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The purpose of this thesis research project is to explore blockchain technology and its present and future applications within supply chain management. Emerging blockchain technologies, both public and private, are already showing great promise for a number of applications in and outside supply chain management. Our sole focus is to

The purpose of this thesis research project is to explore blockchain technology and its present and future applications within supply chain management. Emerging blockchain technologies, both public and private, are already showing great promise for a number of applications in and outside supply chain management. Our sole focus is to understand the fundamentals of blockchain, smart contracts, current applications in supply chain, and the future possibilities for blockchain to shape global supply chains. Many have theorized about how private blockchains can be implemented and used; however, there is little research to date that has collected and explored the actual use cases in industry today. The mission of this research paper is to separate theory from the current state of the technology and provide a clearer understanding of where the technology is headed in the near future. We aim to produce a work that will provide a comprehensive description and commentary on current use cases for the education of students and industry professionals alike. With any new technological developments, terminology and technicalities can be paralyzing, and this is particularly true for blockchain technology. For this project, our goal was to create a document that cuts through the complexities and allows a non-technical audience to gain a strong foundational understanding of blockchain's potential and current limitations within supply chains. Provided this, some highly technical concepts and implementation details will not be explored due to the complexity and minimal understanding even amongst industry experts. As future supply chain professionals, we are motivated to further our understanding of blockchain technologies and the potential for this technology to shape the future of supply chain management.
ContributorsBecker, Logan (Co-author) / Falco, Alexander (Co-author) / Murphy, Thomas Brian (Co-author) / Taylor, Todd (Thesis director) / Wiedmer, Robert (Committee member) / Department of Supply Chain Management (Contributor) / Barrett, The Honors College (Contributor)
Created2018-05
DescriptionA look at current 3D printing capabilities, and exploring the potential for additive manufacturing to transform the economy in the future.
ContributorsBennewitz, Chase (Co-author) / Paul, John (Co-author) / Parker, Kerry (Co-author) / Maltz, Arnold (Thesis director) / McDowell, John (Committee member) / Fujinami, Chris (Committee member) / Barrett, The Honors College (Contributor) / Department of Economics (Contributor) / Department of Supply Chain Management (Contributor) / W. P. Carey School of Business (Contributor)
Created2013-05
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Description
Currently, Arizona State University's West Campus offers students a Bachelor's of Science degree in Forensics. This degree program has been at ASU's West campus for over three years now and is at its capacity of 300 students due to limitations on lab space. In order to support the growth and

Currently, Arizona State University's West Campus offers students a Bachelor's of Science degree in Forensics. This degree program has been at ASU's West campus for over three years now and is at its capacity of 300 students due to limitations on lab space. In order to support the growth and provide students with a valuable experience, the Math and Natural Sciences department seeks to create a "fee-for-service" enterprise within the Forensics division. This new lab called the Arizona State University Forensic Science Center (ASU-FSC) would serve city, county, state, and federal government agencies. The mission of the ASU-FSC is to provide robust, accurate and efficient forensic services while leading innovation in research and education in forensics for Arizona, the Southwest and the country. The School of Natural Science and Mathematics has sought help from W. P. Carey School of Business students to analyze the possibility of adding a Forensics fee-for-service lab to ASU West campus. The deliverables from this report will provide a comprehensive marketing, supply chain and financial review of all aspects of the business, and will aid in the decision making process for the creation of the Arizona State University Forensic Science Center.
ContributorsBlackburn, Amy (Co-author) / Snyder, Emily (Co-author) / Dong, Tim (Co-author) / Trujillo, Rhett (Thesis director) / Ferry, Lara (Committee member) / W. P. Carey School of Business (Contributor) / Department of Supply Chain Management (Contributor) / Department of Marketing (Contributor) / Department of Management and Entrepreneurship (Contributor) / Barrett, The Honors College (Contributor)
Created2017-05
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Description
The goal of this research is to answer the questions 1) What is innovation? 2) Why is innovation important? 3) How does leadership impact the effectiveness in driving innovation? 4) How can insight be taught to other individuals who would like to drive innovation in their own practice? By defining

The goal of this research is to answer the questions 1) What is innovation? 2) Why is innovation important? 3) How does leadership impact the effectiveness in driving innovation? 4) How can insight be taught to other individuals who would like to drive innovation in their own practice? By defining leadership characteristics, actions, and attributes, a tangible framework was created which can be utilized by any leader as a guiding point to drive innovation. Data for this project was collected through two channels: a survey which was administered to individuals who identified primarily as undergraduates and professionals, then interviews were conducted with individuals who are recognized as innovative leaders. Interview participants were selected based on recommendations from peers, awards, and accolades received. The questions in the survey focused on collecting data on the general perception and understanding of what an innovative leader is compared to traditional change management elements. Interview questions honed in on specific information regarding leadership approaches, group dynamic techniques, and personal characteristics in relation to leadership style. The findings from the study can be used for positive impact on universities and organizations.
ContributorsBriones, Nicole Marie (Author) / LePine, Marcie (Thesis director) / Wilkinson, Christine Kajikawa (Committee member) / Department of Finance (Contributor) / Department of Supply Chain Management (Contributor) / Barrett, The Honors College (Contributor)
Created2017-05
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Description
The topic of our project "Innovation and the City of Tomorrow Through a Supply Chain Perspective" derives from the fields of Innovation, Supply Chain Management, and Public Policy. Many people ask themselves about the future, how will it look? To answer this question, we conducted research about how the city

