EdReports science 6-8
3 gateways · 41 assessed indicators
Gateway 1 · Designed for NGSS
9 assessed indicators · 26 pts max
Criterion 1.1
16 ptsThree-Dimensional Learning
Materials are designed for three-dimensional learning and assessment.
1a · Indicator 1a
Materials are designed to integrate the Science and Engineering Practices (SEPs), Disciplinary Core Ideas (DCIs), and Crosscutting Concepts (CCCs) into student learning.
1a.i · Indicator 1a.i
Materials consistently integrate the three dimensions in student learning opportunities.
1a.ii · Indicator 1a.ii
Materials consistently support meaningful student sensemaking with the three dimensions.
1b · Indicator 1b
Materials are designed to elicit direct, observable evidence for three-dimensional learning.
Evidence Guide
ge or situation that people want to change (problem) or a solution to optimize (design challenge) as an introduction to a learning opportunity or sequence. ● Determine if students return to the phenomenon, problem, or design challenge in the learning opportunity or sequence after its initial introduction. ● Determine if the phenomenon is unexplained or if the materials immediately provide students with an explanation. ● Determine if the materials provide context for the problem or design challenge and if students understand why they are solving the problem or design challenge. Cluster Meeting Discuss and answer the following questions to support consensus scoring conversations: ● Which instances of phenomena, problems, and design challenges are returned to and not only used as an introduction? ● Are phenomena, problems, and design challenges present at the learning opportunity or learning sequence level, or a combination of the two? ● Which instances of problems and design challenges provide students the opportunity to develop multiple solutions? Which instances only provide students with a single solution or design to build? ● How many phenomena, problems, and design challenges are present in the materials? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 5 of 91 -- Gateway 1: Designed for NGSS Criterion 1.1 Phenomena and Problems Drive Learning: Materials leverage science phenomena and engineering problems in the context of driving learning and student performance. Indicator 1b Phenomena and/or problems require student use of grade-band Disciplinary Core Ideas. Scorin --- phenomena and engineering problems in the context of driving learning and student performance. Indicator 1b Phenomena and/or problems require student use of grade-band Disciplinary Core Ideas. Scoring: 2 points ● Phenomena and/or problems consistently connect to grade-band appropriate DCIs or their elements. 1 point ● Phenomena and/or problems connect to grade-band DCIs or their elements, but not consistently. 0 points ● Phenomena and/or problems do not connect to grade-band DCIs or their elements. About this indicator: What is the purpose of this Indicator? This indicator ● examines whether phenomena or problems within the course are rooted in grade-band appropriate DCIs. Research or Standards connection: Read information for Gateway 1, Criterion 1. Indicator 1b Guiding Question: Are the phenomena or problems connected to grade-band Disciplinary Core Ideas (DCIs)? Evidence Collection Locations to review: ● Review all locations where a phenomenon or problem has been identified in the materials (see Indicator 1a). Resources to use: ● Review NGSS progression documents and standards as needed. Use the Codes for NGSS Elements document. Record evidence: ● Determine what DCI element is connected. DCIs must be on grade-band and come from the life, physical, or earth and space science domains. If a problem or phenomenon is connected to an ETS DCI, it must 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 6 of 91 -- also be connected to one of the other three domains. ● Phenomena and problems may demonstrate multiple DCIs.
1c · Indicator 1c
Materials are designed to elicit direct, observable evidence of the three-dimensional learning.
Evidence Guide
cted to an ETS DCI, it must 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 6 of 91 -- also be connected to one of the other three domains. ● Phenomena and problems may demonstrate multiple DCIs. Use the presentation and supporting text/materials to determine the DCI focus. Cluster Meeting Discuss and answer the following questions to support consensus scoring conversations: ● How often do phenomena connect to grade-band appropriate DCIs or their elements? ● How often do problems connect to grade-band appropriate DCIs or their elements? ● How often do problems only connect to grade-band ETS DCIs and not DCIs from life, physical, or earth and space science? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 7 of 91 -- Gateway 1: Designed for NGSS Criterion 1.1 Phenomena and Problems Drive Learning: Materials leverage science phenomena and engineering problems in the context of driving learning and student performance. Indicator 1c Phenomena and/or problems are presented in a direct manner to students. Scoring: 2 points ● Materials consistently present phenomena and/or problems in a direct manner to students. 1 point ● Materials present phenomena and/or problems in a direct manner to students, but not consistently. 0 points ● Phenomena and/or problems are presented in a direct manner to students in few to no instances. About this indicator: What is the purpose of this Indicator? This indicator ● examines the materials to determine whether phenomena and/or problems in the course are presented in a direct manner to students. ● examines the materials for a common experien --- cator? This indicator ● examines the materials to determine whether phenomena and/or problems in the course are presented in a direct manner to students. ● examines the materials for a common experience for all students from which knowledge can be built; it does not assume that all students have background knowledge and experience. Research or Standards connection: “…opportunities for students to engage in direct observations of phenomena illustrate the process of basic scientific research.” (Taking Science to School, pp. 13-14) “By using familiar materials and phenomena, students can more readily conjure up their own ideas and experiences and tap into these as they build explanations. This makes it possible for every student to participate in a more meaningful way.” (Ready Set Science, p. 93) Resources: ● Taking Science To School ● Ready Set SCIENCE! Indicator 1c Guiding Question: Are phenomena and/or problems presented to students in a direct manner that creates a common experience and entry point? Evidence Collection 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 8 of 91 -- Locations to review: ● Review all locations where a phenomenon or problem is introduced in the course. Record evidence: ● Describe how the phenomenon or problem is presented to students. This may include multiple components.
Criterion 1.2
10 ptsPhenomena and Problems Drive Learning
Materials leverage science phenomena and engineering problems in the context of driving learning and student performance.
1d · Indicator 1d
Phenomena and/or problems are connected to grade-band Disciplinary Core Ideas.
