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Biswas, Gautam; Rajendran, Ramkumar; Mohammed, Naveeduddin; Goldberg, Benjamin S.; Sottilare, Robert A.; Brawner, Keith; Hoffman, Michael – IEEE Transactions on Learning Technologies, 2020
Intelligent learning environments can be designed to support the development of learners' cognitive skills, strategies, and metacognitive processes as they work on complex decision-making and problem-solving tasks. However, the complexity of the tasks may impede the progress of novice learners. Providing adaptive feedback to learners who face…
Descriptors: Decision Making, Difficulty Level, Hierarchical Linear Modeling, Cognitive Processes
Kemple, Kristen M.; David, Gigi M. – Childhood Education, 2020
As educators and business people consider what children need to be successful in this rapidly changing society, creative and critical thinking, problem solving, communication, collaboration, and persistence are recognized as the most important skills for success in education and the workforce. Among these, creative thinking is referred to most…
Descriptors: Young Children, Creativity, Creative Development, Teaching Methods
Bartholomew, Scott; Strimel, Greg; Byrd, Vetria; Santana, Vanessa; Otto, Jackson; Laureano, Zach; DeRome, Brian – Technology and Engineering Teacher, 2020
By exposing students to the concept of digital agriculture earlier in their lives, they will be able to develop the proper mindset to advance the field further when they enter the professional world. Engaging students in activities such as the one described here, which center on the Grand Engineering Challenges and socially relevant contexts, may…
Descriptors: Data Use, Agriculture, Agricultural Occupations, Agricultural Production
Ruder, Suzanne; Brown, Patrick J. P.; Stanford, Courtney – Journal on Excellence in College Teaching, 2020
Process Oriented Guided Inquiry Learning (POGIL) is an active-learning pedagogy that emphasizes content mastery as well as the development of process skills like critical thinking and problem solving. Although published POGIL materials are available in several STEM disciplines, there are still a number of courses within a variety of disciplines…
Descriptors: Inquiry, Active Learning, Learning Activities, Critical Thinking
Nikula, Johannah; Neumayer DePiper, Jill; Driscoll, Mark – Grantee Submission, 2020
This article provides information to educational leaders about how to address the challenge of supporting students who are emergent multilingual--i.e., those identified as English Learners (ELs) by their schools--in middle grades mathematics classes. The ideas in this article draw on research and collaborations with hundreds of teachers across the…
Descriptors: Foreign Countries, Mathematics Skills, Mathematics Education, Mathematical Models
Daniel Edelen; Heather Simpson; Sarah B. Bush – Mathematics Teacher: Learning and Teaching PK-12, 2020
Creating opportunities for students to learn mathematics in authentic ways is key to positioning them as the problem solvers of tomorrow. Outside the classroom, mathematics does not exist in a vacuum but rather as an integrated part of everyday life. This work centers on meaningfully engaging students in grade-level mathematics content and…
Descriptors: STEM Education, Art Education, Mathematics Education, Elementary School Students
Geske, Matthew – Physics Teacher, 2019
Many introductory physics courses begin with the teaching of motion and kinematics. This naturally leads to the use of constant acceleration equations to solve various problems involving common motions (free fall being a notable example). Students can sometimes get the impression that these equations are the only thing they need to remember in…
Descriptors: Physics, Science Instruction, Scientific Concepts, Introductory Courses
Lee, Joohi; Junoh, Jo – Early Childhood Education Journal, 2019
Coding is defined as the "process of assigning a code (command/rule)" (http://Techopedia.com) that allows a machine or a person to act or move (McLennan, https://www.naeyc.org/resources/pubs/tyc/feb2017/creating-coding-stories-and-games, 2017). Though machines operated by a coding system are common in children's everyday lives, there has…
Descriptors: Coding, Early Childhood Education, Developmentally Appropriate Practices, Teaching Methods
Frensley, John – Physics Teacher, 2019
Traditional high school physics instruction often comes across as a mere extension of the mathematics classroom to many of our students. Solving numerical physics problems using structures such as the GUESS method (given, unknown, equation, substitute, solve) doesn't help students with conceptual understanding. With the advent of physics education…
Descriptors: High School Students, Secondary School Science, Physics, Science Process Skills
Smith, Catherine J.; Mansfield, Steven J.; Anderson, Edward A.; Burton, Jonathan W. – Journal of Chemical Education, 2019
Organic synthesis in a modern research laboratory uses state-of-the-art equipment to provide inert atmospheres, track reaction progress, and facilitate the purification of intermediates. Such facilities are not available in a high school laboratory. In this paper, synthetic organic chemistry is taken back to basics: A four step total synthesis of…
Descriptors: Science Instruction, Laboratory Experiments, Universities, Foreign Countries
Barrera, Luis A.; Alma C. Escobosa; Alsaihati, Laila S.; Noveron, Juan C. – Journal of Chemical Education, 2019
Herein we present a modified iodine clock experiment which replaces starch with cellulose paper. This provides the reaction with a white solid surface in which color change can be clearly observed and reduces reagent amounts required to 540 µL per group. After data acquisition, students are required to calculate reaction orders and the reaction…
Descriptors: Science Experiments, Chemistry, Kinetics, Science Laboratories
Palatnik, Alik; Sigler, Avi – International Journal of Mathematical Education in Science and Technology, 2019
The introduction of auxiliary elements as a method of solving problems in high-school geometry is considered here from two perspectives: first, to elicit recalling some known result or concretizing a definition and, second, as a means of shifting the focus and structure of the students' attention. We present and compare various examples of how…
Descriptors: Geometric Concepts, Geometry, Secondary School Mathematics, High School Students
Roupnel, Servane; Rinfre, Natalie; Grenier, Jennifer – Journal of Leadership Education, 2019
In order to respond to the many challenges that confront them, organizations must assist their leaders to develop their personal and professional strengths. The development of leaders and leadership involves more than just the development of knowledge and must become an integral part of the organizational culture so as to also develop know-how and…
Descriptors: Leadership Training, Coaching (Performance), Mentors, Experiential Learning
Sherin, Miriam Gamoran; Lynn, James – Mathematics Teaching in the Middle School, 2019
This article explores three processes involved in attending to evidence of students' thinking, one of the Mathematics Teaching Practices found in "Principles to Actions: Ensuring Mathematical Success for All." These processes, explored during a classroom activity on proportional relationships, are discussed in this article, another…
Descriptors: Mathematics Instruction, Thinking Skills, Problem Solving, Mathematics Skills
Coberly-Holt, Patricia; Elufiede, Kemi – Adult Higher Education Alliance, 2019
We currently find ourselves in the midst of the fourth industrial revolution, a time when everything around us is evolving at an exponential pace, which is disrupting virtually every industry around the globe. With today's transformations and changes in the workplace, there are skills needed to remain employed. As we continue along this path,…
Descriptors: Critical Thinking, Creative Thinking, Industrialization, Thinking Skills

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