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Related Concept Videos

Normal and Tangetial Components: Problem Solving01:24

Normal and Tangetial Components: Problem Solving

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Consider a man with a mass of 70 kg seated in a chair connected to a pin support through a member BC. If the man maintains an upright position, the task is to determine the horizontal and vertical reactions of the chair on the man when the member makes a 45° angle with the horizontal. At this moment, the man has a speed of 5 m/s, increasing at a rate of 1 m/s².
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Updated: Mar 11, 2026

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HTO - A complementary ergonomics approach.

Anette Karltun1, Johan Karltun1, Martina Berglund2

  • 1Dept. of Industrial Engineering and Management, Jönköping University, Sweden; Unit of Ergonomics, School of Technology and Health, KTH Royal Institute of Technology, Sweden.

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|November 29, 2016
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Summary

The human-technology-organization (HTO) concept clarifies human factors and ergonomics potential in systems. HTO aids in designing systems to enhance health and performance.

Keywords:
ActivityHuman-technology-organizationInteractionSystems approach

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Area of Science:

  • Human Factors and Ergonomics
  • Systems Engineering
  • Organizational Psychology

Background:

  • Human factors and ergonomics (HFE) offers significant value in systems analysis, design, and improvement.
  • Communicating the full potential of HFE can be challenging.
  • A structured approach is needed to bridge this communication gap.

Purpose of the Study:

  • To define the human-technology-organization (HTO) concept.
  • To illustrate how HTO enhances the understanding and communication of HFE.
  • To demonstrate HFE's potential in systems development.

Main Methods:

  • The paper defines the human-technology-organization (HTO) concept.
  • Empirical examples from research, development, and teaching experiences are presented.
  • HTO's application as a conceptual model, analysis framework, meta-methodology, pedagogical tool, and design tool is explored.

Main Results:

  • The HTO concept effectively supports understanding and communication of HFE.
  • HTO serves as a versatile tool for analysis, methodology, pedagogy, and design.
  • Empirical examples showcase HTO's practical utility in diverse settings.

Conclusions:

  • The HTO concept provides a robust framework for integrating HFE principles into systems.
  • HTO guides the design of systems that optimize health, individual performance, and overall system performance.
  • There is substantial potential for advancing HTO theory, applications, and methodologies.