This collection includes both ASU Theses and Dissertations, submitted by graduate students, and the Barrett, Honors College theses submitted by undergraduate students. 

Displaying 1 - 2 of 2
Filtering by

Clear all filters

147806-Thumbnail Image.png
Description

The product our team is commercializing is a NASA designed technology designed to store waste in space. This product works on Earth as well and has applicable multi-use capabilities. Throughout the last several months, the team has identified different markets to determine which of them would experience the most value

The product our team is commercializing is a NASA designed technology designed to store waste in space. This product works on Earth as well and has applicable multi-use capabilities. Throughout the last several months, the team has identified different markets to determine which of them would experience the most value from this product. The team conducted 25 interviews to grasp the landscape of the different markets related to this product. After a thorough analysis, it was found that vendors who support the disposal of different types of waste and sludge would be the best fit for this product. Vendors like Waste Management, Sharps, Stericycle, Sludge USA, etc.,” have large contracts with hospitals, biotech firms, labs, and cities to manage a wide spectrum of waste. The companies bring value to their clients by making a difficult process easier. However, the process is not seamless and, with certain types of waste, there are significant costs associated with not following an exact process. Throughout this process and interviews with companies like Sludge USA and Waste Management, the team identified a niche market in supporting sludge processes. Caked: Sludge Management is designed to bring value to this market by making their waste disposal process seamless, and saving these institutions significant costs in the long run, while creating additional value.

ContributorsShapiro, Dylan Michael (Co-author) / Brinson, Stacy (Co-author) / Byrne, Jared (Thesis director) / Patel, Manish (Committee member) / Sebold, Brent (Committee member) / Industrial, Systems & Operations Engineering Prgm (Contributor, Contributor) / Industrial, Systems & Operations Engineering Prgm (Contributor, Contributor) / Barrett, The Honors College (Contributor)
Created2021-05
131203-Thumbnail Image.png
Description
While golf has been around for centuries, the technology associated with the game has evolved significantly in an attempt to improve golfers’ scores. Specifically, researchers at Arizona State University (ASU) have looked at the dimple patterns on golf balls. They found that various dimple shapes, sizes, and patterns can have

While golf has been around for centuries, the technology associated with the game has evolved significantly in an attempt to improve golfers’ scores. Specifically, researchers at Arizona State University (ASU) have looked at the dimple patterns on golf balls. They found that various dimple shapes, sizes, and patterns can have a serious impact on the flight of the ball, thus drastically improving the golfer’s game. This patented technology is the basis of the founding of Dimple Tech, a golf ball technology startup. Dimple Tech was founded by three ASU students in an effort to license the patent to the major golf ball manufacturers (Callaway, Titleist, TaylorMade, etc.). The ultimate goal of this startup was to build traction in any way possible, so the team made a video pitch that was sent to the aforementioned manufacturers. Although no traction came out of it, the project was a success as a market for this product was established and the company has a competitive advantage over other golf companies.
ContributorsStarostecki, Cameron (Co-author) / Kendall, William (Co-author) / Redmond, Michael (Co-author) / Byrne, Jared (Thesis director) / Sebold, Brent (Committee member) / Mechanical and Aerospace Engineering Program (Contributor, Contributor) / Barrett, The Honors College (Contributor)
Created2020-05