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Showing 1 to 15 of 19 results Save | Export
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Emmanuel M. Preña; Cherrylyn P. Labayo – Policy Futures in Education, 2025
This paper investigates the experiences and impacts of extreme heat on the Philippine education system during the "summer" seasons of 2023 and 2024, drawing on publicly available data and news reports. It critically examines government responses to the unprecedented challenges posed by emerging extreme heat conditions as part of the new…
Descriptors: Foreign Countries, Heat, Government Role, Climate
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Pebralia, Jesi; Amri, Iful; Rifa'i, Ahmad Imam – Physics Education, 2022
This study has proposed a simple method to show the convective heat transfer. The object in this study is an air conditioner (AC) as a simple case of convection. In addition, AC is also easy to find in the class because most classrooms in Indonesia installed AC. Usually, a visualization needs special software (i.e. MatLab or others) and good…
Descriptors: Science Instruction, Heat, Thermodynamics, Climate Control
Olivia M. Reynolds – ProQuest LLC, 2022
Active learning is widely recognized as superior to traditional passive, lecture-based techniques for fostering learning in STEM courses. Interactive, hands-on learning where students interact with their peers and physical systems is an effective type of active learning. As the need for scientists and engineers continues to grow, understanding and…
Descriptors: Active Learning, Thermodynamics, Concept Formation, Undergraduate Students
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Míguez-Álvarez, Carla; Crespo, Bárbara; Arce, Elena; Cuevas, Miguel; Regueiro, Araceli – Interactive Learning Environments, 2022
The continued and substantial increase in technological resources generates a new concept of education that utilizes online resources -- blended learning. Blended learning represents a combination of face-to-face experiences and online learning experiences. The advantage of this multiple-method approach is that it offers the opportunity to achieve…
Descriptors: Teaching Methods, Blended Learning, Sustainability, Energy
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Jiang, Han; Iandoli, Matthew; Van Dessel, Steven; Liu, Shichao; Whitehill, Jacob – International Educational Data Mining Society, 2019
"Thermal comfort" (TC) -- how comfortable or satisfied a person is with the temperature of her/his surroundings -- is one of the key factors influencing the "indoor environmental quality" of schools, libraries, and offices. We conducted an experiment to explore how TC can impact students' learning. University students (n = 25)…
Descriptors: Climate, Heat, Environmental Influences, Climate Control
Joshua Goodman; Michael Hurwitz; R. Jisung Park; Jonathan Smith – Annenberg Institute for School Reform at Brown University, 2019
We demonstrate that heat inhibits learning and that school air-conditioning may mitigate this effect. Student fixed effects models using 10 million PSAT-retakers show hotter school days in years before the test reduce scores, with extreme heat being particularly damaging. Weekend and summer temperature has little impact, suggesting heat directly…
Descriptors: High School Students, Heat, Climate Control, Academic Achievement
Wallace, Dan – New England Journal of Higher Education, 2018
In the New England region, where temperatures range from below 0 to over 100 degrees, heating and cooling can present a major opportunity to improve sustainability statistics of a campus. Overt changes such as improving windows come to mind, but recent advancements in boiler technology and strategies for working with the heat of the sun and the…
Descriptors: College Environment, Heat, Climate Control, Equipment
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Jorgenson, Simon; Howard, Scott; Welch, Brianna Tyler – Social Studies and the Young Learner, 2018
Today more than ever, teachers must prepare young learners to understand and address complex social and environmental problems. Many of these problems are directly related to how humans use natural resources to meet their needs. This is a core concept in geography and geography education. The College, Career, and Civic Life (C3) Framework suggests…
Descriptors: Kindergarten, Human Geography, Experiential Learning, Preschool Teachers
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Roman, Harry T. – Tech Directions, 2012
When engineers design heat-pump-based geothermal heating systems for homes and other buildings, they can use coil loops buried around the perimeter of the structure to gather low-grade heat from the earth. As an alternative approach, they can drill well casings and store the summer's heat deep in the earth, then bring it back in the winter to warm…
Descriptors: Heat, Climate Control, Experiments, Engineering Education
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Martin, Paul; Premadasa, Kirthi – College Mathematics Journal, 2012
The project models the conductive heat loss through the ceiling of a home. Students are led through a sequence of tasks from measuring the area and insulation status of a home to developing several functions leading to a net savings function where the depth of insulation is the input. At this point students use calculus or a graphing utility to…
Descriptors: Models, Heat, Climate Control, Calculus
Pargeter, Stephen J. – Facilities Manager, 2012
Building owners are caught between two powerful forces--the need to lower energy costs and the need to meet or exceed outdoor air ventilation regulations for occupant health and comfort. Large amounts of energy are wasted each day from commercial, institutional, and government building sites as heating, ventilation, and air conditioning (HVAC)…
Descriptors: Ventilation, Climate Control, Energy Management, Heat
McKale, Chuck; Townsend, Scott – American School & University, 2012
Far from the limelight of LEED, Energy Star or Green Globes certifications are the energy codes developed and updated by the American Society of Heating, Refrigerating and Air-Conditioning Engineers (ASHRAE) and the International Code Council (ICC) through the support of the Department of Energy (DOE) as minimum guidelines for building envelope,…
Descriptors: Guidelines, Climate Control, Heat, Energy Conservation
VanOort, Adam – American School & University, 2012
Facility managers everywhere are tasked with improving energy efficiency to control costs. Those strides cannot be achieved at the expense of system performance and reliability, or the comfort of the people within those properties. There are few places where this is truer than in schools and universities. K-12 schools and university lecture spaces…
Descriptors: Energy Conservation, Educational Facilities Design, Facilities Management, Educational Environment
Kennedy, Mike – American School & University, 2011
Operating facilities more efficiently is always a worthwhile goal, but when education budgets are shrinking, the quest for efficiency becomes a necessity. In the funding climate that schools and universities find themselves, building managers will be fortunate to hang on to the budget they have, let alone receive the resources they need to address…
Descriptors: School Maintenance, Financial Support, Economic Climate, Climate Control
Wilkinson, Ron – American School & University, 2010
When construction slows and campus operating expenses are under the microscope, it is more important than ever to save energy dollars with the equipment and staff on hand. For the facilities manager who thinks out of the box, significant savings can be found on most school and college campuses. This article provides energy-conservation tips that…
Descriptors: Operating Expenses, School Buildings, Energy Conservation, Educational Facilities Design
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