Barrett, The Honors College at Arizona State University proudly showcases the work of undergraduate honors students by sharing this collection exclusively with the ASU community.

Barrett accepts high performing, academically engaged undergraduate students and works with them in collaboration with all of the other academic units at Arizona State University. All Barrett students complete a thesis or creative project which is an opportunity to explore an intellectual interest and produce an original piece of scholarly research. The thesis or creative project is supervised and defended in front of a faculty committee. Students are able to engage with professors who are nationally recognized in their fields and committed to working with honors students. Completing a Barrett thesis or creative project is an opportunity for undergraduate honors students to contribute to the ASU academic community in a meaningful way.

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Description

Color Theory is an abstract strategy game, a genre that emphasizes decision-making and strategic thinking without elements of luck or hidden information. This game utilizes primary and secondary colors to represent players' pieces, with the objective to move each player's pawns to the opposite same-colored spaces on the board. Developed

Color Theory is an abstract strategy game, a genre that emphasizes decision-making and strategic thinking without elements of luck or hidden information. This game utilizes primary and secondary colors to represent players' pieces, with the objective to move each player's pawns to the opposite same-colored spaces on the board. Developed through rigorous playtesting, Color Theory introduces a color ranking track that dictates the synergy between the move and jump actions. Players must strategically maneuver their pawns, while also taking into account the position of their colors on the ranking track. It strikes a balance between clever movement and player interaction, providing an accessible and enjoyable gaming experience. In the end, the first player to successfully move three of their six pawns to their opposite spaces wins the game.

ContributorsAlsheikh, Jad (Author) / Loebenberg, Abby (Thesis director) / Mack, Robert (Committee member) / Barrett, The Honors College (Contributor) / School of Life Sciences (Contributor)
Created2023-05
Description

This honors thesis explores the potential use of LoRa technology for detecting moisture in a diaper. Tests of both onboard and external humidity sensors coupled with LoRa transmission are incredibly promising. The potential scale of the final device also shows much promise, measuring smaller than a U.S. dime. However, the

This honors thesis explores the potential use of LoRa technology for detecting moisture in a diaper. Tests of both onboard and external humidity sensors coupled with LoRa transmission are incredibly promising. The potential scale of the final device also shows much promise, measuring smaller than a U.S. dime. However, the estimated cost for producing these proof-of-concept units in bulk is $19.41 per unit. While this is believed to be a pessimistic estimate of the price, the cost of production remains too high regardless for large-scale implementation. The thesis concludes by emphasizing the need for further research and development to optimize the design and reduce the cost of production. Despite the limitations imposed by price, the idea of using LoRa in detecting moisture in a diaper remains intriguing and promising, however, RFID technology has many advantages, such as size, cost, and passive power features.

ContributorsBetlaf, Garrett (Author) / Aberle, James (Thesis director) / McDonald, James (Committee member) / Barrett, The Honors College (Contributor) / Electrical Engineering Program (Contributor)
Created2023-05