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Articles 901 - 930 of 2087
Full-Text Articles in Science and Mathematics Education
The Scientific Teaching Practices Survey For Undergraduate Stem Courses, Mary F. Durham, Jenny K. Knight, Brian Couch
The Scientific Teaching Practices Survey For Undergraduate Stem Courses, Mary F. Durham, Jenny K. Knight, Brian Couch
Discipline-Based Education Research Group Speaker Series
The National Academies Summer Institutes on Undergraduate Education (SI) is a faculty development workshop in which STEM instructors are trained in the Scientific Teaching (ST) pedagogy and encouraged to implement its practices at their home institutions. While participants generally report positive experiences at the SI, it remains unclear how these experiences affect instructors’ teaching practices and associated student outcomes. As part of a larger effort to evaluate the SI, we developed a survey to gauge the frequencies of ST practices that could occur in undergraduate STEM courses. The ST Practices Survey is derived from the observable teaching practices described in …
Using Just-In-Time Teaching In A Flipped Undergraduate Biological Systems Engineering Course, Jeyamkondan Subbiah
Using Just-In-Time Teaching In A Flipped Undergraduate Biological Systems Engineering Course, Jeyamkondan Subbiah
Discipline-Based Education Research Group Speaker Series
This study analyzed the role of the evidence-based instructional practice of Just-in-time (JIT) teaching integrated with the flipped classroom in an undergraduate biological systems engineering course. In the present paper we provide a detailed overview of the course design, development, and implementation of JIT in a flipped approach to instruction by communicating the technologies used, pedagogy employed to integrate online and in-class activities, and the collaboration between the instructional design support and instructor. Based on the results, we provide recommendations for engineering faculty that want to explore the flipped approach to teaching, examples for online learning activities and how to …
Using Interactive Engagement Strategies To Enhance Learning In College Science Courses, Bailey Z. Kreager, Leilani Arthurs
Using Interactive Engagement Strategies To Enhance Learning In College Science Courses, Bailey Z. Kreager, Leilani Arthurs
Discipline-Based Education Research Group Speaker Series
The number of decreasing science majors in U.S. institutions of higher education is connected to the quality of science instruction (Seymour, 1994; Daempfle, 2003) and resulted in nation-wide efforts to improve the quality of college-level science education (National Committee on Science Education Standards and Assessment et al., 1996; NGSS Lead States, 2013). This talk presents historical trends in the adoption of interactive engagement (IE) strategies in college-level science courses and presents one such IE strategy, lecture tutorials (LTs), in the context of sedimentology and stratigraphy.
To determine historical trends in the adoption of IE strategies, peer-reviewed journal articles accessible via …
The Cantor Set Before Cantor, Nicholas A. Scoville
The Cantor Set Before Cantor, Nicholas A. Scoville
Topology
A special construction used in both analysis and topology today is known as the Cantor set. Cantor used this set in a paper in the 1880s. Yet it appeared as early as 1875 in a paper by the Irish mathematician Henry John Stephen Smith (1826 - 1883). Smith, who is best known for the Smith normal form of a matrix, was a professor at Oxford who made great contributions in matrix theory and number theory. In this project, we will explore parts of a paper he wrote titled On the Integration of Discontinuous Functions.
Topology From Analysis, Nicholas A. Scoville
Topology From Analysis, Nicholas A. Scoville
Topology
Topology is often described as having no notion of distance, but a notion of nearness. How can such a thing be possible? Isn't this just a distinction without a difference? In this project, we will discover the notion of nearness without distance by studying the work of Georg Cantor and a problem he was investigating involving Fourier series. We will see that it is the relationship of points to each other, and not their distances per se, that is a proper view. We will see the roots of topology organically springing from analysis.
