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Garimella, Umadevi; Sahin, Nesrin – Science Teacher, 2021
One way to develop a cross-curricular lesson is to select the most common mathematical formulas used in science and carefully develop and implement tasks that allow students to make connections between the mathematical representations and theoretical/physical science concepts. The slope-intercept formula, which is used to study relationships…
Descriptors: Science Instruction, Thermodynamics, Mathematical Formulas, Mathematical Concepts
Bushweller, Kevin C., Ed. – Education Week, 2017
This report, the 20th edition of "Technology Counts," examines how schools are tackling tech training for teachers, "passive" vs. "active" use of digital tools, and online learning needs. Contents include: (1) Tracking 20 Years of Change in Ed Tech (Kevin C. Bushweller); (2) Poor Students Face Digital Divide in How…
Descriptors: Educational Technology, Technology Uses in Education, Teacher Education, Technological Literacy
Johnston, Jennifer; Riordain, Maire Ni; Walshe, Grainne – Journal on School Educational Technology, 2014
The concept and importance of curriculum integration in Science and Mathematics has come to the fore in the recent years (Czerniak, 2007). Ireland's Science and Mathematics performance is well documented and extensively reported in the media and elsewhere (e.g. Expert Group on Future Skills Needs, 2008; Task Force on the Physical Sciences, 2002).…
Descriptors: Educational Technology, Technology Uses in Education, Science Instruction, Mathematics Instruction
Young, Vaneica Y. – Journal of Chemical Education, 2011
This technology report alerts upper-division undergraduate chemistry faculty and lecturers to the use of Texas Instruments emulators as virtual graphing calculators. These may be used in multimedia lectures to instruct students on the use of their graphing calculators to obtain solutions to complex chemical problems. (Contains 1 figure.)
Descriptors: Chemistry, Graphing Calculators, Teaching Methods, Science Instruction
Hamalainen, Ari; Abbott, David – Physics Teacher, 2010
Before the advent of microcomputer-based labware (MBL), "time-of-flight" measurements for the speed of a transverse pulse on a string required elegant apparatus. This paper describes how to use an off-the-shelf MBL force sensor and a computer to perform the measurement. The data shown in this paper were collected using Vernier Software's wireless…
Descriptors: Computer Software, Graphing Calculators, Science Instruction, Physics
Smirnov, Eugeny; Bogun, Vitali – Online Submission, 2011
New methodologies in science (or mathematics) learning process and scientific thinking in the classroom activity of engineer students with ICT (information and communication technology), including graphic calculator are presented: visual modelling with ICT, action research with graphic calculator, insight in classroom and communications and…
Descriptors: Foreign Countries, High School Students, Program Effectiveness, Computer System Design
Heavers, Richard M. – Physics Teacher, 2007
Our students like using the covers of their TI graphing calculators in an inquiry-based extension of a traditional exercise that challenges their preconceived ideas about friction. Biology major Fiona McGraw (Fig. 1) is obviously excited about the large coefficient of static friction ([mu][subscript s] = 1.3) for the four little rubber feet on her…
Descriptors: Mechanics (Physics), Graphing Calculators, Scientific Principles, Inquiry
Huggins, Elisha – Physics Teacher, 2007
Much like a physical prism, which displays the frequency components of a light wave, Fourier analysis can be thought of as a mathematical prism that can tell us what harmonics or frequency components are contained in a recording of a sound wave. We wrote the MacScope II program so that the user could not only see a plot of the harmonic amplitudes…
Descriptors: Science Activities, Optics, Acoustics, Graphing Calculators
Chamblee, Gregory E.; Slough, Scott W.; Wunsch, Gaye – Journal of Computers in Mathematics and Science Teaching, 2008
This article discusses the impact of a year long professional development on high school mathematics teachers' concerns regarding the implementation of graphing calculators in their classrooms. Teachers' concerns were assessed at the beginning and end of the yearlong professional development using the Concerns Based Adoption Model Stages of…
Descriptors: Graphing Calculators, Mathematics Teachers, High Schools, Faculty Development
Moore-Russo, Deborah A.; Cortes-Figueroa, Jose E.; Schuman, Michael J. – Journal of Chemical Education, 2006
The use of Calculator-Based Laboratory (CBL) technology, the graphing calculator, and the cooling and heating of water to model the behavior of consecutive first-order reactions is presented, where B is the reactant, I is the intermediate, and P is the product for an in-class demonstration. The activity demonstrates the spontaneous and consecutive…
Descriptors: Heat, Graphing Calculators, Laboratory Equipment, Science Experiments
Lyublinskaya, Irina; Zhou, George – Journal of Computers in Mathematics and Science Teaching, 2008
Graphing calculators and data collection technology was integrated in an undergraduate science methods classes for preservice elementary school teachers. The study investigated whether preservice teachers' knowledge and comfort with the use of graphing calculator technology and their perspectives in the use of graphing calculator technology were…
Descriptors: Preservice Teachers, Methods Courses, Graphing Calculators, Teaching Methods
Promoting Graphical Thinking: Using Temperature and a Graphing Calculator to Teach Kinetics Concepts

Cortes-Figueroa, Jose E.; Moore-Russo, Deborah A. – Journal of Chemical Education, 2004
A combination of graphical thinking with chemical and physical theories in the classroom is encouraged by using the Calculator-Based Laboratory System (CBL) with a temperature sensor and graphing calculator. The theory of first-order kinetics is logically explained with the aid of the cooling or heating of the metal bead of the CBL's temperature…
Descriptors: Kinetics, Graphing Calculators, Scientific Concepts, Teaching Methods

Roser, Charles E.; McCluskey, Catherine L. – Journal of Chemical Education, 1999
Describes an adaptation of the chemistry of lightsticks to use the calculator-based laboratory (CBL) interface, a TI-82/83 graphing calculator, and an easily manufactured wooden block as the support system. (CCM)
Descriptors: Chemical Reactions, Chemistry, Graphing Calculators, Science Activities

Madden, Sean P.; Wilson, Wayne; Aichun Dong; Lynn Geiger; Mecklin, Christopher J. – Journal of Chemical Education, 2004
A demonstration, which shows that the graphing calculation can greatly supplement the computer and often eliminates the need for computers and science, is given. The graphic calculator is a handheld computer, more powerful than most sophisticated computer of 25 years ago.
Descriptors: Biochemistry, Multiple Regression Analysis, Graphing Calculators, Chemistry
Christmann, Edwin P.; Holy, Adam J. – Science Scope, 2005
In this article, the authors describe how to use a TI-73/83/84 graphing calculator and Vernier's LabPro/CBL2 probe system to take pH readings. This is not an endorsement of these products, but simply the authors' attempt to give readers an idea of what is involved in using this technology in the classroom. This activity can be accomplished using a…
Descriptors: Educational Technology, Graphing Calculators, Computers, Science Instruction