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Self-Evaluation Maintenance Model01:29

Self-Evaluation Maintenance Model

The Self-Evaluation Maintenance (SEM) model offers a psychological framework to understand how individuals’ self-esteem is influenced by the achievements of others, particularly those with whom they share close personal bonds. The SEM model operates when personal rather than social identity guides individuals. Central to this model is the notion that individuals have an inherent desire to preserve a favorable self-image, which is continuously shaped by interpersonal comparisons and...
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Nursing Evaluation

The evaluation stage signals the end of the nursing process. The nurse gathers evaluative data to assess whether or not the patient has attained the expected results. Whereas the nurse collects data in the nursing assessment to identify the patient's health concerns, the evaluation stage data determines if the indicated health issues are resolved. Evaluative data collection includes two sections: the data acquired to evaluate patient outcomes and the time criteria for data collection.
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Related Experiment Video

Updated: Jul 2, 2026

Measuring the Functional Abilities of Children Aged 3-6 Years Old with Observational Methods and Computer Tools
11:29

Measuring the Functional Abilities of Children Aged 3-6 Years Old with Observational Methods and Computer Tools

Published on: June 20, 2020

Development and evaluation of a dynamic web-based application.

Yichuan Hsieh1, Patricia Flatley Brennan

  • 1Doctoral Candidate, School of Nursing, University of Wisconsin-Madison, USA.

AMIA ... Annual Symposium Proceedings. AMIA Symposium
|August 13, 2008
PubMed
Summary
This summary is machine-generated.

Consumer health informatics (CHI) applications need dynamic structures for rapidly advancing genetics information. A database-driven Web CHI application was developed to improve timely information delivery.

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Area of Science:

  • Consumer Health Informatics
  • Genetics
  • Web Application Development

Background:

  • Traditional consumer health informatics (CHI) applications on the Web were commonly built using Hypertext Markup Language (HTML).
  • The rapid advancement of genetics knowledge necessitates timely updates to health information.
  • Existing HTML-based CHI applications face challenges in efficiently delivering updated genetic information to the public.

Purpose of the Study:

  • To present the development process of a dynamic, database-driven Web CHI application.
  • To address the limitations of static HTML in managing rapidly evolving genetics information.
  • To facilitate more efficient and timely delivery of genetics knowledge through an improved CHI platform.

Main Methods:

  • Designing a database structure to store and manage genetics information.
  • Developing a dynamic Web application using database-driven content delivery.
  • Implementing features for efficient information retrieval and updates.

Main Results:

  • A functional dynamic database-driven Web CHI application was successfully developed.
  • The new application architecture allows for more efficient content updates compared to traditional HTML.
  • The system is designed to better accommodate the evolving nature of genetics information.

Conclusions:

  • Dynamic, database-driven Web applications are superior to static HTML for managing rapidly changing health information, particularly in fields like genetics.
  • The developed CHI application provides a scalable and efficient model for disseminating up-to-date health knowledge.
  • This approach enhances the ability of consumer health informatics to keep pace with scientific advancements.