Academic Factors That Predict Community College Students’ Acceptance Of Evolution, Meredith Anne Dorner
Academic Factors That Predict Community College Students’ Acceptance Of Evolution, Meredith Anne Dorner
Educational Studies Dissertations
There is great disagreement in the United States about with how evolution education should be dealt, as the acceptance of evolution is controversial among the general public of the United States. Furthermore, although a plethora of research has been conducted to understand which factors influence the understanding and acceptance of evolution among high school and university students -- and the general public -- there are few studies focusing on community college students. In an effort to help fill this gap in the literature, this dissertation investigates the relationship between the acceptance of evolution and academic factors among community college students. …
Connecting Connectedness, Nicholas A. Scoville
The Exigency Of The Euclidean Parallel Postulate And The Pythagorean Theorem, Jerry Lodder
The Exigency Of The Euclidean Parallel Postulate And The Pythagorean Theorem, Jerry Lodder
Geometry
No abstract provided.
Undergraduate Students' Goals For Chemistry Laboratory Coursework, Brittland K. Dekorver
Undergraduate Students' Goals For Chemistry Laboratory Coursework, Brittland K. Dekorver
Open Access Dissertations
Chemistry laboratory coursework has the potential to offer many benefits to students, yet few of these learning goals are realized in practice. Therefore, this study seeks to characterize undergraduate students’ learning goals for their chemistry laboratory coursework. Data were collected by recording video of students completing laboratory experiments and conducting interviews with the students about their experiences that were analyzed utilizing the frameworks of Human Constructivism and Self-Regulated Learning. A cross-sectional sampling of students allowed comparisons to be made among students with varying levels of chemistry experience and interest in chemistry. The student goals identified by this study were compared …
Appalachian Technology Initiative, Paul David Green
Appalachian Technology Initiative, Paul David Green
Morehead State Theses and Dissertations
A capstone submitted in partial fulfillment of the requirements for the degree of Doctor of Education in the College of Education at Morehead State University by Paul David Green on March 28, 2016.
Living Learning Communities: An Intervention In Keeping Women Strong In Science, Technology, Engineering, And Mathematics, Jennifer Belichesky-Larson
Living Learning Communities: An Intervention In Keeping Women Strong In Science, Technology, Engineering, And Mathematics, Jennifer Belichesky-Larson
LMU Theses and Dissertations
The purpose of this study was to expand on the current research pertaining to women in science, technology, engineering, and mathematics (STEM) majors, better understand the experiences of undergraduate women in the sciences, identify barriers to female persistence in their intended STEM majors, and understand the impact of the STEM co-educational Living Learning Community (LLC) model on female persistence. This study employed a mixed-methods approach that was grounded in standpoint methodology. The qualitative data were collected through focus groups and one-on-one interviews with the female participants and was analyzed through a critical feminist lens utilizing standpoint methodology and coded utilizing …
A Retrospective On Student Learning And Acceptance Of Evolutionary Science, Lawrence C. Scharmann
A Retrospective On Student Learning And Acceptance Of Evolutionary Science, Lawrence C. Scharmann
Discipline-Based Education Research Group Speaker Series
In this presentation, I provide an analysis of my work (1985-present) with non-major biology students and science teacher candidates in developing strategies for teaching and enhancing learning with respect to Evolutionary Science.
Remember Embers: Model-Based Reasoning, Collaborative Teams And Much More!, David Gosselin
Remember Embers: Model-Based Reasoning, Collaborative Teams And Much More!, David Gosselin
Discipline-Based Education Research Group Speaker Series
Studies of interdisciplinary research teams indicate that team members struggle to achieve knowledge integration across disciplines. Knowledge integration across disciplines is at the heart of addressing important research challenges, such as impacts of global change, trade-offs between water, food, and energy production, and the need for sustainable cities. The EMBeRS Project is testing a new model for integrating knowledge across disciplines based on cognitive science theories of model-based reasoning. The project will create educational materials to train students to overcome the barriers to integrating knowledge across disciplines.