Evidence Guide
sations: ● How often do the materials present phenomena and/or problems in a direct manner to students? ● How often do the materials present phenomena and/or problems in a way that is not direct (e.g. contains distracting information or not enough context)? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 9 of 91 -- Gateway 1: Designed for NGSS Criterion 1.1 Phenomena and Problems Drive Learning: Materials leverage science phenomena and engineering problems in the context of driving learning and student performance. Indicator 1d Materials intentionally leverage students’ prior knowledge and/or experiences related to phenomena or problems. Scoring: 2 points ● Materials consistently elicit and leverage students’ prior knowledge and/or experience related to phenomena and problems. 1 point ● Materials elicit and leverage students’ prior knowledge and/or experience related to phenomena and problems but not consistently. OR ● Materials consistently elicit but do not consistently leverage students’ prior knowledge and/or experience related to phenomena and problems. 0 points ● Materials elicit but do not leverage students’ prior knowledge and/or experience related to phenomena and problems, but not consistently. About this indicator: What is the purpose of this Indicator? This indicator ● examines the materials to determine if they are designed to both elicit and leverage students’ prior knowledge and/or experiences to support engaging with phenomena or solving problems. ● emphasizes the importance of student questions in driving learning. Research or Standards connection: “Ev --- eliciting explanations, postulating theories, evaluating evidence, justifying reasoning, and clarifying doubts. Put simply, the act of questioning encourages learners to engage in critical reasoning. Given that asking questions is fundamental to science and scientific inquiry, the development of students' abilities to ask questions, reason, problem-solve, and think critically should, likewise, become a central focus of current science education reform.” (Students' questions: a potential resource for teaching and learning science, p.2) Resources: ● Taking Science To School ● A Framework for K-12 Science Education ● Christine Chin & Jonathan Osborne (2008) Students' questions: a potential resource for teaching and learning science, Studies in Science Education, 44:1, 1-39, DOI: 10.1080/03057260701828101 Indicator 1d Guiding Question: Do the materials intentionally leverage students’ prior knowledge and/or experiences related to phenomena or problems? Evidence Collection Locations to review: ● Review all locations where a phenomenon or problem has been identified.
1e · Indicator 1e
Phenomena and/or problems are presented to students as directly as possible.
Evidence Guide
als provide support for only eliciting students’ prior knowledge and/or experiences connected to phenomena and problems? ● How often do the materials provide support for both eliciting and leveraging students’ prior knowledge and/or experiences connected to phenomena and problems? ● How often do the materials provide support for leveraging students’ prior knowledge and/or experience for the same phenomena and/or problems when they span multiple learning opportunities? ● How often do the materials implicitly engage students’ prior knowledge and/or experience, such as making predictions, without explicitly asking students about their prior knowledge and/or experience. 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 12 of 91 -- Gateway 1: Designed for NGSS Criterion 1.1 Phenomena and Problems Drive Learning: Materials leverage science phenomena and engineering problems in the context of driving learning and student performance. Indicator 1e Phenomena and/or problems drive student learning using key elements of all three dimensions. Scoring: 6 points ● Materials consistently use phenomena or problems to drive student learning. AND ● Materials consistently use phenomena or problems to engage with all three dimensions. 3 points ● Materials use phenomena or problems to drive student learning, but not consistently. AND ● Materials use phenomena or problems to engage with all three dimensions, but not consistently or consistently with two dimensions. 0 points ● Materials provide few to no instances that use phenomena or problems to drive student learning. OR ● Materials provide --- dimensions, but not consistently or consistently with two dimensions. 0 points ● Materials provide few to no instances that use phenomena or problems to drive student learning. OR ● Materials provide few to no instances that use phenomena or problems to engage with two or three dimensions. About this indicator: What is the purpose of this Indicator? This indicator ● examines the materials to determine if they are designed to engage students in explaining phenomena or solving design problems in meaningful ways. ● examines whether materials use phenomena or problems to support students to engage with and apply the three dimensions (DCIs, SEPs, CCCs). Research or Standards connection: Read information for Gateway 1, Criterion 1. Indicator 1e Guiding Question: Do phenomena and/or problems drive instruction using key elements of all three dimensions? Evidence Collection Locations to review: ● Review the student and teacher materials across the course. 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 13 of 91 -- Resources to use: ● Review NGSS progression documents and standards as needed.
1f · Indicator 1f
Phenomena and/or problems drive individual lessons or activities using key elements of all three dimensions.
Evidence Guide
ssessment system ● examines the materials to determine if learning objectives are connected to assessments. ● examines the materials to determine if assessments address claimed assessment standards. ● examines the materials to determine how assessments incorporate uncertain phenomena/problems and integrate the three dimensions. Research Connection See the individual indicators for relevant research connections. Scoring: Meets Expectations ● 15-18 points Partially Meets Expectations ● 9-14 points Does Not Meet Expectations ● <9 points 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 15 of 91 -- Gateway 1: Designed for NGSS Criterion 1.2 Three-Dimensional Learning and Assessment: Materials are designed for three-dimensional learning and assessment. Indicator 1f Materials are designed to incorporate the three dimensions in student learning opportunities. Scoring: 2 points ● Learning sequences consistently include student learning opportunities that incorporate the three dimensions. 1 point ● Learning sequences include student learning opportunities that incorporate the three dimensions, but not consistently. 0 points ● Few to no learning sequences include student learning opportunities that incorporate the three dimensions. About this indicator: What is the purpose of this Indicator? This indicator ● examines the materials to determine if individual learning opportunities are designed to include the three dimensions. Research or Standards connection: “...the framework and its resulting standards have a number of implications for implementation, one of which involves the ne --- designed to include the three dimensions. Research or Standards connection: “...the framework and its resulting standards have a number of implications for implementation, one of which involves the need for curricular and instructional materials that embody all three dimensions: scientific and engineering practices, crosscutting concepts, and disciplinary core ideas.” (A Framework for K-12 Science Education, p. 316) Resources: ● A Framework for K-12 Science Education Indicator 1f Guiding Question: Are the materials designed to incorporate the three dimensions into student learning opportunities? Evidence Collection Locations to review: ● Review the learning sequences and learning opportunities in both student and teacher materials across the course. Resources to use: 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 16 of 91 -- ● Review NGSS progression documents and standards as needed. Use the Codes for NGSS Elements document. Record evidence: ● Identify the presence of below and/or above grade band elements. ● Note any patterns in how learning opportunities that include the three dimensions are distributed across the materials. ● Only look for the presence of the elements. Do not consider the quality of student engagement with the elements or integration of the elements.
