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Hardy, Lisa; Dixon, Colin; Hsi, Sherry – Journal of the Learning Sciences, 2020
This paper contributes a theoretical framework informed by historical, philosophical and ethnographic studies of science practice to argue that data should be considered to be actively produced, rather than passively collected. We further argue that traditional school science laboratory investigations misconstrue the nature of data and overly…
Descriptors: Data Collection, Data Analysis, Science Instruction, Grade 9
Snapir, Zohar; Eberbach, Catherine; Ben-Zvi-Assaraf, Orit; Hmelo-Silver, Cindy; Tripto, Jaklin – International Journal of Science Education, 2017
Science education today has become increasingly focused on research into complex natural, social and technological systems. In this study, we examined the development of high-school biology students' systems understanding of the human body, in a three-year longitudinal study. The development of the students' system understanding was evaluated…
Descriptors: High School Students, Secondary School Science, Science Education, Biology
Figueiredo, M.; Esteves, L.; Neves, J.; Vicente, H. – Chemistry Education Research and Practice, 2016
This study reports the use of data mining tools in order to examine the influence of the methodology used in chemistry lab classes, on the weight attributed by the students to the lab work on learning and own motivation. The answer frequency analysis was unable to discriminate the opinions expressed by the respondents according to the type of the…
Descriptors: Data Collection, Data Analysis, Chemistry, Science Instruction
Rushton, Gregory T.; Criswell, Brett A.; McAllister, Nicole D.; Polizzi, Samuel J.; Moore, Lamesha A.; Pierre, Michelle S. – Journal of Chemical Education, 2014
Reaction kinetics is an axiomatic topic in chemistry that is often addressed as early as the high school course and serves as the foundation for more sophisticated conversations in college-level organic, physical, and biological chemistry courses. Despite the fundamental nature of reaction kinetics, students can struggle with transforming their…
Descriptors: Science Instruction, Chemistry, College Science, Kinetics
Rossi, Sabrina; Giordano, Enrica; Lanciano, Nicoletta – Physics Education, 2015
Many researchers have documented the difficulties for learners of different ages and preparations in understanding basic astronomical concepts. Traditional instructional strategies and communication media do not seem to be effective in producing meaningful understanding, or even induce misconceptions and misinterpretations. In line with recent…
Descriptors: Physics, Science Education, Earth Science, Astronomy
Morris, Bradley J.; Masnick, Amy M.; Baker, Katie; Junglen, Angela – International Journal of Science Education, 2015
A critical component of science and math education is reasoning with data. Science textbooks are instructional tools that provide opportunities for learning science content (e.g. facts about force and motion) and process skills (e.g. data recording) that support and augment reasoning with data. In addition, the construction and design of textbooks…
Descriptors: Middle Schools, Secondary School Science, Textbooks, Textbook Content
Huffling, Lacey; Tomasek, Terry; Matthews, Catherine; Benavides, Aerin; Carlone, Heidi; Hegedus, Tess – Science Teacher, 2014
Students today need advanced tools and competencies to succeed in the global economy. Technology can provide students with critical learning experiences but is often affordable only to affluent students. All students, regardless of socioeconomic status, deserve to use technology to create and innovate, communicate and collaborate, and gain the…
Descriptors: Science Instruction, Telecommunications, Handheld Devices, Educational Technology
Harris, Emily Mae – ProQuest LLC, 2017
This dissertation presents three interrelated studies examining opportunities for student learning through contributory citizen science (CS), where students collect and contribute data to help generate new scientific knowledge. I draw on sociocultural perspectives of learning to analyze three cases where teachers integrated CS into school science,…
Descriptors: Citizen Participation, Scientific Research, Elementary School Science, Secondary School Science
Posthuma-Adams, Erica – Journal of Chemical Education, 2014
As advanced placement (AP) teachers strive to implement the changes outlined in the AP chemistry redesign, they will have the opportunity to reflect on and evaluate their current practices. For many AP teachers, the new focus on conceptual understanding, reasoning, inquiry, and critical thinking over memorization and algorithmic problem solving…
Descriptors: Chemistry, Science Instruction, Science Curriculum, Advanced Placement
Blattner, Margaret; Hug, Barbara; Ogrodnik, Jon; Korol, Donna – Science Teacher, 2013
Generating, collecting, and analyzing data is an essential practice in the science classroom (NRC 2012). Taking this data and using it to craft an explanation that demonstrates understanding of content is another essential practice. But both practices can be challenging, and students often require teacher support to succeed. Accordingly, the…
Descriptors: Science Instruction, Teaching Methods, Secondary School Science, High Schools
Willis, Patrick – Science Teacher, 2014
When high school students are asked what's the best part of science class, many will say it's the field trips. Students enjoy engaging in authentic, community-based science outside the classroom. To capitalize on this, Patrick Willis created the Bird Box Survey Project for his introductory field biology class. The project takes students…
Descriptors: High School Students, Secondary School Science, Field Trips, Student Projects
Bellocchi, Alberto; King, Donna T.; Ritchie, Stephen M. – International Journal of Science Education, 2016
There is on-going international interest in the relationships between assessment instruments, students' understanding of science concepts and context-based curriculum approaches. This study extends earlier research showing that students can develop connections between contexts and concepts--called "fluid transitions"--when studying…
Descriptors: Comparative Analysis, Student Reaction, Chemistry, Science Education
MacKenzie, Ann Haley; McDowell, Brian – Science Scope, 2012
What do paleontologists, dinosaur tracks, and the nature of science have in common? They're combined here in an inquiry activity where students use methods of observation and inference to devise evidence-based explanations for the data they collect about dinosaur tracks, much like the methods used by paleontologists. Students then debate the…
Descriptors: Paleontology, Scientific Concepts, Interdisciplinary Approach, Science Instruction
Toplis, Rob – Research in Science Education, 2012
This paper reports an interpretive study that sought students' views about the role that practical work plays in their school science lessons. Twenty-nine students aged between 13 and 16 years were selected from three secondary schools in England. Data were collected from initial lesson observations and in-depth interviews in order to explore…
Descriptors: Foreign Countries, Educational Opportunities, Science Instruction, Secondary School Science
Johnson, Sue – School Science Review, 2012
The EU as a context for science lessons may be given scant attention but EU decision-making is a vital factor in everyday life. Lessons on the emergence of soil science with Charles Darwin's simple scientific experiments can be linked with competence through action, inclusion and argumentations in science lessons. Decisions about an EU Soil…
Descriptors: Soil Science, Foreign Countries, Scientific Concepts, Sustainable Development

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