Related Experiment Video
Updated: Jan 26, 2026

Development of a Novel Task-oriented Rehabilitation Program using a Bimanual Exoskeleton Robotic Hand
Published on: May 20, 2020
Improving Stage of Change in an Employee Wellness Program
Alissa S Miller1, Sarah H Ailey1, Susan Weber Buchholz1
11 Rush University.
Abstract:
Physical activity readiness of front-line employees caring for adults with disabilities (N = 381) improved during a two-phase project based on stages of change (SOC) theory. In Phase 1, we assessed barriers to, and readiness for, participation in an employee wellness program. We collected data from workers using focus groups and a preintervention physical activity readiness survey. Focus groups (N = 14) identified barriers, including lack of communication about the employee wellness program. With respect to their SOC (N = 82), 7% were in precontemplation, 16% in contemplation, 52% preparation, 5% in action, and 20% in maintenance SOC. In Phase 2, we aimed to improve readiness for participation in the program. We used SOC-based employee Facebook group messages, a health education fair, and measurement through a postintervention physical activity readiness survey. The mean number of "views" in which the workers saw the 16 theory-based messages was 12.2 (range = 0-27). Fourteen adults and 17 children attended the fair. Postintervention survey results (N = 125) indicated physical activity readiness improvement with 1% in precontemplation, 21% in contemplation, 33% in preparation, 33% in action, and 12% in maintenance SOC.
Related Concept Videos
Global Climate Change
Work Done During Volume Change
Consider a gas confined to a cylinder fitted with a movable piston at one end. If the gas expands from volume V1 to volume V2, it exerts a force on the piston, such that the piston moves by a distance dr.
The work done by the gas on the piston can be expressed as
Net Change Theorem
Standard Entropy Change for a Reaction
Le Chatelier's Principle: Changing Temperature
To understand this phenomenon, consider the elementary reaction:
Application of Rates of Change