1g · Indicator 1g
Materials are designed to include appropriate proportions of phenomena vs. problems based on the grade-band performance expectations.
1h · Indicator 1h
Materials intentionally leverage students’ prior knowledge and experiences related to phenomena or problems.
Evidence Guide
s, or scientific concepts. ● Determine where students have the opportunity to iterate on their thinking as they figure out novel, uncertain, or unexplained phenomena, problems, or scientific concepts. This includes both discourse and individual reflection. ● Determine where student sensemaking requires meaningful, intentional, and integrated use of SEPs, CCCs, and DCIs. ● Determine where meaningful and intentional presence of two-dimensional integration of SEPs and DCIs, CCCs and DCIs, or CCCs and SEPs occurs. ● Identify the presence of above and/or below grade band elements associated with sensemaking. Cluster Meeting Discuss and answer the following questions to support consensus scoring conversations: ● How often do learning sequences contain three-dimensional sensemaking? ● How often do learning sequences contain two-dimensional sensemaking? ● How often do learning sequences contain opportunities for students to iterate on their thinking as they engage in sensemaking? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 20 of 91 -- Gateway 1: Designed for NGSS Criterion 1.2 Three-Dimensional Learning and Assessment: Materials are designed for three-dimensional learning and assessment. Indicator 1h Materials clearly represent three-dimensional learning objectives within the learning sequences. Scoring: 2 points ● The materials consistently provide element-level three-dimensional learning objectives. AND ● Materials consistently provide opportunities for students to use and engage with the elements of the three dimensions present in the objectives. 1 point ● The materials --- the overall program that gives students sufficient opportunities to reach or exceed all parts of the standards.” (Critical Features of Instructional Materials Design for Today’s Science Standards, p. 6) Resources: ● 2015 Achieve NGSS Innovations ● Guide to Implementing the Next Generation Science Standards ● Critical Features of Instructional Materials Design for Today’s Science Standards Indicator 1h Guiding Question: Are the materials designed to clearly represent three-dimensional learning objectives within the learning sequences? Evidence Collection Locations to review: ● Review the learning sequences and learning opportunities in both student and teacher materials across the course. Resources to use: ● Review NGSS progression documents and standards as needed. Use the Codes for NGSS Elements document. Record evidence: ● Identify the learning objectives for each learning sequence or opportunity. Determine if the learning objectives are three dimensional and if they provide element-level information. o If component level specificity is provided, assume all elements within that component are intended to be present ● Determine where there is a match between the learning objectives and what students are actually asked to do in learning opportunities and sequences. Cluster Meeting Discuss and answer the following questions to support consensus scoring conversations: ● How often are three-dimensional learning objectives present? If so, do they detail element-level specificity? ● How often do learning sequences or opportunities provide opportunities for students to use the el --- idence Collection Locations to review: ● All identified formative assessment tasks in both student and teacher materials. Resources to use: ● Review NGSS progression documents and standards as needed. Use the Codes for NGSS Elements document. Record evidence: ● Use the learning objectives identified in indicator 1h. ● Identify elements of the learning objectives in the formative assessments. ● Formative assessments can include activities for individuals or groups of students. ● Determine how many elements of the learning objectives are addressed in the assessments. ○ Consider all formative assessments within each sequence associated with a set of learning objectives. ● Look for the presence of all elements indicated by the objectives (including off-grade band elements). ● Do not focus on supports for interpreting assessments. These are covered in the examination of the assessment system in indicators 3g and 3n in Gateway 3. Cluster Meeting Discuss and answer the following questions to support consensus scoring conversations: ● Which types of assessments are used to support the formative process? Where are they present? Are they always consistent in form and function, or do they vary? ● How many elements are evaluated in the formative assessments associated with a set of learning objectives? ○ How many learning sequences or opportunities assess most or all of the elements from the associated learning objectives? ○ How do formative assessments within the assessment system reveal student progress and use of the three dimensions as connected to the learning objectives? 6-8 Scie
1i · Indicator 1i
Materials embed phenomena or problems across multiple lessons for students to use and build knowledge of all three dimensions.
