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Annabelle T. Lolinco; Thomas A. Holme – Journal of Chemical Education, 2023
In a technology-centric world, leveraging digital tools such as chatbots allows educators to engage students in ways that may be more accessible for both parties, particularly in large lecture classrooms. This report details the development of an interactive web-based chatbot to curate content for writing about chemistry in context. Students were…
Descriptors: Chemistry, Science Instruction, Artificial Intelligence, Computer Software
Shao, Michael; Shiflett, Mark B. – Chemical Engineering Education, 2021
Simulation software has experienced growing interest in chemical engineering curriculums for its usage in commercial engineering practices. This article describes the ASPEN PlusĀ® version 10 (V10) simulations and a student teach students approach to integrate ASPEN in the chemical engineering curriculum at the University of Kansas (KU). Videos,…
Descriptors: Chemical Engineering, Teaching Methods, Computer Simulation, Computer Software
Guertin, Laura; Neville, Sara – Science Activities: Classroom Projects and Curriculum Ideas, 2011
The United States is currently experiencing its worst man-made environmental disaster, the BP Deepwater Horizon oil leak. The Gulf of Mexico oil spill is severe in its impact, but it is only one of several global oil spill disasters in history. Students can utilize the technology of Google Earth to explore the spatial and temporal distribution of…
Descriptors: Fuels, Environmental Education, Foreign Countries, Emergency Programs
Deal, Walter F., III – Technology and Engineering Teacher, 2010
There is considerable interest in electric and hybrid cars because of environmental and climate change concerns, tougher fuel efficiency standards, and increasing dependence on imported oil. In this article, the author describes the history of electric vehicles in the automotive world and discusses the components of a hybrid electric vehicle.…
Descriptors: Technological Literacy, Transportation, Sustainable Development, Energy Conservation
Utebay, Kudret – Educational Facility Planner, 2011
Every building, from the smallest school to the tallest skyscraper, uses energy. This energy is most often generated by burning fossil fuels, which releases greenhouse gases into the atmosphere and contributes to climate change. Existing commercial buildings offer a significant opportunity for low-cost, immediate emissions and energy cost…
Descriptors: Building Design, Fuels, Energy Conservation, Climate

Taylor, Charles O.; Gittinger, Jack D. – Technology Teacher, 1985
A program is presented, designed for the Apple II, which enables users to compute heat loss of a building and determine the total heating cost, regardless of the type of fuel. Variables to be considered are explained and a step-by-step explanation of the program is included. (CT)
Descriptors: Computer Software, Cost Effectiveness, Fuel Consumption, Fuels
Binous, Housam – Chemical Engineering Education, 2006
We show a new approach, based on the utilization of Mathematica, to solve gas permeation problems using membranes. We start with the design of a membrane unit for the separation of a multicomponent mixture. The built-in Mathematica function, FindRoot, allows one to solve seven simultaneous equations instead of using the iterative approach of…
Descriptors: Chemical Engineering, Mathematics, Computation, Problem Solving
Kolavennu, Panini K.; Telotte, John C.; Palanki, Srinivas – Chemical Engineering Education, 2006
The objective of this paper is to design a train of tubular reactors that use a methane feed to produce hydrogen of the desired purity so that it can be utilized by a fuel cell for automotive applications. Reaction engineering principles, which are typically covered at the undergraduate level, are utilized to design this reactor train. It is shown…
Descriptors: Chemical Engineering, Fuels, Laboratory Equipment, Transportation

Anderson, Bill D.; And Others – Mathematics Teacher, 1984
A previous article examined the amount of fuel that could constantly burn each second and achieve a safe landing. This article investigates some ways to burn variable amounts of fuel according to some mathematical function (such as an arithmetic progression). Several assumptions (such as a massless fuel) are made. (JN)
Descriptors: Computer Software, Fuels, High Schools, Mathematical Applications