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Peer reviewedChamberlain, John – School Science Review, 1997
Discusses ways in which datalogging equipment can enable titration curves to be measured accurately and how computing power can be used to predict the shape of curves. Highlights include sources of error, use of spreadsheets to generate titration curves, titration of a weak acid with a strong alkali, dibasic acids, weak acid and weak base, and…
Descriptors: Computer Uses in Education, Measurement, Science Experiments, Science Instruction
Peer reviewedBindel, Thomas H. – Journal of Chemical Education, 1996
Presents experiments with lightsticks in which the activation energy for the light-producing reaction is determined. Involves monitoring the light intensity of the lightstick as a function of temperature. Gives students the opportunity to explore the concepts of kinetics and activation energies and the world of computer-interfaced experimentation…
Descriptors: Chemistry, Computer Uses in Education, Hands on Science, Science Experiments
Peer reviewedMitchell, James K.; And Others – American Biology Teacher, 1997
Describes an experiment to demonstrate a simple method for measuring fungus growth by monitoring the effect of temperature on the growth of Trichoderma viride. Among the advantages that this experimental model provides is introducing students to the importance of using the computer as a scientific tool for analyzing and presenting data. (AIM)
Descriptors: Botany, Computer Uses in Education, Data Analysis, Higher Education
Peer reviewedCawley, Martin James; Parkinson, John – School Science Review, 1995
Describes two spreadsheets for producing acid-base titration curves, one uses relatively simple cell formulae that can be written into the spreadsheet by inexperienced students and the second uses more complex formulae that are best written by the teacher. (JRH)
Descriptors: Acids, Chemistry, Computer Uses in Education, Graphs
Peer reviewedSartori, J.; And Others – American Journal of Physics, 1995
Describes hardware that enables the use of an IBM PC microcomputer as a frequency meter or a counter by using the parallel printer port. Eliminates the 16-bit time-day counter through the use of an external time base that can be conveniently set depending on the desired frequency range. (JRH)
Descriptors: Computer Interfaces, Computer Uses in Education, Higher Education, Measurement
Peer reviewedFox, John N.; And Others – American Biology Teacher, 1995
Describes a course for science education majors that explores the uses of computer-interfaced experiments in a variety of interesting activities. Several examples of biology experiments are given. (ZWH)
Descriptors: Biology, Computer Interfaces, Computer Uses in Education, Science Curriculum
Peer reviewedViiri, Jouni; Kettunen, Lasse – Physics Teacher, 1996
Presents the temperature profile of the Duracell Test Strip obtained using a Inframetrics 740 thermal imaging radiometer and ThermaGRAM95 software and compares this to the theoretical profile derived by Clark and Bonicamp. (JRH)
Descriptors: Computer Uses in Education, Electric Circuits, Elementary Secondary Education, Foreign Countries
Peer reviewedHunt, M. B.; Dingley, K. – Physics Education, 2002
Describes how the sound card of a personal computer can be used to collect data in physics experiments. Discusses gravity and simple waveforms. (Author/MM)
Descriptors: Computer Uses in Education, Gravity (Physics), Physics, Science Activities
Peer reviewedHitt, Darren L.; Lowe, Mary L. – Physics Teacher, 1996
Describes an experiment to study the motion of a rocket-propelled vehicle over the entire duration of the engine burn using a video system with a frame-by-frame playback and a Sonic Ranger for ultrasonic position movements. Enables students to study the impulse-momentum principle and the effects of a time-varying force. (JRH)
Descriptors: Computer Interfaces, Computer Uses in Education, Demonstrations (Science), Mechanics (Physics)
Peer reviewedReidl, Charles J., Jr. – Physics Teacher, 1995
Presents a procedure that students can use to determine the center of mass of a thin (two-dimensional), homogenous object experimentally, analytically, and numerically. Requires students to use three distinctly different approaches to a single problem and necessitates a combination of laboratory skills, a knowledge of fundamental calculus, and…
Descriptors: Computer Uses in Education, Physics, Problem Solving, Science Experiments
Peer reviewedO'Neill, Phil – Australian Science Teachers Journal, 1995
Descriptors: Computer Interfaces, Computer Uses in Education, Graphs, Population Growth
Peer reviewedPreston, Daryl W.; Good, R. H. – American Journal of Physics, 1996
Provides ideas and outcomes for nine computer laboratory experiments using a commercial eight-bit analog to digital (ADC) interface. Experiments cover statistics; rotation; harmonic motion; voltage, current, and resistance; ADC conversions; temperature measurement; single slit diffraction; and radioactive decay. Includes necessary schematics. (MVL)
Descriptors: Computer Interfaces, Computer Uses in Education, Electricity, Higher Education
Peer reviewedCrouch, R. David; And Others – Journal of Chemical Education, 1996
Describes a "Synthesis and Reactivity" curriculum that focuses on the correlation of laboratory experiments with lecture topics and the extension of laboratory exercises beyond the usual four-hour period. Highlights experiments developed and an out-of-class computational chemistry exercise using CAChe, a versatile molecular modeling…
Descriptors: Chemistry, Computer Software, Computer Uses in Education, Higher Education
Peer reviewedSoares, Allan; Creevy, Steven – School Science Review, 1995
Presents a distillation experiment that uses temperature sensors connected to a computer in place of thermometers, and enables the whole class to view the data on a monitor and interpret and discuss the data in real time. (JRH)
Descriptors: Chemistry, Computer Interfaces, Computer Uses in Education, Data Interpretation
Peer reviewedKistler, Robert A. – American Biology Teacher, 1995
Descriptors: Biology, Computer Uses in Education, Data Collection, Educational Technology