Evidence Guide
are three-dimensional learning objectives present? If so, do they detail element-level specificity? ● How often do learning sequences or opportunities provide opportunities for students to use the elements of the three dimensions in the learning objectives? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 22 of 91 -- Gateway 1: Designed for NGSS Criterion 1.2 Three-Dimensional Learning and Assessment: Materials are designed for three-dimensional learning and assessment. Indicator 1i Materials include a formative assessment system that is designed to reveal student progress on targeted learning objectives. Scoring: 4 points ● The formative assessments are consistently designed to reveal student progress on the targeted learning objectives. 2 points ● The formative assessments are designed to reveal student progress on the targeted learning objectives, but not consistently. 0 points ● Few to no formative assessments are designed to reveal student progress on the targeted learning objectives. About this indicator: What is the purpose of this Indicator? This indicator ● examines whether the materials include formative assessments that are connected to and reveal student progress on the targeted learning objectives. Boundaries with other indicators: ● Indicator 1k determines if materials are designed to incorporate three-dimensional summative assessment tasks that focus on uncertain phenomena or problems. ● Indicator 3g determines if the assessment system provides multiple opportunities to determine students’ learning and sufficient guidance to teachers for evaluating stude --- ce learning (usually while instruction is under way) or to obtain evidence of what students have learned for use beyond the classroom (usually at the conclusion of some defined period of instruction). Whether intended for formative or summative purposes, 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 23 of 91 -- evidence gathered in the classroom should be closely linked to the curriculum being taught. This does not mean that the assessment must use the formats or exactly the same material that was presented in instruction, but rather that the assessment task should directly address the concepts and practices to which the students have been exposed.” (Developing Assessments for the Next Generation Science Standards, BOTA Report, p. 85) Resources: ● Developing Assessments for the Next Generation Science Standards, BOTA Report Indicator 1i Guiding Question: Are the materials designed to include a formative assessment system that reveals student progress on targeted learning objectives? Evidence Collection Locations to review: ● All identified formative assessment tasks in both student and teacher materials. Resources to use: ● Review NGSS progression documents and standards as needed.
Gateway 2 · Coherence & Scope
24 assessed indicators · 56 pts max
Criterion 2.1
56 ptsCoherence and Full Scope of the Three Dimensions
Materials are coherent in design, scientifically accurate, and support grade-band endpoints of all three dimensions. NOTE: Indicators 2b-2c are non-negotiable; instructional materials being reviewed must score above zero points in each indicator, otherwise the materials automatically do not proceed to Gateway 3.
2a · Indicator 2a
Materials are designed for students to build and connect their knowledge and use of the three dimensions across the series.
2a.i · Indicator 2a.i
Students understand how the materials connect the dimensions from unit to unit.
2a.ii · Indicator 2a.ii
Materials have an intentional sequence where student tasks increase in sophistication.
2b · Indicator 2b
Materials present Disciplinary Core Ideas (DCIs), Science and Engineering Practices (SEPs), and Crosscutting Concepts (CCCs) in a way that is scientifically accurate.
Evidence Guide
nce DCI elements do the materials incorporate? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 34 of 91 -- Gateway 2: Coherence & Scope Criterion 2.1 Coherence and Full Scope of the Three Dimensions: Materials are coherent in design, scientifically accurate, and support claims made for all three dimensions. Indicator 2b Materials provide opportunities for students to fully learn and develop all grade-band Science and Engineering Practices. Scoring: 8 points ● Materials provide opportunities for students to fully learn and develop all grade-band SEPs and nearly all associated grade-band elements. AND ● Materials consistently provide multiple and repeated opportunities for students to use grade-band SEPs across various contexts. 4 points ● Materials provide opportunities for students to fully learn and develop all grade-band SEPs and most associated grade-band elements. AND ● Materials provide multiple and repeated opportunities for students to use grade-band SEPs across various contexts, but not consistently. 0 points ● Materials do not incorporate all grade-band SEPs within the grade-band. OR ● Materials do not provide opportunities for students to learn and develop numerous grade-band SEP elements. OR ● Materials include numerous elements of SEPs from above or below the grade-band without connecting to the grade-band SEPs. OR ● Materials do not provide multiple and repeated opportunities for students to use grade-band SEPs across various contexts. About this indicator: What is the purpose of this Indicator? This indicator ● examines the materials to determine if the g --- ce derived from certain technological advances. The connection between these core ideas and specific performance expectations is shown in the crosscutting concept foundation box.” (NGSS Appendix J, p. 3) Resources: ● A Framework for K-12 Science Education ● NGSS Appendix F: Science and Engineering Practices ● NGSS Appendix H: Nature of Science ● NGSS Appendix J: Science, Technology, Society, and the Environment Indicator 2b Guiding Question: Do the materials provide opportunities for students to fully learn and develop all grade-level Science and Engineering Practices (SEPs)? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 36 of 91 -- Evidence Collection Locations to review: ● Review the learning sequences and learning opportunities in both student and teacher materials. Resources to use: ● Review NGSS progression documents and standards as needed. Use the Codes for NGSS Elements document. Record evidence: ● Determine when and where students develop and use grade-band appropriate SEPs and their elements. Note if the element is fully met, partially met, or not met by the materials. ● Determine where the full SEP element is taught over the course of multiple learning opportunities, as applicable. ● Describe the specific examples of learning opportunities that include each SEP element. ● Determine how students repeatedly use grade-band appropriate SEPs across various contexts. ● Detail how the SEPs are organized across the grade-band (to support the narrative report). Cluster Meeting Discuss and answer the following questions to support consensus scoring conversations: ●
2c · Indicator 2c
Materials do not inappropriately include scientific content and ideas outside of the grade-band Disciplinary Core Ideas.
