Publication Date
In 2025 | 0 |
Since 2024 | 1 |
Since 2021 (last 5 years) | 1 |
Since 2016 (last 10 years) | 5 |
Since 2006 (last 20 years) | 18 |
Descriptor
Biological Sciences | 35 |
Inquiry | 35 |
Science Education | 35 |
Science Instruction | 16 |
Teaching Methods | 13 |
Earth Science | 12 |
Physical Sciences | 12 |
Secondary School Science | 11 |
Science Activities | 9 |
Secondary Education | 9 |
Space Sciences | 9 |
More ▼ |
Source
Author
Publication Type
Education Level
Elementary Secondary Education | 7 |
Higher Education | 6 |
Postsecondary Education | 6 |
Kindergarten | 4 |
Middle Schools | 4 |
Secondary Education | 4 |
Early Childhood Education | 3 |
Elementary Education | 2 |
Grade 1 | 2 |
Grade 2 | 2 |
Grade 3 | 2 |
More ▼ |
Audience
Teachers | 9 |
Practitioners | 7 |
Administrators | 1 |
Location
Australia | 2 |
Canada | 2 |
United States | 2 |
Israel | 1 |
Massachusetts | 1 |
Missouri | 1 |
Nebraska | 1 |
New Mexico | 1 |
New York | 1 |
North Carolina | 1 |
Philippines | 1 |
More ▼ |
Laws, Policies, & Programs
Assessments and Surveys
National Assessment of… | 1 |
What Works Clearinghouse Rating
Lilin Tong; Bethany J. G. White; Jastaranpreet Singh – Journal of Biological Education, 2024
There is widespread misuse of statistics in research, particularly in the life sciences, which is one of the contributing factors to reproducibility concerns in research. However, the formal quantitative training that life sciences research trainees receive is often quite limited. Our survey of statistics requirements in undergraduate life…
Descriptors: Interdisciplinary Approach, Statistics, Statistics Education, Biological Sciences
Antonio, Ronilo Palle – International Journal of Research in Education and Science, 2020
This study designed and examined the effects of Metacognitive and Argument-Driven Learning Environment (MADLE) in cultivating students' reflective thinking skills. The study involved a group of third-year Biological Science Education students (n=23) in a state university in the Philippines. The study employed a mixed-method approach, where both…
Descriptors: Skill Development, Thinking Skills, Reflection, Metacognition
Aldahmash, Abdulwali H.; Mansour, Nasser S.; Alshamrani, Saeed M.; Almohi, Saeed – Research in Science Education, 2016
This study examines Saudi Arabian middle school science textbooks' coverage of the essential features of scientific inquiry. All activities in the middle school science textbooks and workbooks were analyzed by using the scientific inquiry "essential features" rubric. The results indicated that the essential features are included in about…
Descriptors: Science Activities, Foreign Countries, Middle School Students, Textbooks
Hunter, Jeffrey C. – Education, 2014
The National Science Education Standards (NSES) and the Biological Science Curriculum Study (BSCS) address the need for teachers to move classrooms toward an inquiry approach to learning. Currently, there is movement toward a new structure for science standards, the Next Generation Science Standards (NGSS). In this article, I will take the five…
Descriptors: Science Education, Science Laboratories, Inquiry, Learner Engagement
Eckhoff, Angela – Early Childhood Education Journal, 2017
This article documents a collaborative project involving preservice early childhood education students' development of inquiry-based learning experiences alongside kindergarten students within a science methods course. To document this project, I utilized a multiple methods approach and data included classroom observations, transcripts from lesson…
Descriptors: Preservice Teachers, Preservice Teacher Education, Science Education, Methods Courses
Romesburg, H. Charles – American Biology Teacher, 2014
This article explains four kinds of inquiry exercises, different in purpose, for teaching advanced-level high school and college students the hypothetico-deductive (H-D) method. The first uses a picture of a river system to convey the H-D method's logic. The second has teams of students use the H-D method: their teacher poses a hypothesis…
Descriptors: Logical Thinking, Abstract Reasoning, Inquiry, Hypothesis Testing
Porter-Magee, Kathleen, Ed.; Wright, Brandon, Ed.; Horn, Laurel, Ed. – Thomas B. Fordham Institute, 2013
