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Description
Issues of visitor safety are a concern among park and recreation managers. As urban parks receive a variety of user groups, understanding perceptions of safety among specific groups becomes pertinent when managing for optimal experiences. This study examines trails runners at two mountain parks in a large southwestern city. Data

Issues of visitor safety are a concern among park and recreation managers. As urban parks receive a variety of user groups, understanding perceptions of safety among specific groups becomes pertinent when managing for optimal experiences. This study examines trails runners at two mountain parks in a large southwestern city. Data was collected in the fall of 2013 and the spring of 2014 using a five page, onsite, self-administered, exit survey in English. Questions addressed trail runner demographics, level of trail running experience, perceptions of safety, and support for safety related management actions. Of specific interest was how perceptions of safety varied by trail runner demographics and level of experience. 102 trail runners participated in the study. Data analysis was completed using an independent samples t-test to compare sample characteristics with perceptions of safety and safety related management actions. The results include mixed opposition and support for specific preventive management actions. Few significant differences in responses were found between gender, age and specialization. The findings also suggest trail runners primarily learned about these recreation areas through local knowledge and "word of mouth" and not through managers. Further implications of these finding is discussed. Contributions of the study are twofold. First, results provide managers with information regarding trail runners at the parks. Second, findings serve to extend the literature on visitor safety at park and recreation settings in urban areas.
ContributorsNorwil, Evan Juilian (Author) / Budruk, Megha (Thesis director) / Larsen, Dale (Committee member) / Barrett, The Honors College (Contributor) / Harrington Bioengineering Program (Contributor)
Created2014-05
Description
Every engineer is responsible for completing a capstone project as a culmination of accredited university learning to demonstrate technical knowledge and enhance interpersonal skills, like teamwork, communication, time management, and problem solving. This project, with three or four engineers working together in a group, emphasizes not only the importance of

Every engineer is responsible for completing a capstone project as a culmination of accredited university learning to demonstrate technical knowledge and enhance interpersonal skills, like teamwork, communication, time management, and problem solving. This project, with three or four engineers working together in a group, emphasizes not only the importance of technical skills acquired through laboratory procedures and coursework, but the significance of soft skills as one transitions from a university to a professional workplace; it also enhances the understanding of an engineer's obligation to ethically improve society by harnessing technical knowledge to bring about change. The CC2541 Smart SensorTag is a device manufactured by Texas Instruments that focuses on the use of wireless sensors to create low energy applications, or apps; it is equipped with Bluetooth Smart, which enables it to communicate wirelessly with similar devices like smart phones and computers, assisting greatly in app development. The device contains six built-in sensors, which can be utilized to track and log personal data in real-time; these sensors include a gyroscope, accelerometer, humidifier, thermometer, barometer, and magnetometer. By combining the data obtained through the sensors with the ability to communicate wirelessly, the SensorTag can be used to develop apps in multiple fields, including fitness, recreation, health, safety, and more. Team SensorTag chose to focus on health and safety issues to complete its capstone project, creating applications intended for use by senior citizens who live alone or in assisted care homes. Using the SensorTag's ability to track multiple local variables, the team worked to collect data that verified the accuracy and quality of the sensors through repeated experimental trials. Once the sensors were tested, the team developed applications accessible via smart phones or computers to trigger an alarm and send an alert via vibration, e-mail, or Tweet if the SensorTag detects a fall. The fall detection service utilizes the accelerometer and gyroscope sensors with the hope that such a system will prevent severe injuries among the elderly, allow them to function more independently, and improve their quality of life, which is the obligation of engineers to better through their work.
ContributorsMartin, Katherine Julia (Author) / Thornton, Trevor (Thesis director) / Goryll, Michael (Committee member) / Electrical Engineering Program (Contributor) / School of Film, Dance and Theatre (Contributor) / Barrett, The Honors College (Contributor)
Created2015-12