Evidence Guide
. ● Detail how the SEPs are organized across the grade-band (to support the narrative report). Cluster Meeting Discuss and answer the following questions to support consensus scoring conversations: ● How many of the grade-band SEPs and associated elements do the materials incorporate? ● Do the materials provide repeated opportunities for students to use the grade-band SEPs across various contexts? ● To what extent do the materials incorporate SEP elements from above or below the grade-band? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 37 of 91 -- Gateway 2: Coherence & Scope Criterion 2.1 Coherence and Full Scope of the Three Dimensions: Materials are coherent in design, scientifically accurate, and support claims made for all three dimensions. Indicator 2c Materials provide opportunities for students to fully learn and develop all grade-band Crosscutting Concepts. Scoring: 8 points ● Materials provide opportunities for students to fully learn and develop all grade-band CCCs and nearly all associated grade-band elements. AND ● Materials consistently provide multiple and repeated opportunities for students to use grade-band CCCs across various contexts. 4 points ● Materials provide opportunities for students to fully learn and develop all grade-band CCCs and most associated grade-band elements. AND ● Materials provide multiple and repeated opportunities for students to use grade-band CCCs across various contexts, but not consistently. 0 points ● Materials do not incorporate all grade-band CCCs within the grade-band. OR ● Materials do not provide opportunities for stu --- ce derived from certain technological advances. The connection between these core ideas and specific performance expectations is shown in the crosscutting concept foundation box.” (NGSS Appendix J, p. 3) Resources: ● A Framework for K-12 Science Education ● NGSS Appendix G: Crosscutting Concepts ● NGSS Appendix H: Nature of Science ● NGSS Appendix J: Science, Technology, Society, and the Environment Indicator 2c Guiding Question: Do the materials provide opportunities for students to fully learn and develop all grade-band Crosscutting Concepts (CCCs)? Evidence Collection Locations to review: ● Review the learning sequences and learning opportunities in both student and teacher materials. Resources to use: ● Review NGSS progression documents and standards as needed. Use the Codes for NGSS Elements document. Record evidence: ● Determine when and where students develop and use grade-band appropriate CCCs and their elements. Note if the element is fully met, partially met, or not met by the materials. 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 39 of 91 -- ● Determine where the full CCC element is taught over the course of multiple learning opportunities, as applicable. ● Describe the specific examples of learning opportunities that include each CCC element. ● Determine how students repeatedly use grade-band appropriate CCCs across various contexts. ● Detail how the CCCs are organized across the grade-band (to support the narrative report). Cluster Meeting Discuss and answer the following questions to support consensus scoring conversations: ● How many of the grade-ban
2d · Indicator 2d
Materials incorporate all grade-band Disciplinary Core Ideas.
2d.i · Indicator 2d.i
Physical Sciences
2d.ii · Indicator 2d.ii
Life Sciences
2d.iii · Indicator 2d.iii
Earth and Space Sciences
2d.iv · Indicator 2d.iv
Engineering, Technology, and Applications of Science
2e · Indicator 2e
Materials incorporate all grade-band Science and Engineering Practices.
2e.i · Indicator 2e.i
Asking Questions and Defining Problems
2e.ii · Indicator 2e.ii
Developing and Using Models
2e.iii · Indicator 2e.iii
Planning and Carrying Out Investigations
2e.iv · Indicator 2e.iv
Analyzing and Interpreting Data
2e.v · Indicator 2e.v
Using Mathematics and Computational Thinking
2e.vi · Indicator 2e.vi
Constructing Explanations and Designing Solutions
2e.vii · Indicator 2e.vii
Engaging in Argument from Evidence
2e.viii · Indicator 2e.viii
Obtaining, Evaluating, and Communicating Information
2f · Indicator 2f
Materials incorporate all grade-band Crosscutting Concepts.
2f.i · Indicator 2f.i
Patterns
2f.ii · Indicator 2f.ii
Cause and Effect
2f.iii · Indicator 2f.iii
Scale, Proportion, and Quantity
2f.iv · Indicator 2f.iv
Systems and System Models
2f.v · Indicator 2f.v
Energy and Matter
2f.vi · Indicator 2f.vi
Structure and Function
2f.vii · Indicator 2f.vii
Stability and Change
2g · Indicator 2g
Materials incorporate NGSS Connections to Nature of Science and Engineering.
Evidence Guide
on Locations to review: ● Review the learning sequences and learning opportunities in both student and teacher materials. Resources to use: ● Review NGSS progression documents and standards as needed. Use the Codes for NGSS Elements document. Record evidence: ● Determine where students develop and use the grade-band appropriate elements of NGSS Connections to Nature of Science and Engineering. ● Describe the specific examples of learning opportunities that include elements of NGSS Connections to Nature of Science and Engineering. Cluster Meeting ● In how many of the categories do the materials incorporate grade-band NGSS Connections to Nature of Science and Engineering elements? ○ Nature of Science elements associated with SEPs ○ Nature of Science elements associated with CCCs ○ Engineering elements associated with CCCs 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 47 of 91 -- Gateway 2: Coherence & Scope Criterion 2.1 Coherence and Full Scope of the Three Dimensions: Materials are coherent in design, scientifically accurate, and support claims made for all three dimensions. Indicator 2g Materials support understanding of how the dimensions connect across contexts. Scoring: 2 points ● Materials consistently demonstrate how the dimensions connect across contexts by describing connections for students AND/OR providing support for teachers to help students understand connections. 1 point ● Materials demonstrate how the dimensions connect across contexts by describing connections for students AND/OR providing support for teachers to help students understand connections, --- to each other. Thus, to become more expert in science, students need to learn key ideas and concepts, how they are related to each other, and their implications and applications within the discipline. This entails a process of conceptual development that in some cases involves large-scale reorganization of knowledge and is not a simple accumulation of information." (Taking Science to School, pp. 338-339) “Curriculum units need to be sequenced across a year so that students can build ideas across time in coherent learning progressions, in which questions or challenges, gaps in models, and new phenomena motivate 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 48 of 91 -- developing deeper disciplinary core and crosscutting ideas.” (Guide to Implementing the Next Generation Science Standards, p. 53) Resources: ● Next Generation Science Standards (NGSS) ● Guide to Implementing the Next Generation Science Standards ● Taking Science To School Indicator 2g Guiding Question: Are the materials designed for students to build and connect their knowledge and use of the three dimensions? Evidence Collection Locations to review: ● Review the learning sequences in both student and teacher materials. ● Follow the suggested or intended sequence, if present. Resources to use: ● Review NGSS progression documents and standards as needed.
Gateway 3 · Usability
8 assessed indicators · 18 pts max
Criterion 3.1
10 ptsTeacher Supports
The program includes opportunities for teachers to effectively plan and utilize materials with integrity and to further develop their own understanding of the content.
3a · Indicator 3a
Materials provide teacher guidance with useful annotations and suggestions for how to enact the student materials and ancillary materials, with specific attention to engaging students in figuring out phenomena and solving problems.