With states weighing whether to adopt the Next Generation Science Standards (NGSS), this analysis from the Thomas B. Fordham Institute compares the existing science standards of thirty-eight states with the NGSS and with exemplary standards from three other states. The K-12 science standards were compared for states whose expectations were either…
Descriptors: Academic Standards, State Standards, Science Education, Elementary Secondary Education
Firn, Jennifer – Journal of University Teaching and Learning Practice, 2015
Biology is the most rapidly evolving scientific field of the 21st century. Biology graduates must be able to integrate concepts and collaborate outside their discipline to solve the most pressing questions of our time, e.g. world hunger, malnutrition, climate change, infectious disease and biosecurity. University educators are attempting to…
Descriptors: Foreign Countries, College Faculty, College Graduates, Undergraduate Students
Yamaguchi, Ryoko; Hall, Adam – National Center for Education Research, 2016
This compendium organizes information on the math and science projects sponsored by NCER and NCSER into two main sections: Mathematics and Science. Within each section, projects are sorted into chapters based on content area, grade level, and intended outcome. In determining the chapters, we considered the emerging college- and career-readiness…
Descriptors: Mathematics Education, Science Education, Educational Research, Preschool Education
Lerner, Lawrence S.; Goodenough, Ursula; Lynch, John; Schwartz, Martha; Schwartz, Richard – Thomas B. Fordham Institute, 2012
This report examines K-12 science standards for fifty states and the District of Columbia, as well as the science assessment framework of the National Assessment of Educational Progress (NAEP). The reviewers' aim is to evaluate them for their intrinsic clarity, completeness, and scientific correctness. Their earlier evaluations, as well as those…
Descriptors: Elementary Secondary Education, National Competency Tests, Science Education, Academic Standards
Harris, Karleah – ProQuest LLC, 2010
The study examines kindergarten students' explanations during science learning. The data on children's explanations are drawn from videotaped and transcribed discourse collected from four public kindergarten science classrooms engaged in a life science inquiry unit on the life cycle of the monarch butterfly. The inquiry unit was implemented as…
Descriptors: Kindergarten, Scientific Literacy, Video Technology, Biological Sciences
Kim, Mihyeon; Bland, Lori C.; Chandler, Kimberley – Science and Children, 2009
"The Wheel of Scientific Investigation and Reasoning" (Kramer 1987; Paul and Binker 1992) is a graphic representation of the scientific investigative process. The scientific process is depicted in a wheel rather than in a list because "the process of scientific inquiry can begin from any stage, and that stage may be revisited as often as the…
Descriptors: Biological Sciences, Science Education, Science Activities, Inquiry
Llewellyn, Douglas – Corwin, 2010
Given that each child learns differently, it makes sense that one type of science instruction does not fit all. Best-selling author Douglas Llewellyn gives teachers standards-based strategies for differentiating inquiry-based science instruction to more effectively meet the needs of all students. This book takes the concept of inquiry-based…
Descriptors: Student Motivation, Earth Science, Biological Sciences, Science Instruction
Nebraska Department of Education, 2010
This publication presents the Nebraska Science Standards for Grades K-12. The standards are presented according to the following grades: (1) Grades K-2; (2) Grades 3-5; (3) Grades 6-8; and (4) Grades 9-12.
Descriptors: Elementary Secondary Education, State Standards, Academic Standards, Academic Achievement
Osler, James E.; Hollowell, Gail P.; Nichols, Stacy M. – Journal of Educational Technology, 2012
Technology Engineering is an innovative component of a much larger arena of teaching that effectively uses interactive technology as a method of enhancing learning and the learning environment. Using this method to teach science and math content empowers the teacher and enhances the curriculum as the classroom becomes more efficient and effective.…
Descriptors: Science Education, Academic Achievement, Productivity, School Holding Power