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AI AssIgnment 56
a year ago
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week5.docx
NASAWearLabgovtdoc1.pdf
- DATAQUALITY.pdf
- wk5AIDEV.pdf
week5.docx
Week 5 Assignment: Legal & Ethical Issues of AI in Business
PROMPT:
In your learning materials, you have read about legal issues and ethical concerns relating to the use of various types of AI in business. Research current AI news for an item published no earlier than the past year that reports and illustrates a current—or forecasts a future—example of an ethical or legal issue pertaining to the use or function of AI in business. This could be an event that has occurred, a case in litigation, legislation (passed or pending), or regulation (passed or pending), or another issue.
This must be an explanatory article that includes objective analysis, not simply a "news blurb" or a slanted opinion piece. This will be your " keynote article" for this Assignment.
Using your keynote article as the basis for your topic of this Assignment, complete all of the following:
Research and writing - APA7 Paper
Research and evaluate the legal and/or ethical issue identified in your selected keynote article, including other or related examples illustrating the issue with the use of AI.
When you have gathered your research and studied the issue, write an APA Style 7th Edition paper that does the following:
1. Summarizes the specific event or problem reported in the keynote article, including the type of AI involved, its subfield, its use, the specific company involved (if there is one) and/or stakeholders affected
2. Identifies the legal or ethical issue with the use of this specific AI
3. Includes descriptive examples of the issue in the application of the AI
4. Explains the risk to business posed by the issue
5. Identifies who was (is), or could be, harmed
6. Recommends whether the issue can be prevented or mitigated, and how; or whether the AI application should be used at all because of the issue
Instructions
1. Prepare APA 7 paper — 1,000 to 1,200 words ( excluding title and references list) — NO ABSTRACT.
2. APA 7th Ed. Style. See APA Help submodule [content page].
3. Follow Paper Guide template attached to this Assignment.
4. Use appropriate subheadings.
5. Reference five (5) credible* sources, one (1) of which is your keynote article.
6. All sources on the References list must be cited appropriately in the paper's text.
7. See Grading Rubric.
https://www.captechu.edu/blog/how-ai-powered-wearables-are-reshaping-health-care
https://builtin.com/artificial-intelligence/how-will-AI-change-business
Week 5 assignment paper guide
THIS IS A WORD TEMPLATE WITH SETTINGS AND DIRECTIONAL LANGUAGE TO ASSIST YOU. REMOVE/REPLACE INSTRUCTIONAL LANGUAGE FOR YOUR ACTUAL PAPER
INCLUDING THIS NOTICE!
Title Page (HEADING CENTERED ON PAGE)
Title of Paper
Your Name
Course
Assignment
University
Professor
Date
Title of Paper
[first paragraph is your introduction]
[Create your heading – this section Identifies the event or problem, AI, Keynote Article]
[This section covers item 1 from Assignment - summarizes the specific event or problem reported in the keynote article including: the type of AI involved, subfield, its use, the specific company involved (if there is one) and/or other stakeholders]
[Create your heading – this section is analysis of the issue]
[This covers items 2 and 3 from Assignment - identifies, explains, analyzes the legal or ethical issue with the use of this specific A). Include examples beyond what was reported in keynote article, from research.]
[Create your heading – this section about risk and harm]
[This covers items 4 and 5 from Assignment – risk to business posed by the legal or ethical issue of the AI, and harm posed to stakeholders]
[Create your heading – this section is the recommendation]
[This section covers item 6 from Assignment -]recommends whether or how the issue can be prevented or mitigated, and how; or whether the AI application should be used at all because of the issue]
Conclusion
xx
References
This page is for full APA citations of your research listed alphabetically, double-spaced with hanging indent setting under Word “paragraph” – this setting is set here now
And will follow automatically using hard return at the end of the citation. Consult APA7 Guidelines for the proper citation format for each type of research source.
**Discussion question
Question 1
Share a wearable AI technology that is being used in business today. What are your thoughts about its usefulness and future applications?