Evidence Guide
riculum materials need to be developed as a multiyear sequence that helps students develop increasingly sophisticated ideas across grades K-12 [5, 25, 26].” (A Framework for K-12 Science Education, p. 246) Teacher materials can support teachers in understanding the connection between instructional activities and three-dimensional learning goals by highlighting how activities support the learning goals. (Guidelines for the Evaluation of Instructional Materials in Science, p. 21) Materials should be evaluated by how well they help teachers see when and how activities or text contribute to the learning goals across instructional sequences or book chapters and supplemental resources (Guidelines for the Evaluation of Instructional Materials in Science, p. 21) Resources: ● A Framework for K-12 Science Education ● Guidelines for the Evaluation of Instructional Materials in Science Scoring: 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 52 of 91 -- Meets Expectations ● 12-14 points Partially Meets Expectations ● 7-11 points Does Not Meet Expectations ● <7 points 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 53 of 91 -- Gateway 3: Teacher & Student Supports Criterion 3.1 The program includes opportunities for teachers to effectively plan and utilize materials with integrity and to further develop their own understanding of the content. Indicator 3a Materials provide teacher guidance with useful annotations and suggestions for how to enact the student materials and ancillary materials, with specific attention to engaging students in figuring out phenomena and solving pro --- guidance with useful annotations and suggestions for how to enact the student materials and ancillary materials, with specific attention to engaging students in figuring out phenomena and solving problems. Scoring: 2 points ● Materials provide comprehensive guidance that will assist teachers in presenting the student and ancillary materials. AND ● Materials include sufficient and useful annotations and suggestions that are presented within the context of the specific learning objectives. 1 point ● Materials provide guidance that will assist teachers in presenting the student and ancillary materials. OR ● Materials include sufficient and useful annotations and suggestions that are presented within the context of the specific learning objectives. 0 points ● Materials do not provide guidance that will assist them in presenting the student and ancillary materials. AND ● Materials do not include sufficient and useful annotations and suggestions that are presented within the context of the specific learning objectives. About this indicator: What is the purpose of this Indicator? This indicator examines the materials to determine whether they contain teacher guidance with sufficient and useful annotations and suggestions for how to enact the student materials and ancillary materials. Indicator 3a Guiding Question: Do the materials provide teacher guidance with useful annotations and suggestions for how to enact the student materials and ancillary materials, with specific attention to engaging students in figuring out phenomena and solving problems? Evidence Collection Review the
3b · Indicator 3b
Materials contain adult-level explanations and examples of the more complex grade/course-level concepts and concepts beyond the current course so that teachers can improve their own knowledge of the subject.
Evidence Guide
ific guidance to plan instruction and support students in the content (specifically how to support students in figuring out phenomena and/or solving problems)? ● How do the materials support teachers in understanding what students should understand about the targeted phenomenon or problem? ● Where do the teacher materials explicitly state the phenomenon or problem that is the focus of the student learning? ● Where do the teacher materials provide explanations to the teacher for how the phenomenon or problem is connected to the dimensions (including engineering and nature of science elements) targeted in the instruction? ● How well do the materials support teachers in helping students make the connections between the phenomenon or problem, the instructional activities and the three dimensions? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 55 of 91 -- Gateway 3: Teacher & Student Supports Criterion 3.1 The program includes opportunities for teachers to effectively plan and utilize materials with integrity and to further develop their own understanding of the content. Indicator 3b Materials contain explanations and examples of grade-level/course-level concepts and/or standards and how the concepts and/or standards align to other grade/course levels so that teachers can improve their own knowledge of the subject. Scoring: 2 points ● Materials contain explanations and examples of grade/course-level concepts and/or standards so that teachers can improve their own knowledge of the subject. AND ● Materials contain explanations and examples of how the concepts and/or standard --- s of grade/course-level concepts and/or standards so that teachers can improve their own knowledge of the subject. AND ● Materials contain explanations and examples of how the concepts and/or standards align to other grade/course levels so that teachers can improve their own knowledge of the subject. 1 point ● Materials contain explanations and examples of grade/course-level concepts and/or standards so that teachers can improve their own knowledge of the subject. OR ● Materials contain explanations and examples of how the concepts and/or standards align to other grade/course levels so that teachers can improve their own knowledge of the subject. 0 points ● Materials do not contain explanations and examples of grade/course-level concepts and/or standards so that teachers can improve their own knowledge of the subject. AND ● Materials do not contain explanations and examples of how the concepts and/or standards align to other grade/course levels so that teachers can improve their own knowledge of the subject. About this indicator: What is the purpose of this Indicator? This indicator examines the materials to determine whether they deepen teacher understanding of science and engineering ideas, concepts, and practices so that teachers can improve their own knowledge of the subject. Indicator 3b Guiding Question: Do the materials contain explanations and examples of grade/course-level concepts and how the concepts align with other grade/course levels so that teachers can improve their own knowledge of the subject? Evidence Collection Review the materials, both print and digita
3c · Indicator 3c
Materials include standards correlation information, including connections to college- and career-ready ELA and mathematics standards, that explains the role of the standards in the context of the overall series.