The topic of our project "Innovation and the City of Tomorrow Through a Supply Chain Perspective" derives from the fields of Innovation, Supply Chain Management, and Public Policy. Many people ask themselves about the future, how will it look? To answer this question, we conducted research about how the city of Tempe, in Arizona, can utilize emerging technology to address its societal needs by the year 2035. With an expected 35 percent increase in population, the city will need to find ways to house, transport, and provide access to the basic needs of their constituents. To tackle these problems, we considered innovative technologies and trends and analyzed their outcomes through the magnifying glass of supply chain, offering insight into how these technologies are disrupting their respective industries and most importantly, who benefits and who loses. Because the topic is so broad, we have decided to focus on addressing societal needs that are essential for Tempe to satisfy the needs of their constituents as they attempt to become one of the most thriving cities in America. Those critical needs are: residential development, electricity needs, and transportation.
ContributorsSosa, Gilberto (Co-author) / Sosa Mendoza, Homero (Co-author) / Trujillo, Rhett (Thesis director) / Kellso, James (Committee member) / Department of Management and Entrepreneurship (Contributor) / Department of Supply Chain Management (Contributor) / Barrett, The Honors College (Contributor)
Created2017-12
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Description
The purpose of this thesis is to convince readers of the benefits of cross-functional collaboration and innovation within the W. P. Carey School of Business. Specifically, cross-functional collaboration is the "innovation" that is being discussed and will be presented. Written from the perspective of a current business student, this thesis

The purpose of this thesis is to convince readers of the benefits of cross-functional collaboration and innovation within the W. P. Carey School of Business. Specifically, cross-functional collaboration is the "innovation" that is being discussed and will be presented. Written from the perspective of a current business student, this thesis incorporates secondary research as well as personal experience to explain why this would benefit the business school at Arizona State University. The research conducted stems from online resources such as the Harvard Business Review, Kai Nexus, Forbes and other websites and explains why the author decided to pursue this topic. Cross-functional collaboration is seen in the everyday workings of the business world and are a utilized by a multitude of successful companies \u2014 Dell, Intel, Amazon, Apple and other similar companies. Therefore, it should be taken advantage of within undergraduate education in order to better prepare students for what they may experience afterwards. In addition, a majority of the paper is dedicated to recommendations for how exactly cross-functional collaboration could be incorporated, as well as examples of successful cross-functional courses and teams. These recommendations will be beneficial to business and general faculty members and can contribute to positive organizational change at the university.
ContributorsThompson, Trevor N (Author) / Trujillo, Rhett (Thesis director) / Peck, Sidnee (Committee member) / Department of Supply Chain Management (Contributor) / Department of Marketing (Contributor) / Department of Information Systems (Contributor) / Barrett, The Honors College (Contributor)
Created2016-05
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Description
This study aims to find measurable approaches to achieve sustainable closed-loop supply chain. The proposed methodology here was initiated with my experience that was gained through InnovationSpace Program. InnovationSpace Program is a year-long multidisciplinary product-design and development program hosted by Arizona State University that aims to tackle societal problems. Inspired

This study aims to find measurable approaches to achieve sustainable closed-loop supply chain. The proposed methodology here was initiated with my experience that was gained through InnovationSpace Program. InnovationSpace Program is a year-long multidisciplinary product-design and development program hosted by Arizona State University that aims to tackle societal problems. Inspired by the Design Thinking framework, I found out that much more effort would need to be done from the beginning stage of product design in order to achieve real and cohesive improvement in industries today. Thinking about the concepts of reverse logistics within supply chain and the planned obsolescence during the product design stage, I would like to come out some more efficient and measurable long-term supply chain planning for the industries, regarding its different production lines and the properties of its products.

Through the process of writing the sustainability report for InnovationSpace program, I had gained deeper understanding about applying sustainability concept into daily business procedures. As supply chain is defined as the oversight over materials, services, information and finances flowed within and among companies and industries, the new innovative supply chain management can be better adjusted according to the concern of any sustainable impact to all the stakeholders and communities. After gathering the information from industries and listening to the suggestions from academic insights, I then finalized the proposed innovative sustainability strategy for the supply chain management nowadays and I called it as Diamond Index.

