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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Bioluminescent algae has long fascinated humans as a beautiful natural phenomenon. This creative project uses bioluminescent algae to push the limit of biomimicry, using the algae not as a model but as a technology. Through experimentation with algae samples and industrial design, two potential applications of bioluminescent algae as a

Bioluminescent algae has long fascinated humans as a beautiful natural phenomenon. This creative project uses bioluminescent algae to push the limit of biomimicry, using the algae not as a model but as a technology. Through experimentation with algae samples and industrial design, two potential applications of bioluminescent algae as a sustainable lighting technology were generated. One design focuses on indoor, private lighting, while the other focuses on outdoor, public lighting. Both outcomes attempt to solve problems generated by nighttime lighting including light pollution, wasted electricity usage, and negative impacts on human and environmental health while retaining the benefits of safety and convenience.

ContributorsFernald, Isabel (Author) / Shin, Dosun (Thesis director) / Feil, Magnus (Committee member) / The Design School (Contributor) / School of Sustainability (Contributor) / Barrett, The Honors College (Contributor)
Created2021-05
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Description
Drought is one of the most pressing issues affecting the future of the standard of living here in Phoenix. With the threat of water rationing and steep price hikes looming on the horizon for water customers in California, the desert southwest, and in drought-stricken communities worldwide, industrial designers are in

Drought is one of the most pressing issues affecting the future of the standard of living here in Phoenix. With the threat of water rationing and steep price hikes looming on the horizon for water customers in California, the desert southwest, and in drought-stricken communities worldwide, industrial designers are in a prime position to help improve the experience of water conservation so that consumers are willing to start taking conscious steps toward rethinking their relationship with water usage.
In a research group, several designers sought to understand the depth and complexity of this highly politicized issue by interviewing a wide variety of stakeholders, including sustainability experts, landscapers, water company executives, small business owners, reservoir forest rangers, and many more. Data synthesis led to the conclusion that residential water use is a lifestyle issue, and the only real way to conserve involves a significant shift in the collective idea of an “ideal” home—lawns, pools, and overwatered landscaping contribute to 70% of all water use by residences in the Phoenix area. The only real way to conserve involves increasing population density and creating communal green spaces.
DR. DISH is a dishwashing device that is meant to fit into the high-density living spaces that are rapidly being built in the face of the massive exodus of people into the world’s cities. To help busy apartment and condominium dwellers conserve water and time, DR. DISH converts a standard kitchen sink into a small dishwasher, which uses significantly less water than hand-washing dishes or rinsing dishes before putting them into a conventional dishwasher. Using advanced filtration technology and a powerful rinse cycle, a load dishes can be cleaned with about 2 gallons of water. Fully automating the dishwashing process also saves the user time and minimizes unpleasant contact with food residue and grease.
This device is meant to have a significant impact upon the water use of households that do not have a dishwasher, or simply do not use their dishwasher. With a low target price point and myriad convenient features, DR. DISH is a high-tech solution that promises water savings at a time when every effort toward conservation is absolutely critical. As we move toward a new era in determining water rights and imposing mandatory restrictions upon each and every person living in affected areas, creating conservation solutions that will be relevant for the lifestyles of the future is especially important, and the agility of designers in coming up with products that quickly cut consumer water consumption will be a key factor in determining whether humanity will be able to adapt to a new era in our relationship with natural resources.
ContributorsMarcinkowski, Margaret Nicole (Author) / Shin, Dosun (Thesis director) / McDermott, Lauren (Committee member) / Barrett, The Honors College (Contributor) / The Design School (Contributor) / Herberger Institute for Design and the Arts (Contributor)
Created2015-05
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Description
After researching pediatric cancer experiences, an opportunity emerged creating a less intimidating environment for children undergoing chemotherapy. By means of adding a creative component to their IV pole and disguising machinery, children will be a part of an Imagination Voyage adventure. Creative themes allow for a journey on a pirate

After researching pediatric cancer experiences, an opportunity emerged creating a less intimidating environment for children undergoing chemotherapy. By means of adding a creative component to their IV pole and disguising machinery, children will be a part of an Imagination Voyage adventure. Creative themes allow for a journey on a pirate ship, or being in a fantasy castle by captivating children in playtime. The design allows for a frightening experience to become a positive one.
ContributorsHerold, Brittany Ann (Author) / Shin, Dosun (Thesis director) / McDermott, Lauren (Committee member) / Barrett, The Honors College (Contributor) / Herberger Institute for Design and the Arts (Contributor) / School of Sustainability (Contributor) / The Design School (Contributor)
Created2015-05
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Description
My thesis explores the development of a new treatment option for children with Amblyopia. I did a lot of research into existing treatment options as well as interviewing patients and their parents do figure out why these treatments were not working. I interviewed a pediatric ophthalmologist to better understand this

My thesis explores the development of a new treatment option for children with Amblyopia. I did a lot of research into existing treatment options as well as interviewing patients and their parents do figure out why these treatments were not working. I interviewed a pediatric ophthalmologist to better understand this condition from their point of view. I also did a competitive analysis to see who else was in this marketplace. From the insights I gathered I was able to create a user journey map to see where the most problems arose during the experience from Diagnoses to end of treatment. With this research I was able to design a new treatment plan that was focused on empathizing with the user. I developed several concepts ranging from lo-fi to blue sky. I tested these concepts by making models and getting feedback from the user. I developed the actual design of the glasses through sketching and model making. I tested the ergonomics and design with the help of my classmates. The solution is a combination of smart glasses and an app. The smart glasses function as a replacement of traditional and popular patching by dimming one lens to block vision to the strong eye. This forces the weak eye to be used. The app is used to encourage kids to use the glasses more often through games and challenges. The challenges give rewards for wearing the glasses for an extended period of time. The games are used to increase of effectiveness of the treatment. Research showed that video games like Tetris forces the eye to focus and be used more than in daily life. This solution makes the treatment experience positive instead of negative as it was with other treatments.
ContributorsMeling, Erlend Henry Olav (Author) / Shin, Dosun (Thesis director) / Feil, Magnus (Committee member) / School of Sustainability (Contributor) / The Design School (Contributor) / Barrett, The Honors College (Contributor)
Created2020-05
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Description
Bridge is a device that relieves anxiety for people who care for the elderly. It has the face of the analog watch and the inner workings of a smart watch which analyzes the elderly person’s movement to track and recognize patterns. The caretaker has an app on their

Bridge is a device that relieves anxiety for people who care for the elderly. It has the face of the analog watch and the inner workings of a smart watch which analyzes the elderly person’s movement to track and recognize patterns. The caretaker has an app on their phone that alerts them when the elderly person breaks an activity pattern which also allows them to quickly and easily communicate with the elderly person to check on them. Bridge also holds the elderly person's personal medical history to allow medical professionals to provide them with better care in the case of an emergency.
ContributorsPowell, Audrey (Co-author, Co-author) / Shin, Dosun (Thesis director) / Wilkymacky, Abby (Committee member) / Dean, Herberger Institute for Design and the Arts (Contributor) / The Design School (Contributor) / Department of Marketing (Contributor) / Barrett, The Honors College (Contributor)
Created2019-05
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Description
Today’s college students are faced with numerous roadblocks to completing their studies including financial issues, unsustainable housing, and mental health crises. Currently, students are graduating with the highest levels of student debt in recorded history, and studies show that this disproportionately affects minority groups [1]. In addition, many colleges require

Today’s college students are faced with numerous roadblocks to completing their studies including financial issues, unsustainable housing, and mental health crises. Currently, students are graduating with the highest levels of student debt in recorded history, and studies show that this disproportionately affects minority groups [1]. In addition, many colleges require students to live on campus for their first couple of years, with research showing that student housing costs have increased 10.8% annually for the past 5 years [2]. To make matters worse, college costs have increased 169% over the past four decades while earnings for ages 22-27 have increased by 19% [3]. Consequently, typical living standards today majorly impact the environment in negative ways. For example, in the UK, housing accounts for approximately 27% of carbon emissions due to burning of fossil fuels for electricity and heating [4]. Furthermore, the average size of a home is increasing over time, and thus requiring more electricity. In 2021, the average home is estimated to be 28% bigger than in 1970 [5]. With depression being the number one cause of disability worldwide [6], it is worth analyzing how these factors influence public health. In a survey of almost 300 college institutions, 88% of counseling center directors reported an increase in “severe” psychological problems over the previous 5 years [7]. Estimates also show that more than 1 in 10 college students struggle with an anxiety disorder [7]. Since research shows that participating in travel and leisure positively influences mental health in those receiving psychiatric care [8], we are led to following research question: how can van homes be functionally designed for students as more affordable and sustainably living spaces that are conducive of well-being?
ContributorsArnold, Joy (Author) / Shin, Dosun (Thesis director) / Siyambalapitiya, Nipuni (Committee member) / Barrett, The Honors College (Contributor) / The Design School (Contributor) / Department of Psychology (Contributor)
Created2022-05
Description

DeliverKey is a smart modular home package delivery system that aims to prevent porch piracy in an age of online shopping. It is a physical and digital product design solution that incorporates human factors and user research to give users peace of mind when receiving home delivered packages.

ContributorsBrannen, Lindsey (Author) / Shin, Dosun (Thesis director) / McCurdy, Charlotte (Committee member) / Barrett, The Honors College (Contributor) / The Design School (Contributor) / Department of Marketing (Contributor)
Created2023-05