Evidence Guide
evel concepts and how the concepts align with other grade/course levels so that teachers can improve their own knowledge of the subject? Evidence Collection Review the materials, both print and digital (if available), across the series. Look for and record evidence to: 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 56 of 91 -- ● Describe if and how the materials provide explanations and examples that support the teacher in developing their own understanding of the content and expected student practices. ● Describe if and how the materials provide explanations and examples of how the concepts/standards connect to other grade/course levels. Cluster Meeting Discuss and answer the following questions to support consensus scoring conversations: ● Where do the teacher materials provide background content knowledge that is accurate, understandable, and gives true assistance to all educators using the materials? ● Where are supports provided for teachers to understand how current content connects to other grade/course levels? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 57 of 91 -- Gateway 3: Teacher & Student Supports Criterion 3.1 The program includes opportunities for teachers to effectively plan and utilize materials with integrity and to further develop their own understanding of the content. Indicator 3c Materials include standards correlation information, including connections to college- and career-ready ELA and mathematics standards, that explains the role of the standards in the context of the overall series. Scoring: 2 points ● Correlation information and e --- role of the standards at each unit/module in the context of the overall series. Research or Standards connection: “Recommendation 12: The standards for the sciences and engineering should align coherently with those for other K-12 subjects. Alignment with the Common Core Standards in mathematics and English/language arts is especially important.“ (A Framework for K-12 Science Education, p. 306) Resources: ● Common Core State Standards - Mathematics ● Common Core State Standards - English Language Arts ● Next Generation Science Standards (NGSS) ● A Framework for K-12 Science Education 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 58 of 91 -- Indicator 3c Guiding Question: Do the materials include standards correlation information, including connections to college- and career-ready ELA and mathematics standards, that explains the role of the standards in the context of the overall series? Evidence Collection Review the print and digital (if available) table of contents, pacing guides, scope and sequence, and other teacher materials. Look for and record evidence to: ● Describe how and where teacher materials provide NGSS standards correlations for science. Note at what level (unit, lesson, activity) these correlations are provided. ● Describe how and where teacher materials provide an explanation for the role of these NGSS standards in the context of the overall series.
3d · Indicator 3d
Materials provide strategies for informing all stakeholders, including students, parents, or caregivers about the program and suggestions for how they can help support student progress and achievement.
3e · Indicator 3e
Materials provide explanations of the instructional approaches of the program and identification of the research-based strategies.
Evidence Guide
ogress and achievement? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 61 of 91 -- Gateway 3: Teacher & Student Supports Criterion 3.1 The program includes opportunities for teachers to effectively plan and utilize materials with integrity and to further develop their own understanding of the content. Indicator 3e Materials provide explanations of the instructional approaches of the program and identification of the research-based strategies. Scoring: 2 points ● Materials explain the instructional approaches of the program. AND ● Materials include and reference research-based strategies. 1 point ● Materials explain the instructional approaches of the program. OR ● Materials include and reference research-based strategies. 0 points ● Materials do not explain the instructional approaches of the program. AND ● Materials do not include and reference research-based strategies. About this indicator: What is the purpose of this Indicator? This indicator examines the materials to determine whether they explain the instructional approaches of the program and whether they identify research-based strategies that have informed the design of the materials. Indicator 3e Guiding Question: Do the materials provide explanations of the instructional approaches of the program and identification of the research-based strategies? Evidence Collection Review the materials across the series. Look for and record evidence to: ● Describe how and where the materials explain the instructional approaches of the program. ● Describe how and where the materials identify research-based strategies that
3f · Indicator 3f
Materials provide a comprehensive list of supplies needed to support instructional activities.
Evidence Guide
k for and record evidence to: ● Describe how and where the materials explain the instructional approaches of the program. ● Describe how and where the materials identify research-based strategies that are used in the design. Cluster Meeting Discuss and answer the following questions to support consensus scoring conversations: ● Where and how well do the materials explain the instructional approaches of the program? ● Where and how well do the materials identify research-based strategies used in and throughout the program? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 62 of 91 -- Gateway 3: Teacher & Student Supports Criterion 3.1 The program includes opportunities for teachers to effectively plan and utilize materials with integrity and to further develop their own understanding of the content. Indicator 3f Materials provide a comprehensive list of supplies needed to support instructional activities. Scoring: 1 point ● Materials include a comprehensive list of supplies needed to support the instructional activities. 0 points ● Materials do not include a comprehensive list of supplies needed to support instructional activities. About this indicator: What is the purpose of this Indicator? This indicator examines the series to determine if the materials contain a comprehensive list of materials needed to support implementation. Indicator 3f Guiding Question: Do the materials provide a comprehensive list of supplies needed to support instructional activities? Evidence Collection Review the materials across the series. Look for and record evidence to: ● Determine whether
3g · Indicator 3g
Materials provide clear science safety guidelines for teachers and students across the instructional materials.
