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Ibrahim, Najwa; Trabucco, Kelsey – Tech Directions, 2012
The mysteries of the deep aren't always unsolvable. The students of Natick (Massachusetts) High School's robotics club and robotics courses took on a project that resulted in their locating and remotely exploring a barge that sank in Newfound Lake in New Hampshire, likely in the early 1900s. They did it by designing, building, and operating three…
Descriptors: Robotics, Local History, Historians, Technology Education
Liu, Allison; Newsom, Jeff; Schunn, Chris; Shoop, Robin – Tech Directions, 2013
Schools everywhere are using robotics education to engage kids in applied science, technology, engineering, and mathematics (STEM) activities, but teaching programming can be challenging due to lack of resources. This article reports on using Robot Virtual Worlds (RVW) and curriculum available on the Internet to teach robot programming. It also…
Descriptors: Robotics, Programming, Computer Simulation, STEM Education
Cassola, Joel – Tech Directions, 2011
Close to a decade ago, John Hersey High School (JHHS) in Arlington Heights, Illinois, made a transition from a traditional classroom-based pre-engineering program. The new program is geared towards helping students understand the entire manufacturing process. Previously, a JHHS student would design a project in computer-aided design (CAD) software…
Descriptors: Computer Assisted Design, Computers, Manufacturing, Engineering Education
Jackson, Jim – Tech Directions, 2013
In this article, the author describes a program that he says has "made being smart cool." "FIRST" (For Inspiration and Recognition of Science and Technology) Robotics has made a significant contribution toward progress in advancing science, technology, engineering, and mathematics (STEM) courses and STEM careers with young people. "FIRST" Robotics…
Descriptors: Robotics, STEM Education, After School Programs, Secondary School Students
Hance, Dennis – Tech Directions, 2012
During the fall semester of 2010, mechanical engineering students from Edison State Community College and Wright State University shared their skills and knowledge with students from the Upper Valley JVS (UVJVS) pre-engineering technology program in a highly motivating robotics activity. The activity culminated in 47 teams from regional high…
Descriptors: Competition, Engineering Technology, Robotics, College School Cooperation
Van Name, Barry – Tech Directions, 2012
There is a battlefield where no quarter is given, no mercy shown, but not a single drop of blood is spilled. It is an arena that witnesses the bringing together of high-tech design and manufacture with the outpouring of brute force, under the remotely accessed command of some of today's brightest students. This is the world of battling robots, or…
Descriptors: Females, Engineering, Computer Assisted Design, High School Students
Black, Dan; Zeigler, Jodi – Tech Directions, 2011
As educators, the authors believe in guiding students towards the life skills, knowledge, and expertise they need to succeed in life and in the workforce of the 21st century. With that in mind, they have created a project in which students drive their own learning through creativity and collaborative work to develop an efficient product. Through…
Descriptors: Middle School Students, Learning Activities, Group Activities, Robotics
LeBlanc, Cheryl – Tech Directions, 2011
A robotics team from Muncie, Indiana--the PhyXTGears--is made up of high school students from throughout Delaware County. The group formed as part of the FIRST Robotics program (For Inspiration and Recognition of Science and Technology), an international program founded by inventor Dean Kamen in which students work with professional engineers and…
Descriptors: Mentors, Robotics, High School Students, Science Activities
Caron, Darrell – Tech Directions, 2010
This article features Advanced Competitive Science (ACS), a two-year course introduced by a science teacher, Joe Pouliot, in 2004 at Trinity High School in Manchester, New Hampshire. More than a traditional STEM (science, technology, engineering, and math) course, ACS harnesses the excitement of robotics competitions to promote student…
Descriptors: Majors (Students), Student Projects, Physics, Active Learning
Johnson, Richard T.; Londt, Susan E. – Tech Directions, 2010
Competitive robotics as an interactive experience can increase the level of student participation in technology education, inspire students to consider careers in technical fields, and enhance the visibility of technology education programs. Implemented correctly, a competitive robotics program can provide a stimulating learning environment for…
Descriptors: Student Participation, Robotics, Technology Education, Program Implementation
Grambo, Alan A. – Tech Directions, 2007
In this article, the author describes how electronics students at Central Nine Career Center designed a kill switch circuit to stop a runaway lawnmower. This project is ideal for a career center since the electronics/robotics, small engines and horticulture classes can all work together on their respective parts of the modification, installation…
Descriptors: Engines, Electronics, Career Centers, Robotics
Gorman, Lynn – Tech Directions, 2007
In this article, the author describes how students in Kirk Marshall's industrial technology class at Bloomsburg Area High School, Pennsylvania, designed and manufactured battling robots (BattleBots) and their participation in an annual national robotics competition. According to Marshall, designing and building a complex robot would be virtually…
Descriptors: Competition, Robotics, Computer Assisted Design, Computers
Roman, Harry T. – Tech Directions, 2006
Robots are simply computers that can interact with their environment. Some are fixed in place in industrial assembly plants for cars, appliances, micro electronic circuitry, and pharmaceuticals. Another important category of robots is the mobiles, machines that can be driven to the workplace, often designed for hazardous duty operation or…
Descriptors: Robotics, Technology Education, Class Activities
Ivey, Debra; Quam, Greg – Tech Directions, 2009
This article discusses the 4-H Gateway Academies specifically designed to enhance science, technology, engineering, and math (STEM) skills and knowledge in middle school youth. The innovative summer day camps partnered Project Lead the Way--trained teachers with county 4-H staff from University of Wisconsin-Extension (UW-Extension) Cooperative…
Descriptors: Extension Education, Team Training, Partnerships in Education, Leadership

Bowden, Tom – Tech Directions, 1998
The FIRST (For Inspiration and Recognition of Science and Technology) Robotics Competition is a national contest that immerses high school students into the world of mathematics, science, and technology. Students get a hands-on, inside look at the world of engineering and technology. (JOW)
Descriptors: Mathematics, Robotics, Sciences, Secondary Education
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