Posters

  • Displaying 1 - 20 of 67
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  • Teaching-Learning Networks: Piloting the Global Classroom Concept

    Teach Civil Infrastructure Systems and Sustainable Development (CISSD) courses using problem-based approaches and team-based learning with teams that cut across several geographical contexts

    Resource Added: October 2, 2013

    Teaching-Learning Networks: Piloting the Global Classroom Concept 103KB, PDF
  • The Problem Solving Studio

    Establish classroom structures that change the students' and teacher's perceived rights and obligations in the classroom

    Resource Added: October 2, 2013

    The Problem Solving Studio 199KB, PDF
  • A Four-Year Modular Design Spine Curriculum

    Move our curriculum into a modular design where: different skill sets can be taught, moved around, making our approach more flexible to change and adaptable.

    Resource Added: October 2, 2013

    A Four-Year Modular Design Spine Curriculum 994KB, PDF
  •  Linking Project-Based Learning and Socially Relevant Themes

    Empowers Students and Inspires Creative (and Practical) Designs

    Resource Added: October 2, 2013

     Linking Project-Based Learning and Socially Relevant Themes 1MB, PDF
  • Student Enterprise to Enhance Creatitity and Innovation

    The primary outcome of this project is to create a learning environment to enhance student creativity and innovation through the integration of artistic creativity, entrepreneurial innovation, and engineering education.

    Resource Added: October 2, 2013

    Student Enterprise to Enhance Creatitity and Innovation 203KB, PDF
  • Teach the Essentials

    Determine the smallest possible body of knowledge which, when mastered, give students the broadest possible understanding of the subject.

    Resource Added: October 2, 2013

    Teach the Essentials 665KB, PDF
  • Finding the Right Balance: Process Calculations in the Classroom and on the Web

    In Process Calculations, chemical engineering sophomores learn to write and solve material and energy balances for simple and complex processes - skills that form a critical foundation for all subsequent chemical engineering core classes.

    Resource Added: October 2, 2013

    Finding the Right Balance: Process Calculations in the Classroom and on the Web 163KB, PDF
  • Experiential Learning in Power System Education

    Creating effective multi-sensory, multi-modal learning experiences that motivate life-long learning while deepening student understanding of and appreciation for the complexities of the electric power grid and the challenges we face to make it intelligent, efficient and sustainable.

    Resource Added: October 2, 2013

    Experiential Learning in Power System Education 4MB, PDF
  • Flipped Classroom

    Flipping Heat Transfer to Increase Active Learning

    Resource Added: October 2, 2013

    Flipped Classroom 188KB, PDF
  • Before

    Allow non-engineers to develop proficiency in some of the critical and analytical aspects of engineering, science, and technology, not merely in content, but also to embody a way of thinking.

    Resource Added: October 2, 2013

    Before "How Things Work" 365KB, PDF
  • Visualizing Engineering Mathematics in Action!

    Make complex engineering math more approachable to students by teaching math in an application-oriented manner using relevant and timely examples with real-time, hands-on visualization and animation of solutions by students in a computer lab-based setting.

    Resource Added: October 2, 2013

    Visualizing Engineering Mathematics in Action! 343KB, PDF
  • Incorporating themes from Changing the Conversation in engineering first year seminars

    Objectives: To promote students to define engineering in terms of health, happiness and safety and to enhance students’ understanding of possible careers in chemical engineering

    Resource Added: October 2, 2013

    Incorporating themes from Changing the Conversation in engineering first year seminars 2MB, PDF
  • Programming Printers Printed by 3D Printers

    No longer do we always have to devise brilliant kinematic linkage mechanisms to translate continuous rotation motions (from say a water wheel or induction motor) into precisely controlled intermittent motions. Instead, we simply have to program a computer to tell a smart motor when to move, in which direction to move, and exactly how far to move.

    Resource Added: October 2, 2013

    Programming Printers Printed by 3D Printers 290KB, PDF
  • Crowd-sourced in silico design of protein-based biosensogrs

    Fill an "application gap" in protein engineering courses while providing students with hands-on design experience in molecular/protein engineering.

    Resource Added: October 2, 2013

    Crowd-sourced in silico design of protein-based biosensogrs 4MB, PDF
  • An Integrative Model to Increase Research and Education in Renewable Energy Systems

    In the proposed class there is a strong emphasis in creating multidisciplinary teams of students, they work in a final project prototype in which they must address a real world problem, funding for developing the prototype is provided to the students although a strong emphasis is placed in using recycled materials in their designs.

    Resource Added: October 2, 2013

    An Integrative Model to Increase Research and Education in Renewable Energy Systems 1MB, PDF
  • Experiencing

    Learning Concepts by Teaching to High School Students

    Resource Added: October 2, 2013

    Experiencing "True Engineering" Earlier 4MB, PDF
  • Higher-Order Learning in Engineering Education Using Active Teaching Pedagogies

    Develop the dynamic, inquisitive, creative, and ethical engineer of the future called for by the National Academy of Engineering

    Resource Added: October 2, 2013

    Higher-Order Learning in Engineering Education Using Active Teaching Pedagogies 392KB, PDF
  • Green Projects, Pavements, and Beyond

    Taking a Project-Based Learning Approach that Introduces Sustainability to the Next Level

    Resource Added: October 2, 2013

    Green Projects, Pavements, and Beyond 2MB, PDF
  • Engaging Students through On-Site Design Activities

    Improve Communication Skills, Improve Design Skills, Integrate Computer Applications, Relate Courses to Real World Problems, Develop and Integrate Construction Topics

    Resource Added: October 2, 2013

    Engaging Students through On-Site Design Activities 2MB, PDF
  • Bridging Engineering and the Social Sciences

    Curriculum development - undergraduate research experience - interdisciplinary meetings

    Resource Added: October 2, 2013

    Bridging Engineering and the Social Sciences 3MB, PDF
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