Evidence Guide
are three-dimensional learning objectives present? If so, do they detail element-level specificity? ● How often do learning sequences or opportunities provide opportunities for students to use the elements of the three dimensions in the learning objectives? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 22 of 91 -- Gateway 1: Designed for NGSS Criterion 1.2 Three-Dimensional Learning and Assessment: Materials are designed for three-dimensional learning and assessment. Indicator 1i Materials include a formative assessment system that is designed to reveal student progress on targeted learning objectives. Scoring: 4 points ● The formative assessments are consistently designed to reveal student progress on the targeted learning objectives. 2 points ● The formative assessments are designed to reveal student progress on the targeted learning objectives, but not consistently. 0 points ● Few to no formative assessments are designed to reveal student progress on the targeted learning objectives. About this indicator: What is the purpose of this Indicator? This indicator ● examines whether the materials include formative assessments that are connected to and reveal student progress on the targeted learning objectives. Boundaries with other indicators: ● Indicator 1k determines if materials are designed to incorporate three-dimensional summative assessment tasks that focus on uncertain phenomena or problems. ● Indicator 3g determines if the assessment system provides multiple opportunities to determine students’ learning and sufficient guidance to teachers for evaluating stude --- rtain phenomena or problems. ● Indicator 3g determines if the assessment system provides multiple opportunities to determine students’ learning and sufficient guidance to teachers for evaluating student performance and determining next instructional steps. ● Indicator 3n determines if assessments offer accommodations that allow students to demonstrate their knowledge and skills without changing the content of the assessment. Research or Standards connection: “Assessments used for formative purposes occur during the course of a unit of instruction and may involve both formal tests and informal activities conducted as part of a lesson. They may be used to identify students’ strengths and weaknesses, assist educators in planning subsequent instruction, assist students in guiding their own learning by evaluating and revising their own work, and foster students’ sense of autonomy and responsibility for their own learning (Andrade and Cizek, 2010, p. 4).” (Developing Assessments for the Next Generation Science Standards, BOTA Report, p. 84) “The key difference between assessments used for formative purposes and those used for summative purposes is in how the information they provide is to be used: to guide and advance learning (usually while instruction is under way) or to obtain evidence of what students have learned for use beyond the classroom (usually at the conclusion of some defined period of instruction). --- s provide a comprehensive list of supplies needed to support instructional activities? Evidence Collection Review the materials across the series. Look for and record evidence to: ● Determine whether a comprehensive list of required materials is provided. Cluster Meeting Discuss and answer the following questions to support consensus scoring conversations: ● Does the series provide a comprehensive list of required materials? At what level(s) is the support provided (course, unit/module, lesson, etc.)? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 63 of 91 -- Gateway 3: Teacher & Student Supports Criterion 3.1 The program includes opportunities for teachers to effectively plan and utilize materials with integrity and to further develop their own understanding of the content. Indicator 3g The assessment system provides consistent opportunities to determine student learning throughout the school year. The assessment system provides sufficient teacher guidance for evaluating student performance and determining instructional next steps. Scoring: 4 points ● The assessment system consistently provides opportunities to determine student learning throughout the school year. AND ● The assessment system consistently provides sufficient teacher guidance for evaluating student performance. AND ● The assessment system consistently provides sufficient teacher guidance for interpreting student performance and determining next instructional steps. 2 points ● The assessment system provides opportunities to determine student learning throughout the school year, but not consistently. OR --- e v2.0 Updated July 2025 -- 64 of 91 -- Research or Standards connection: “It is possible to design assessment tasks and scoring rubrics that assess three-dimensional science learning. Such assessments provide evidence that informs teachers and students of the strengths and weaknesses of a student’s current understanding, which can guide further instruction and student learning and can also be used to evaluate students’ learning.” (Developing Assessments for the Next Generation Science Standards, BOTA Report, conclusion 4-3, p. 130) “Assessment designers are faced with the challenge of finding a balance among three competing priorities: (1) using assessment as a tool for supporting and promoting an ambitious vision for all students, (2) obtaining accurate measures of what students have actually learned, and (3) supporting equity of opportunity for disadvantaged students.” (Developing Assessments for the Next Generation Science Standards, BOTA Report, p. 27) Resources: ● Developing Assessments for the Next Generation Science Standards, BOTA Report Indicator 3g Guiding Question: Does the assessment system provide consistent opportunities to determine student learning throughout the school year? Does the assessment system provide sufficient teacher guidance for interpreting student performance and determining instructional next steps? Evidence Collection Review assessments and corresponding assessment guidance across the series, including answer keys, rubrics, and other assessment scoring tools. Look for and record evidence to: ● Describe if and how assessments provide teacher
3h · Indicator 3h
Materials designated for each grade are feasible and flexible for one school year.
Criterion 3.2
10 ptsAssessment
The program includes a system of assessments identifying how materials provide tools, guidance, and support for teachers to collect, interpret, and act on data about student progress towards the standards.
3i · Indicator 3i
Assessment information is included in the materials to indicate which standards are assessed.
3j · Indicator 3j
Assessment system provides multiple opportunities throughout the grade, course, and/or series to determine students' learning and sufficient guidance to teachers for interpreting student performance and suggestions for follow-up.
Evidence Guide
ldren bring to the classroom. This diversity offers richness and opportunities in the classroom, and it also affects the kinds of support children need to learn science.” (Taking Science to School, p. 340) 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 70 of 91 -- Resources: ● A Framework for K-12 Science Education ● Taking Science To School Scoring: Meets Expectations ● 4 points Partially Meets Expectations ● 2-3 Does Not Meet Expectations ● <2 points 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 71 of 91 -- Gateway 3: Teacher & Student Supports Criterion 3.2 The program includes materials designed for each student’s regular and active participation in grade-level/grade-band/series content. Indicator 3j Materials provide strategies and supports for students in special populations to support their regular and active participation in learning grade-level/grade-band science and engineering. Scoring: 2 points ● Materials regularly provide strategies, supports, and resources for students in special populations to support their regular and active participation and engagement in grade-level/grade-band science and engineering. 1 point ● Materials do not regularly provide strategies, supports, and resources for students in special populations to support their regular and active participation and engagement in grade-level/grade-band science and engineering. 0 points ● There are no strategies, supports, or resources for students in special populations to support their regular and active participation and engagement in grade-level/grade-band science and engineering. About --- are no strategies, supports, or resources for students in special populations to support their regular and active participation and engagement in grade-level/grade-band science and engineering. About this indicator: What is the purpose of this Indicator? This indicator examines whether the materials provide strategies, supports, and resources for students in special populations to support their regular and active participation in grade-level/grade-band science and engineering. Research or Standards connection: For this indicator, special populations refers to students that must overcome barriers that may require special consideration and attention to ensure equal opportunity for success and in an educational setting. This could include: ● Disabilities: Physical, developmental, behavioral, or emotional disabilities ● Economic disadvantage: Low-income families, homelessness, or out-of-workforce individuals ● Other circumstances: Preparing for non-traditional fields, single parents, English language learners, or racial and ethnic minorities Resources: ● NGSS Appendix D: All Standards, All Students ● Supporting Special Populations, Office of Elementary and Secondary Education Indicator 3j Guiding Question: What opportunities are there for students in special populations to engage with materials to support ongoing participation in grade-level/grade-band science and engineering content? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 72 of 91 -- Evidence Collection Review teacher and student materials across the series. Look for and record evidence to: ● Describe where and
3k · