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Frequently Asked Questions
Q. 1) Learning Objectives The GBA provides learning objectives in identifying and defining the problems, applying design thinking and system thinking, evaluating and selecting various sensors, communication protocols and computing technologies. In this process, students will be able to extend their learning experience to designing a real-world application, a Location Intelligence IoT Solution.
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Q. 2) Discuss the learning objectives involved in creating a Location Intelligence IoT Solution. Include the following aspects in your response: Identify and define key problems in location-based intelligence systems. Explain how design thinking and system thinking can be applied to solve these problems. Evaluate and select suitable sensors, communication protocols, and computing technologies for IoT applications. Propose how these learning experiences can be extended to develop real-world IoT solutions.
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Q. 3) Develop a structured framework to justify the investment in an emerging technology. Include the following: Define FIVE (5) Value-Based Criteria for evaluating the investment. Propose FIVE (5) Value-Added Services that the technology can offer. Explain how the framework ensures alignment with business objectives and provides measurable outcomes.
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Q. 4) Design a Strategic Benefits Matrix that highlights the benefits of implementing IT solutions. Include the following: Identify FIVE (5) Key Metrics for assessing the impact of IT investments. List FIVE (5) Value-Based Benefits associated with IT adoption Provide examples of measurable outcomes linked to the metrics and justify their relevance.
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Q. 5) Design a Value Assessment Matrix for evaluating the Return on Investment (ROI) in IT modernization projects. Include the following: Define FIVE (5) Core Criteria to measure value creation. Identify FIVE (5) Value-Added Features enabled by modernization. Explain how the matrix aligns with organizational goals and supports strategic decision-making.
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Q. 6) Plan and describe an improved operational workflow for smart agriculture systems to enhance productivity and minimize resource wastage (water, fertilizers, energy). Include: Present a workflow diagram showing the key processes in smart farming, from data collection (IoT sensors) to resource optimization. Highlight the SDGs addressed by improving food production efficiency and reducing environmental impact, mapping them to their SDG numbers. Offer a detailed description of each workflow stage, connecting it to specific sustainable practices and SDGs.
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Q. 7) Plan and describe an operational workflow to enhance urban waste management systems, focusing on minimizing landfill usage and promoting recycling. Include the following: Develop a workflow diagram illustrating the stages of waste collection, sorting, recycling, and disposal. Identify the SDGs addressed by minimizing waste and improving recycling rates, and map them to their corresponding SDG numbers. Provide a detailed explanation of the workflow, including technological solutions that support the SDGs.
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Q. 8) Plan and describe an improved operational workflow to integrate renewable energy sources (solar and wind) into the energy grid, aiming to reduce carbon emissions and optimize energy usage. Include the following: Create a workflow diagram showing key stages in renewable energy integration. Propose Sustainable Development Goals (SDGs) addressed by reducing emissions and enhancing energy efficiency, mapping them against their SDG numbers. Provide a detailed description of each stage in the workflow and explain how it aligns with the SDGs.
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Q. 9) Explain how IoT has transformed remote healthcare services during the COVID-19 pandemic. Provide an example of an IoT-based remote patient monitoring system that facilitated patient care without in-person visits. Discuss how IoT altered traditional healthcare architecture, emphasizing the integration of sensors, wearable devices, cloud platforms, and real-time data analytics.
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Q. 10) Describe how IoT enhanced supply chain management during the pandemic, particularly in ensuring the availability of essential goods. Provide an example of an IoT-enabled solution, such as real-time tracking of shipments or inventory management systems. Highlight how IoT disrupted the traditional supply chain architecture by introducing interconnected devices, predictive analytics, and automated decision-making processes.
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Q. 11) Analyze how IoT contributed to the creation of smart workplaces during the pandemic. Use an example, such as IoT-enabled monitoring of occupancy, air quality, or contactless entry systems, to ensure employee safety. Discuss the shift from traditional workplace systems to IoT-driven architecture, including the role of interconnected devices, cloud integration, and automated alerts.
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Popular Subjects for Internet of Things
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