Diamond Index=Avg(Environmental Stewardship+Social Responsibility +Economic Impact)^(Innovation Index)

Economic Impact (Econ)∈ [0, 10] Social Responsibility (Soc)∈[0, 10]
Environmental Stewardship (Env) ∈ [0, 10] Innovation ∈ [0, 1]
ContributorsQiang, Rubing (Author) / Boradkar, Prasad (Thesis director) / Peck, Sidnee (Committee member) / Department of Supply Chain Management (Contributor) / Sanford School of Social and Family Dynamics (Contributor) / Department of Marketing (Contributor) / Barrett, The Honors College (Contributor)
Created2015-12
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Description
The purpose of this thesis is to imagine and predict the ways in which humans will utilize technology to feed the world population in the 21st century, in spite of significant challenges we have not faced before. This project will first thoroughly identify and explain the most pressing challenges the

The purpose of this thesis is to imagine and predict the ways in which humans will utilize technology to feed the world population in the 21st century, in spite of significant challenges we have not faced before. This project will first thoroughly identify and explain the most pressing challenges the future will bring in climate change and population growth; both projected to worsen as time goes on. To guide the prediction of how technology will impact the 21st century, a theoretical framework will be established, based upon the green revolution of the 20th century. The theoretical framework will summarize this important historical event, and analyze current thought concerning the socio-economic impacts of the agricultural technologies introduced during this time. Special attention will be paid to the unequal disbursement of benefits of this green revolution, and particularly how it affected small rural farmers. Analysis of the technologies introduced during the green revolution will be used to predict how 21st century technologies will further shape the agricultural sector. Then, the world’s current food crisis will be compared to the crisis that preceded the green revolution. A “second green revolution” is predicted, and the agricultural/economic impact of these advances is theorized based upon analysis of farming advances in the 20th century.
ContributorsWilson, Joshua J (Author) / Strumsky, Deborah (Thesis director) / Benjamin, Victor (Committee member) / Department of Supply Chain Management (Contributor) / School of Sustainability (Contributor) / Barrett, The Honors College (Contributor)
Created2019-05
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Description
Through the lens of the physical and non-physical flows within the supply chain, this paper will analyze the societal implications of the transition to centralized factory operations following the Industrial revolution of the 18th century. The industrialized means of mass places heavy value on centralized operations as a means

Through the lens of the physical and non-physical flows within the supply chain, this paper will analyze the societal implications of the transition to centralized factory operations following the Industrial revolution of the 18th century. The industrialized means of mass places heavy value on centralized operations as a means of establishing competitive advantages in economies of scale and standardized quality. With the emergence of new technologies such as additive manufacturing, artificial intelligence and blockchain, the direct labor required to produce goods and services greatly diminishes. The current trend towards the automation of physical production processes highlights a fundamental shift towards a service-based economy. This will serve as the foundation and introduction to assess the current production landscape and propose a theoretical model for labor and management “Contractor.io” to serve as a task management protocol for the contracting of labor as society transitions into an increasingly digital serviced based economy.
ContributorsYarbrough, Dylan Antonio (Author) / Antonios, Printezis (Thesis director) / Keane, Katy (Committee member) / Department of Supply Chain Management (Contributor) / Barrett, The Honors College (Contributor)
Created2019-05
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Description
This study aims to examine how the use of consensus-based transactions, smart contracts,and interoperability, provided by blockchain, may benefit the blood plasma industry. Plasmafractionation is the process of separating blood into multiple components to garner benefitsof increased lifespan, specialized allocation, and decreased waste, thereby creating a morecomplex and flexible supply

This study aims to examine how the use of consensus-based transactions, smart contracts,and interoperability, provided by blockchain, may benefit the blood plasma industry. Plasmafractionation is the process of separating blood into multiple components to garner benefitsof increased lifespan, specialized allocation, and decreased waste, thereby creating a morecomplex and flexible supply chain. Traditional applications of blockchain are developed onthe basis of decentralization—an infeasible policy for this sector due to stringent governmentregulations, such as HIPAA. However, the trusted nature of the relations in the plasmaindustry’s taxonomy proves private and centralized blockchains as the viable alternative.Implementations of blockchain are widely seen across pharmaceutical supply chains to combatthe falsification of possibly afflictive drugs. This system is more difficult to manage withblood, due to the quick perishable time, tracking/tracing of recycled components, and thenecessity of real-time metrics. Key attributes of private blockchains, such as digital identity,smart contracts, and authorized ledgers, may have the possibility of providing a significantpositive impact on the allocation and management functions of blood banks. Herein, we willidentify the economy and risks of the plasma ecosystem to extrapolate specific applications forthe use of blockchain technology. To understand tangible effects of blockchain, we developeda proof of concept application, aiming to emulate the business logic of modern plasma supplychain ecosystems adopting a blockchain data structure. The application testing simulates thesupply chain via agent-based modeling to analyze the scalability, benefits, and limitations ofblockchain for the plasma fractionation industry.
ContributorsVallabhaneni, Saipavan K (Author) / Boscovic, Dragan (Thesis director) / Kellso, James (Committee member) / Department of Information Systems (Contributor) / Department of Supply Chain Management (Contributor) / Barrett, The Honors College (Contributor)
Created2020-05