Publication Date
In 2025 | 0 |
Since 2024 | 0 |
Since 2021 (last 5 years) | 2 |
Since 2016 (last 10 years) | 17 |
Since 2006 (last 20 years) | 17 |
Descriptor
Source
Science and Children | 17 |
Author
Masters, Heidi | 3 |
Bush, Sarah B. | 2 |
Edelen, Daniel | 2 |
Nickels, Megan | 2 |
Wilcox, Jesse | 2 |
Baird, Kate | 1 |
Benfield, Patrick | 1 |
Campbell, Todd | 1 |
Cardella, Monica E. | 1 |
Daggett, Kayden | 1 |
Douglass, Helen | 1 |
More ▼ |
Publication Type
Journal Articles | 17 |
Reports - Descriptive | 16 |
Guides - Classroom - Teacher | 3 |
Reports - Research | 1 |
Education Level
Early Childhood Education | 17 |
Primary Education | 17 |
Elementary Education | 16 |
Grade 2 | 8 |
Grade 3 | 6 |
Grade 1 | 3 |
Grade 4 | 3 |
Grade 5 | 3 |
Intermediate Grades | 3 |
Kindergarten | 3 |
Middle Schools | 3 |
More ▼ |
Audience
Teachers | 7 |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Lee, Shiela; Russell, John; Campbell, Todd; Lee, Okhee – Science and Children, 2022
Engineering has led the way in responding to the COVID-19 pandemic, including developing masks that reduce transmission, digital tools that allow contact tracing, and vaccines that show promise to put an end to the pandemic and allow a more normal way of life. Society is not only "following the science," but is also applying principles…
Descriptors: Engineering Education, Personal Autonomy, Problem Solving, Elementary School Students
Edwards, Kirsten D.; Gotwals, Amelia Wenk; Wright, Tanya S. – Science and Children, 2020
Young children love opportunities to build, discover, and solve problems. Teachers can take advantage of these natural tendencies by introducing students to aspects of engineering design while they engage in classroom activities. Engineering also lends itself to supporting students in developing disciplinary literacy practices such as learning…
Descriptors: Engineering, Kindergarten, Interdisciplinary Approach, Language Arts
Nolting, Sarah; Wilcox, Jesse; Moore-Dilworth, Naryah; Grenko, Mackenzie – Science and Children, 2021
The "Next Generation Science Standards" call for engaging students in practices that scientists and engineers use (NGSS Lead States 2013), but it's also important to explicitly teach thinking approaches that scientists and engineers use. One way to help children think and act like scientists and engineers is to engage them with…
Descriptors: STEM Education, Thinking Skills, Problem Solving, Computation
Rodriguez, Shelly; Morrison, Alex; Benfield, Patrick – Science and Children, 2019
This article describes a lesson rooted in "tinkering," an approach to learning that encourages the use of authentic, hands-on experience to develop an understanding of content and physical materials. There were several desired outcomes for this lesson. First, the authors felt that tinkering was an appropriate approach to investigating…
Descriptors: Grade 3, Elementary School Science, Science Instruction, Physics
Easter, Jaclyn; Hollister, Erin; Wilcox, Jesse – Science and Children, 2019
Although science, technology, engineering, and mathematics (STEM) initiatives have received increased attention in recent years (Bybee 2011), the focus is often on science and mathematics (Thornburg 2009). Yet, engineering has been referred to as "the glue that holds the other STEM subjects together" (Thornburg 2009). With the release of…
Descriptors: STEM Education, Problem Solving, Elementary School Students, Grade 3
Thornburgh, William; McFadden, Justin; Robinson, Brian – Science and Children, 2020
The "Next Generation Science Standards" ("NGSS") have placed an emphasis on the incorporation of engineering practices into K-12 science instruction. This article details a sequence of physical science lessons that would be part of teaching matter in the second-grade classroom. The goals of these lessons are: (1) to be hands-on…
Descriptors: Standards, Science Education, Engineering Education, Grade 2
Parks, Melissa – Science and Children, 2020
Model Eliciting Activities (MEAs) are pedagogical approaches that allow teachers to integrate multiple subjects into creative multi-day learning experiences that captivate students' curiosity and engage them in real-life problem solving. MEAs are known in the fields of mathematics and engineering (Gilat and Amit 2014), but despite their ability to…
