-off work, Minions and Puss have shifted away from the role of facilitator in the original and become subjective characters. According to Maslow's theory of needs, the analysis also confirmed that this appears as an action to satisfy the needs of belonging, love, respect, and self-realization beyond basic physiological and safety needs. This change allowed him to develop a more independent and proactive personality and behavior, and be at the center of the story. This is the result of reflecting the production team's intention and audience expectations to provide audiences with deeper characters and richer stories. is analyzed.

Effect of Neutral Solvent on the Phase Behavior of Polystyrene-block-Poly(n-butyl methacrylate) Copolymers

  • Li, Chaoxu;Li, Guang-Hua;Moon, Hong-Chul;Lee, Dong-Hyun;Kim, Jin-Kon;Cho, Jun-Han
    • Macromolecular Research
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    • 제15권7호
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    • pp.656-661
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    • 2007
  • The effects of a neutral solvent of dioctyl phthalate (DOP) on the phase behavior of symmetric polystyrene-block-poly(n-butyl methacrylate) copolymers (PS-b-PnBMA) were assessed herein. Closed-loop phase behavior with a lower disorder-to-order transition (LDOT) and an upper order-to-disorder transition (UODT) was observed for PS-b-PnBMA/DOP solution when the quantity of DOP was carefully controlled. When the molecular weight of PS-b-PnBMA became larger, the LDOT did not appreciably change at smaller quantities of DOP. With larger quantities of DOP, the reduction in the UODT is greater than the increase in the LDOT. This behavior is discussed in accordance with a molecular theory predicated on a compressible random-phase approximation.

자산형성프로그램을 이용한 저소득가정의 탄력성 형성 과정에서의 가정자원 관련 경험 (Experiences of Family Resources in Resilience Development Process for Low-Income Families Participating in Asset Building Program)

  • 김미영
    • Human Ecology Research
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    • 제55권3호
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    • pp.321-336
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    • 2017
  • This study examines the effect of family resources on low-income families by exploring their holistic experience of poverty to the formation of resilience. A grounded theory approach is utilized to structure process from their experience of poverty as well as the use of social welfare services to the formation of resilience. This study targets 17 families involved in the pilot project for the beneficiaries of an asset building program in Seoul. In accordance with open coding and a paradigm model by the result of axial coding, 86 concepts, 23 sub-category, and nine categories are produced. These categories are classified into the causal condition (a tough life due to poverty), contextual condition (being the recipient of an asset building program), intervening conditions (interpersonal resources and effects of accumulated time or experience), central phenomenon (a will to live and overcome poverty), actions/interactions (active behavior and change of attitude), and consequences (change of asset levels and increased efficacy in their lives). The integrating categories identify the core category as 'the process of making a resilient life out of the power to live' and a final process model is organized. The results suggest crucial implications to develop comprehensive policies to address poverty issues for low-income families with a strength-based approach.

Vibration of sandwich plates considering elastic foundation, temperature change and FGM faces

  • Mohammadzadeh, Behzad;Choi, Eunsoo;Kim, Dongkyun
    • Structural Engineering and Mechanics
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    • 제70권5호
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    • pp.601-621
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    • 2019
  • This study presents a comprehensive nonlinear dynamic approach to investigate the linear and nonlinear vibration of sandwich plates fabricated from functionally graded materials (FGMs) resting on an elastic foundation. Higher-order shear deformation theory and Hamilton's principle are employed to obtain governing equations. The Runge-Kutta method is employed together with the commercially available mathematical software MAPLE 14 to solve the set of nonlinear dynamic governing equations. Method validity is evaluated by comparing the results of this study and those of previous research. Good agreement is achieved. The effects of temperature change on frequencies are investigated considering various temperatures and various volume fraction index values, N. As the temperature increased, the plate frequency decreased, whereas with increasing N, the plate frequency increased. The effects of the side-to-thickness ratio, c/h, on natural frequencies were investigated. With increasing c/h, the frequencies increased nonlinearly. The effects of foundation stiffness on nonlinear vibration of the sandwich plate were also studied. Backbone curves presenting the variation of maximum displacement with respect to plate frequency are presented to provide insight into the nonlinear vibration and dynamic behavior of FGM sandwich plates.

Bending and stability information of cylindrical structures in the application of sports equipment

  • Xiaoyuan Liu;Radzliyana Radzuwan;Nadiah Diyana Tan Binti Abdullah
    • Advances in concrete construction
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    • 제16권4호
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    • pp.189-203
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    • 2023
  • This study investigates the bending and stability properties of cylindrical constructions, with a focus on their use in the design and implementation of sporting equipment. The work focuses on a cylindrical construction resembling nanomotors, similar to components seen in sports equipment, using mathematical modeling based on high-order beam theory and nonlocal strain gradient theory. The analysis provides important insights into the dynamic behavior of these systems, revealing light on the impact of numerous factors such as rotational velocity, section change rate, and structural dimensions. The results show a relationship between angular velocity growth and section change rate, which leads to an increase in fundamental frequency values. Furthermore, the research emphasizes the effect of structural factors on dynamic deflection, giving critical information for increasing the stability and performance of sporting equipment. This study adds to the area of sports engineering by providing a more nuanced understanding of how cylindrical constructions react under diverse settings. The results will help to guide the design and manufacturing processes of sports equipment, assuring improved stability and performance for players across a wide range of sports.