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  • Course Description: This course covers the principles and applications of wireless communication technologies, including cellular networks, Wi-Fi, and satellite communications. Students will learn about the design and operation of wireless communication systems. Course Objectives:
    1. Understand the principles of wireless communication.
    2. Learn about various wireless communication technologies.
    3. Explore the design and operation of cellular networks.
    4. Study the applications of Wi-Fi and satellite communications.
    5. Analyze the performance and challenges of wireless communication systems.
    Course Outcomes:
    1. Explain the principles of wireless communication.
    2. Identify and differentiate between various wireless communication technologies.
    3. Design and operate cellular networks effectively.
    4. Utilize Wi-Fi and satellite communications in practical applications.
    5. Assess the performance and challenges of wireless communication systems.
  • Course Description: This course focuses on the management of network infrastructure, including the design, implementation, and maintenance of telecommunications networks. Students will learn to optimize network performance and reliability. Course Objectives:
    1. Understand the principles of network infrastructure management.
    2. Learn about the design and implementation of telecommunications networks.
    3. Develop strategies for maintaining network infrastructure.
    4. Optimize network performance and reliability.
    5. Evaluate the impact of network management practices on telecommunications operations.
    Course Outcomes:
    1. Design and implement telecommunications networks.
    2. Develop and implement maintenance strategies for network infrastructure.
    3. Optimize the performance and reliability of telecommunications networks.
    4. Assess the impact of network management practices on operations.
    5. Improve network infrastructure management through targeted strategies.
  • Course Description: This course covers the principles and techniques of digital communication systems, including modulation, coding, and signal processing. Students will learn about the design and operation of digital communication systems. Course Objectives:
    1. Understand the principles of digital communication.
    2. Learn about modulation techniques and their applications.
    3. Explore coding methods for error detection and correction.
    4. Study signal processing techniques in digital communication.
    5. Analyze the performance of digital communication systems.
    Course Outcomes:
    1. Explain the principles of digital communication.
    2. Apply modulation techniques in digital communication systems.
    3. Implement coding methods for error detection and correction.
    4. Utilize signal processing techniques in digital communications.
    5. Evaluate the performance of digital communication systems.
  • Course Description: This course provides an introduction to telecommunications, covering the fundamental concepts, technologies, and systems used in the industry. Students will learn about the evolution of telecommunications, basic principles, and current trends. Course Objectives:
    1. Understand the basic concepts of telecommunications.
    2. Learn about the evolution and history of telecommunications.
    3. Explore various telecommunications technologies and systems.
    4. Analyze the impact of telecommunications on society and economy.
    5. Study current trends and future directions in telecommunications.
    Course Outcomes:
    1. Explain the fundamental concepts of telecommunications.
    2. Describe the historical evolution of telecommunications technologies.
    3. Identify and differentiate between various telecommunications systems.
    4. Assess the impact of telecommunications on society and economy.
    5. Analyze current trends and predict future developments in telecommunications.
  • Course Description: This course covers the principles and techniques of data analysis and visualization in urban transport, including the use of data analytics tools to support transport planning and decision-making. Students will learn to analyze and visualize transport data to improve urban mobility. Course Objectives:
    1. Understand the principles of data analysis and visualization in urban transport.
    2. Learn about different data analytics tools and techniques.
    3. Develop strategies for analyzing and visualizing transport data.
    4. Use data analytics to support transport planning and decision-making.
    5. Evaluate the impact of data analysis on urban transport efficiency.
    Course Outcomes:
    1. Analyze and visualize transport data effectively.
    2. Use data analytics tools to support transport planning decisions.
    3. Develop strategies for data-driven urban transport planning.
    4. Assess the impact of data analysis on urban transport efficiency.
    5. Improve urban mobility through effective data analysis and visualization.
  • Course Description: This course explores the latest innovations in urban transport technology, including smart mobility solutions, electric and autonomous vehicles, and mobility-as-a-service (MaaS). Students will learn to evaluate and implement innovative technologies in urban transport systems. Course Objectives:
    1. Understand the principles of urban transport technology innovations.
    2. Learn about the latest smart mobility solutions and technologies.
    3. Evaluate the impact of innovative technologies on urban transport.
    4. Develop strategies for implementing new transport technologies.
    5. Promote the adoption of cutting-edge technologies in urban transport systems.
    Course Outcomes:
    1. Identify and assess new technologies in urban transport.
    2. Develop strategies for implementing innovative transport solutions.
    3. Evaluate the impact of new technologies on urban mobility.
    4. Promote the adoption of smart mobility solutions and technologies.
    5. Improve urban transport systems through the integration of new technologies.
  • Course Description: This course focuses on marketing and communication strategies for public transport systems, including market analysis, branding, and public relations. Students will learn to develop and implement effective marketing campaigns to promote public transport. Course Objectives:
    1. Understand the principles of public transport marketing and communication.
    2. Learn about market analysis and branding in public transport.
    3. Develop marketing strategies to promote public transport systems.
    4. Implement communication and public relations campaigns.
    5. Evaluate the impact of marketing and communication on public transport usage.
    Course Outcomes:
    1. Develop and implement marketing strategies for public transport.
    2. Conduct market analysis to understand public transport users.
    3. Create effective branding and communication campaigns.
    4. Assess the impact of marketing on public transport usage.
    5. Improve public transport systems through targeted marketing and communication.
  • Course Description: This course covers the principles and applications of transport modeling and simulation, including the use of software tools to analyze and predict urban transport patterns. Students will learn to develop and use models to support transport planning decisions. Course Objectives:
    1. Understand the principles of urban transport modeling and simulation.
    2. Learn about different modeling and simulation techniques.
    3. Develop transport models to analyze urban transport patterns.
    4. Use simulation tools to support transport planning decisions.
    5. Evaluate the accuracy and reliability of transport models.
    Course Outcomes:
    1. Develop and use transport models to analyze urban transport patterns.
    2. Apply modeling and simulation techniques to transport planning.
    3. Use simulation tools to support transport planning decisions.
    4. Assess the accuracy and reliability of transport models.
    5. Improve transport planning through effective modeling and simulation.
  • Course Description: This course explores the relationship between transport and land use planning, focusing on the integration of transport infrastructure with urban development. Students will learn to develop plans that promote sustainable and efficient land use and transport systems. Course Objectives:
    1. Understand the principles of transport and land use planning.
    2. Learn about the integration of transport infrastructure with urban development.
    3. Develop strategies for sustainable land use and transport planning.
    4. Implement plans that promote efficient land use and transport systems.
    5. Evaluate the impact of land use planning on urban mobility and development.
    Course Outcomes:
    1. Develop and implement plans for integrated transport and land use.
    2. Promote sustainable land use and transport planning.
    3. Assess the impact of transport infrastructure on urban development.
    4. Optimize land use and transport systems for urban efficiency.
    5. Improve urban mobility and sustainability through integrated planning.
  • Course Description: This course covers the design of urban transport networks, including the integration of different transport modes, network optimization, and infrastructure planning. Students will learn to develop comprehensive transport network plans for cities. Course Objectives:
    1. Understand the principles of urban transport network design.
    2. Learn about the integration of different transport modes.
    3. Develop strategies for network optimization and planning.
    4. Implement comprehensive transport network plans for cities.
    5. Evaluate the impact of transport network design on urban mobility.
    Course Outcomes:
    1. Develop and implement urban transport network plans.
    2. Integrate different transport modes effectively in network design.
    3. Optimize urban transport networks for efficiency and accessibility.
    4. Assess the impact of network design on urban mobility.
    5. Improve urban transport networks through targeted design strategies.

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