Descriptors: Elementary School Students, Grade 2, Teaching Methods, Learning Activities
Masters, Heidi; Shrake, Tyler – Science and Children, 2019
When it snows, children are permitted to play outside during recess, which causes them to experience a variety of problems with their mittens or gloves. To align instruction with a problem student's experience in every day life, the authors developed and administered a short survey to second graders in an after school program. The authors found…
Descriptors: Science Instruction, Elementary School Science, Elementary School Students, Problem Solving
Miller, Jocelyn; Roberson, Katy – Science and Children, 2020
This article describes an unit that was created for first-grade students using both the "Next Generation Science Standards" ("NGSS") and Science, Technology, Engineering, and Mathematics (STEM) in a student-centered, problem-based approach. The multifaceted classroom unit combined with a take-home field study provides students…
Descriptors: Science Instruction, STEM Education, Grade 1, Elementary School Students
Edelen, Daniel; Bush, Sarah B.; Nickels, Megan – Science and Children, 2019
Teachers have the daunting task of preparing students for a future that they cannot predict. In an age of information where students have the world quite literally at their fingertips, and with the ever-growing momentum of integrated science, technology, engineering, and mathematics (STEM), it is not enough that students experience STEM subjects…
Descriptors: Teaching Methods, STEM Education, Academic Achievement, Interdisciplinary Approach
Ehsan, Hoda; Rehmat, Abeera P.; Cardella, Monica E. – Science and Children, 2019
Computational thinking can provide a basis for problem solving, for making evidence-based decisions, and for learning to code or create programs. Therefore, it is critical that all students across the K-12 continuum--including students in the early grades--have opportunities to begin developing problem solving and computational thinking skills.…
Descriptors: Teaching Methods, STEM Education, Computer Science Education, Thinking Skills
Mendez, James; Baird, Kate; Patino, Greicy – Science and Children, 2019
Picture this: a PhD chemist, PhD science educator, and a preservice Latina elementary educator walk into an aftercare program for primary and intermediate students from a rural school. These students are identified as low income and at risk and therefore eligible to participate in this school-provided aftercare. While across the state, these same…
Descriptors: Science Instruction, After School Programs, Low Income Students, At Risk Students
Edelen, Daniel; Bush, Sarah B.; Nickels, Megan – Science and Children, 2019
Because students have often been conditioned as passive learners and receivers of knowledge, it can be difficult for them to persevere in solving authentic problems. Nevertheless, teachers must persist in preparing students as problem solvers and critical thinkers. In an urban inner-city neighborhood school in the southeast, students embarked on a…
Descriptors: Elementary School Students, Elementary School Science, Grade 3, Grade 4
Masters, Heidi; Daggett, Kayden; Fonk, Amanda; Geiser, Anna; Hund, Jennifer; Kohlbeck, Kierra; Peterson, Amanda; Smith, Jackson; Zander, Zachary; Zaspel, Tyler – Science and Children, 2019
Severe flooding was prevalent within the authors' region at the beginning of the school year. Many homes and fields were affected by the amount of rain that fell within a short period of time over multiple days. Their students were concerned about the impact this natural phenomena was having on their local community. Natural phenomena can provide…
Descriptors: Problem Solving, Engineering Education, Scientific Concepts, Units of Study
Mann, Michele J.; Pynes, D'Anna – Science and Children, 2016
In this article, Mann and Pynes describe a five-day mini-project-based learning (PBL) unit about organisms and their environments that addresses the "Next Generation Science Standards" (3-LS4-3). Third-grade students were asked how they could determine which animals live in their neighborhoods. In teacher-determined collaborative groups,…
Descriptors: Science Education, Elementary School Science, Grade 3, Animals
Previous Page | Next Page ยป
Pages: 1 | 2