ethical implication of Social Engineering 3. Develop Your Tools a. What tools can be used in Social Engineering? b. How to be resourceful? c. Baiting 4. Open Source Intelligence (OSINT) a. Gathering information b. Sources of available information 5. Becoming Another Person a. What is pretexting? b. Researching your target c. Plan and prepare 6. Know Your Enemy a. System Scanning and Surveillance (Antivirus, OS version, etc) b. Phone calls, surveys, phishing, scrapers c. Practice Makes Perfect 7. Mind Tricks a. Basic Building Blocks of Social Engineering b. Microexpressions, and how to use them 8. Elicitation a
Paper ID #17202Enhancing Software Engineering Curricula By Incorporating Open, Data-Driven Planning MethodsMr. John (Lalit) Jagtiani, University of Bridgeport Mr. Lalit (John) Jagtiani is currently a Ph.D. candidate focused on Technology Management at the Uni- versity of Bridgeport, School of Engineering. His research interests include software technology manage- ment, software metrics, technology change management, and technology risk management. Mr.Jagtiani has 25+ years of industry experience with technology management and strategic business solutions. He currently serves as a consultant to several organizations and
format. However, facilitated discussions seemed to improvestudent satisfaction, as evident by the hybrid groups’ positive feedback to the SIRA scales whencompared to their online-only peers. Hence, with this caveat in mind, our findings optimisticallysupport the transferability of this ethics educational intervention (and others that are similar innature) to online learning environments, although we would emphasize that we need to conductfuture investigations in order to bolster this suggestion.AcknowledgementsThis work was made possible by an Engineer of 2020 Seed Grant from the Purdue UniversityCollege of Engineering and by the National Science Foundation (Grant No. 1237868) as part ofthe Ethics Education in Science and Engineering program
Paper ID #14611Using Student-Developed Narratives to Improve Learning and Engagementin Computer Problem-Solving CoursesDr. Candido Cabo, New York City College of Technology Candido Cabo is a Professor in the Department of Computer Systems Technology at New York City Col- lege of Technology, City University of New York (CUNY). He earned the degree of Ingeniero Superior de Telecomunicacion from the Universidad Politecnica de Madrid (Spain) in 1982, and a Ph.D. in Biomedi- cal Engineering from Duke University (Durham, NC) in 1992. He was a post-doctoral fellow at Upstate Medical Center, State University of New York (Syracuse
Paper ID #16065Implementing a Challenge-Based Approach to Teaching Selected Courses inCS and Computational SciencesDr. Mahmoud K. Quweider, University of Texas - Rio Grande Valley M K Quweider is a Professor of Computer & Information Sciences at the U. of Texas at UTRGV. He re- ceived his Ph.D. in Engineering Science (Multimedia and Imaging Specialty) and B.S. In Electrical Engi- neering, M.S. in Applied Mathematics, M.S. in Engineering Science, and M.S. in Biomedical Engineering all from the University of Toledo, Ohio. He also holds a Bachelor of English and a Masters of Business Administration from the University of
Paper ID #15869Design and Development of Remote Testbeds Using PythonProf. Abul K. M. Azad, Northern Illinois University Abul K. M. Azad is a Professor in the Technology Department of Northern Illinois University. He has a Ph.D. in Control and Systems Engineering and M.Sc. and B.Sc. in Electronics Engineering. His research interests include remote laboratories, mechatronic systems, mobile robotics, and educational research. In these areas, Dr. Azad has over 100 refereed journal and conference papers, edited books, and book chapters. So far, he has attracted around $1.7 million in research and development grants from various
Computer Science Alabama A&M University c American Society for Engineering Education, 2016 2016 ASEE Southeast Section Conference Android Based Remote Robot Control SystemAbstractIn this paper, we present an automatic robot control system in Android platform. This researchwork is aims at designing and developing a robust, reliable, and correct software intensivesystem for pursuing top level, incomparable and preeminent research objectives by consolidatingseveral techniques and methodologies to make our system more responsive, user friendly andmore communicative with the robot. To fulfill the project requirements and reach researchobjectives, the UML diagrams are
Paper ID #14425Developing an Android-Based Layer 3 Switch as a Senior ProjectMr. Pat Smith, Oklahoma Christian University of Science and Arts Mr. Pat Smith lives in Edmond Oklahoma. He has been married for 32 years to Dr. Virginia Smith, a leading expert and author in the field of higher education. He has a son who is a physician and daughter who teaches physics and chemistry. Mr. Smith enjoys long distance road cycling and board games. He gained his undergraduate degree at the University of Oklahoma in Computer Engineering in 1984. Following this he worked in industry for Conoco Inc, Du Pont, and Cisco Systems. At Cisco
Paper ID #16157EarSketch: An Authentic, STEAM-Based Approach to Computing Educa-tionDr. Roxanne Moore, Georgia Institute of Technology Roxanne Moore is currently a Research Engineer at Georgia Tech with appointments in the school of Mechanical Engineering and the Center for Education Integrating Mathematics, Science, and Computing (CEISMC). She is involved with engineering education innovations from K-12 up to the collegiate level. She received her Ph.D. in Mechanical Engineering from Georgia Tech in 2012.Mr. Douglas Edwards, Georgia Institute of Technology Douglas Edwards is a K-12 Science Technology Engineering
, access control, and secure protocols. c American Society for Engineering Education, 2016 Mobile Computing and Security Laboratory Development with Flip TeachingAbstract Android has reached over 1 million devices and occupies 85% of the market in 2014, according to a recent market report. Due to many advantages of the Android platform, such as open source, Google support, advanced software programmable framework in popular programming language Java, Android has been and will remain as the most popular mobile device operating system in market. Due to large popularity of user markets, research study of mobile computing is raising to a challenge level. In