Issues arise due to the inability of team members to work collaboratively in …
Enriching Student’S Online Homework Experience In Pre-Calculus Courses: Hints And Cognitive Supports, Nathan Wakefield
Enriching Student’S Online Homework Experience In Pre-Calculus Courses: Hints And Cognitive Supports, Nathan Wakefield
Discipline-Based Education Research Group Speaker Series
As part of reforming our Pre-Calculus courses we realized that reforms to instruction needed to be accompanied by reforms to the homework. Homework is completed online using an open-source homework system. In this study we investigated and implemented a new means of providing our students more support on missed questions. Utilizing a new WebWorK “hints” feature and leveraging our network of experienced high-school teachers we developed leading questions and helps to prompt student thinking over procedures. Preliminary data shows many students are using these hints and the hints are working as intended. In this presentation I will discuss the development …
Student-Teacher Affect In Stem College Course Transformation, Matthew T. Patton, Leilani Arthurs
Student-Teacher Affect In Stem College Course Transformation, Matthew T. Patton, Leilani Arthurs
Discipline-Based Education Research Group Speaker Series
Despite federal efforts to support the propagation of active-learning strategies in introductory college science, technology, engineering, and mathematics (STEM) courses, instructor adoption of these strategies lags behind the published research that touts their efficacy for students’ learning. Possible reasons for this lag are varied and, herein, we investigate the potential role that students play in STEM instructors’ decisions on whether and how to adopt active-learning strategies. Our study was conducted at a large public university in the Midwest. Grounded in social cognitive theory, we use a mixed methods approach that combines 34 classroom observations, one-onone interviews with students (n=57) and …
Pre-College Deaf Students’ Understanding Of Fractional Concepts: What We Know And What We Do Not Know, Keith Mousley, Christopher Kurz
Pre-College Deaf Students’ Understanding Of Fractional Concepts: What We Know And What We Do Not Know, Keith Mousley, Christopher Kurz
Journal of Science Education for Students with Disabilities
Mathematical knowledge and skills are crucial to success in academics and the workplace. The Common Core State Standards emphasizes fraction teaching and learning in elementary school. This mixed-method study explores fraction concept understanding among 14 deaf and hard of hearing participants between the ages of 8 and 16, as quantitatively measured by their ability to describe the properties of fractional numbers, convert between fractional numbers and their visual representations, and determine the order and equivalence of fractional numbers. Furthermore, the qualitative study was supplemented by interviews with the deaf participants and surveys with their parents and teachers to examine use …
Fostering An Inclusive Stem Workforce, Cary A. Supalo Dr.
Fostering An Inclusive Stem Workforce, Cary A. Supalo Dr.
Journal of Science Education for Students with Disabilities
The following keynote address was delivered by Dr. Cary A. Supalo at the 2015 Training Workforce and Development and diversity conference which is one of the divisions that is part of NIH’s general medical sciences. This conference was attended by over 500 program directors from all of the T32 sponsored projects in 2015. This presentation discussed the importance of a full inclusive STEM workforce that includes persons with disabilities
Random Number Simulations Reveal How Random Noise Affects The Measurements And Graphical Portrayals Of Self-Assessed Competency, Edward Nuhfer, Christopher Cogan, Steven Fleisher, Eric Gaze, Karl Wirth
Random Number Simulations Reveal How Random Noise Affects The Measurements And Graphical Portrayals Of Self-Assessed Competency, Edward Nuhfer, Christopher Cogan, Steven Fleisher, Eric Gaze, Karl Wirth
Numeracy
Self-assessment measures of competency are blends of an authentic self-assessment signal that researchers seek to measure and random disorder or "noise" that accompanies that signal. In this study, we use random number simulations to explore how random noise affects critical aspects of self-assessment investigations: reliability, correlation, critical sample size, and the graphical representations of self-assessment data. We show that graphical conventions common in the self-assessment literature introduce artifacts that invite misinterpretation. Troublesome conventions include: (y minus x) vs. (x) scatterplots; (y minus x) vs. (x) column graphs aggregated as quantiles; line …
6.0.B Discussion Historical Idea Of Heat As Substance, Christopher F. Bauer
6.0.B Discussion Historical Idea Of Heat As Substance, Christopher F. Bauer
Day 06 Feb 10 Gas properties and laws. Historical ideas about heat.
WELCOME to WINDOWS on the INQUIRY CLASSROOM!
You have landed on a piece of a National Science Foundation Project (DUE 1245730) directed by Professor Chris Bauer, Chemistry Department, University of New Hampshire. This is one part of a completely documented inquiry-based university science course called “Fire & Ice” which explores the nature of heat and temperature. There are multiple video perspectives and commentary from instructors and students, and documents of all course materials (agenda, instructions, student work). It’s too complicated to explain here. Take a look at the user orientation document at this link.