NASAWearLabgovtdoc1.pdf
PERSPECTIVES FROM THE WEARABLE ELECTRONICS AND APPLICATIONS RESEARCH (WEAR) LAB, NASA JOHNSON SPACE CENTER
Haifa R. Moses, MS Habitability and Human Factors Branch,
Houston, TX As NASA moves beyond exploring low earth orbit and into deep space exploration, increased communication delays between astronauts and earth drive a need for crew to become more autonomous (earth-independent). Currently crew on board the International Space Station (ISS) have limited insight into specific vehicle system performance because of the dependency on monitoring and real-time communication with Mission Control. Wearable technology provides a method to bridge the gap between the human (astronaut) and the system (spacecraft) by providing mutual monitoring between the two. For example, vehicle or environmental information can be delivered to astronauts through on–body devices and in return wearables provide data to the spacecraft regarding crew health, location, etc. The Wearable Electronics and Applications Research (WEAR) Lab at the NASA Johnson Space Center utilizes a collaborative approach between engineering and human factors to investigate the use of wearables for spaceflight. Zero and partial gravity environments present unique challenges to wearables that require collaborative, user-centered, and iterative approaches to the problems. Examples of the WEAR Lab’s recent wearable projects for spaceflight will be discussed.
Perspectives From The Wearable Electronics and
Applications Research (WEAR) Lab
Haifa Moses WEAR Lab Human Factors Lead
Habitability & Human Factors Branch
NASA Johnson Space Center
Wearables & NASA
• Increased crew autonomy during long-duration (earth-independent)
missions requires more vehicle insight for the crew
• Wearables provide a method to bridge the gap between the human
(crew) and the system (spacecraft) by providing mutual monitoring
between the two
• The Wearable Electronics and Applications Research (WEAR) Lab at
the NASA Johnson Space Center is a collaboration between engineers
and human factors to investigate the use of wearables for spaceflight
Environmental Monitoring Gap
• Numerous commercial (COTS) wearable devices meet NASA’s need for
human and environmental monitoring
• In zero gravity environments gasses behave differently than on Earth
• Lack of natural convection limits air circulation and mixing potentially leading to
“pockets” of hazardous gasses
• COTS wearables target gasses that pose hazards on earth (ex. carbon
monoxide) leaving a monitoring gap for gasses whose hazards are
mitigated with the help of gravity (ex. carbon dioxide)
Carbon Dioxide (CO2) in Space
• Exposure to elevated CO2 levels causes health
problems
• Increased blood pressure, dizziness, vision impairment,
decreased decision-making capabilities, headaches, etc.
• Monitoring CO2 in spacecraft is difficult
• CO2 readings from fixed sensors may not be representative
of locations near the crew
• Group activities (e.g. meals, public events) are of particular
concern because of potential creations of “CO2 Pockets”
Son, C., Zapata, J., and Lin, C., "Investigation of
Airflow and Accumulation of Carbon Dioxide in the
Service Module Crew Quarters," SAE Technical
Paper 2002-01-2341, 2002,
https://doi.org/10.4271/2002-01-2341.
Personal CO2 Monitor
• The WEAR Lab developed the Personal CO2 Monitor
(PCO2M) to evaluate wearability principles in space and
address the CO2 monitoring need for the International Space
Station (ISS)
Personal CO2 Monitor
• The WEAR Lab developed the Personal CO2 Monitor
(PCO2M) to evaluate wearability principles in space and
address the CO2 monitoring need for the International Space
Station (ISS)
PCO2M System
Personal CO2 Monitors
• Monitors CO2, relative humidity, and temp
• Clips onto crew clothing
• Simple LED status indicators
• Charges via USB
• Stores data internally, if no active Bluetooth
connection is available
iPad app
• Downloads data from PCO2M via Bluetooth
Low Energy
• Displays data real-time
• Aggregates & transfers data to ground
server
Challenges & Lessons Learned
• No gravity - Things don’t stay put • Affected attachment locations &
methods as well as operations
• Conflicting priorities • Wearability & usability
vs.
Operations & science
Haifa Moses
WEAR Lab Human Factors Lead
Habitability & Human Factors Branch
NASA Johnson Space Center, Houston, TX
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