6.0.C.1 Hands-On Phase Properties Of Gases, Christopher F. Bauer
6.0.C.1 Hands-On Phase Properties Of Gases, Christopher F. Bauer
Day 06 Feb 10 Gas properties and laws. Historical ideas about heat.
WELCOME to WINDOWS on the INQUIRY CLASSROOM!
You have landed on a piece of a National Science Foundation Project (DUE 1245730) directed by Professor Chris Bauer, Chemistry Department, University of New Hampshire. This is one part of a completely documented inquiry-based university science course called “Fire & Ice” which explores the nature of heat and temperature. There are multiple video perspectives and commentary from instructors and students, and documents of all course materials (agenda, instructions, student work). It’s too complicated to explain here. Take a look at the user orientation document at this link.
6.0.A Daily Outline, Christopher F. Bauer
6.0.A Daily Outline, Christopher F. Bauer
Day 06 Feb 10 Gas properties and laws. Historical ideas about heat.
WELCOME to WINDOWS on the INQUIRY CLASSROOM!
You have landed on a piece of a National Science Foundation Project (DUE 1245730) directed by Professor Chris Bauer, Chemistry Department, University of New Hampshire. This is one part of a completely documented inquiry-based university science course called “Fire & Ice” which explores the nature of heat and temperature. There are multiple video perspectives and commentary from instructors and students, and documents of all course materials (agenda, instructions, student work). It’s too complicated to explain here. Take a look at the user orientation document at this link.
6.0.C.2 Hands-On Phet Phase Properties, Christopher F. Bauer
6.0.C.2 Hands-On Phet Phase Properties, Christopher F. Bauer
Day 06 Feb 10 Gas properties and laws. Historical ideas about heat.
WELCOME to WINDOWS on the INQUIRY CLASSROOM!
You have landed on a piece of a National Science Foundation Project (DUE 1245730) directed by Professor Chris Bauer, Chemistry Department, University of New Hampshire. This is one part of a completely documented inquiry-based university science course called “Fire & Ice” which explores the nature of heat and temperature. There are multiple video perspectives and commentary from instructors and students, and documents of all course materials (agenda, instructions, student work). It’s too complicated to explain here. Take a look at the user orientation document at this link.
3.0.C Hands-On Liquid Nitrogen, Christopher F. Bauer
3.0.C Hands-On Liquid Nitrogen, Christopher F. Bauer
Day 03 Jan 29 The thermometer. Chemothermal sensation.
WELCOME to WINDOWS on the INQUIRY CLASSROOM!
You have landed on a piece of a National Science Foundation Project (DUE 1245730) directed by Professor Chris Bauer, Chemistry Department, University of New Hampshire. This is one part of a completely documented inquiry-based university science course called “Fire & Ice” which explores the nature of heat and temperature. There are multiple video perspectives and commentary from instructors and students, and documents of all course materials (agenda, instructions, student work). It’s too complicated to explain here. Take a look at the user orientation document at this link.
5.0.A Daily Outline, Chris F. Bauer
5.0.A Daily Outline, Chris F. Bauer
Day 05 Feb 05 Simulation of Particulate model for gases. Kinetic Molecular Theory
WELCOME to WINDOWS on the INQUIRY CLASSROOM!
You have landed on a piece of a National Science Foundation Project (DUE 1245730) directed by Professor Chris Bauer, Chemistry Department, University of New Hampshire. This is one part of a completely documented inquiry-based university science course called “Fire & Ice” which explores the nature of heat and temperature. There are multiple video perspectives and commentary from instructors and students, and documents of all course materials (agenda, instructions, student work). It’s too complicated to explain here. Take a look at the user orientation document at this link.
5.0.D Materials Day 5 Compressibility And Charles Law, Chris F. Bauer
5.0.D Materials Day 5 Compressibility And Charles Law, Chris F. Bauer
Day 05 Feb 05 Simulation of Particulate model for gases. Kinetic Molecular Theory
WELCOME to WINDOWS on the INQUIRY CLASSROOM!
You have landed on a piece of a National Science Foundation Project (DUE 1245730) directed by Professor Chris Bauer, Chemistry Department, University of New Hampshire. This is one part of a completely documented inquiry-based university science course called “Fire & Ice” which explores the nature of heat and temperature. There are multiple video perspectives and commentary from instructors and students, and documents of all course materials (agenda, instructions, student work). It’s too complicated to explain here. Take a look at the user orientation document at this link.
5.0.C.1 Hands-On Gas Law Experiments, Chris F. Bauer
5.0.C.1 Hands-On Gas Law Experiments, Chris F. Bauer
Day 05 Feb 05 Simulation of Particulate model for gases. Kinetic Molecular Theory
WELCOME to WINDOWS on the INQUIRY CLASSROOM!
You have landed on a piece of a National Science Foundation Project (DUE 1245730) directed by Professor Chris Bauer, Chemistry Department, University of New Hampshire. This is one part of a completely documented inquiry-based university science course called “Fire & Ice” which explores the nature of heat and temperature. There are multiple video perspectives and commentary from instructors and students, and documents of all course materials (agenda, instructions, student work). It’s too complicated to explain here. Take a look at the user orientation document at this link.
5.0.C.2 Hands-On Kinetic Theory Simulation, Chris F. Bauer
5.0.C.2 Hands-On Kinetic Theory Simulation, Chris F. Bauer
Day 05 Feb 05 Simulation of Particulate model for gases. Kinetic Molecular Theory
WELCOME to WINDOWS on the INQUIRY CLASSROOM!
You have landed on a piece of a National Science Foundation Project (DUE 1245730) directed by Professor Chris Bauer, Chemistry Department, University of New Hampshire. This is one part of a completely documented inquiry-based university science course called “Fire & Ice” which explores the nature of heat and temperature. There are multiple video perspectives and commentary from instructors and students, and documents of all course materials (agenda, instructions, student work). It’s too complicated to explain here. Take a look at the user orientation document at this link.
1.0.G Message End Of Class Day 1, Chris F. Bauer
1.0.G Message End Of Class Day 1, Chris F. Bauer
Day 01 Jan 20 Introduction to inquiry. Temperature perception.
WELCOME to WINDOWS on the INQUIRY CLASSROOM!
You have landed on a piece of a National Science Foundation Project (DUE 1245730) directed by Professor Chris Bauer, Chemistry Department, University of New Hampshire. This is one part of a completely documented inquiry-based university science course called “Fire & Ice” which explores the nature of heat and temperature. There are multiple video perspectives and commentary from instructors and students, and documents of all course materials (agenda, instructions, student work). It’s too complicated to explain here. Take a look at the user orientation document at this link.
1.0.H Question Bank Jan 20 Sensation, Chris F. Bauer
1.0.H Question Bank Jan 20 Sensation, Chris F. Bauer
Day 01 Jan 20 Introduction to inquiry. Temperature perception.
WELCOME to WINDOWS on the INQUIRY CLASSROOM!
You have landed on a piece of a National Science Foundation Project (DUE 1245730) directed by Professor Chris Bauer, Chemistry Department, University of New Hampshire. This is one part of a completely documented inquiry-based university science course called “Fire & Ice” which explores the nature of heat and temperature. There are multiple video perspectives and commentary from instructors and students, and documents of all course materials (agenda, instructions, student work). It’s too complicated to explain here. Take a look at the user orientation document at this link.
3.0.B Discussion Thermometer Development, Christopher F. Bauer
3.0.B Discussion Thermometer Development, Christopher F. Bauer
Day 03 Jan 29 The thermometer. Chemothermal sensation.
WELCOME to WINDOWS on the INQUIRY CLASSROOM!
You have landed on a piece of a National Science Foundation Project (DUE 1245730) directed by Professor Chris Bauer, Chemistry Department, University of New Hampshire. This is one part of a completely documented inquiry-based university science course called “Fire & Ice” which explores the nature of heat and temperature. There are multiple video perspectives and commentary from instructors and students, and documents of all course materials (agenda, instructions, student work). It’s too complicated to explain here. Take a look at the user orientation document at this link.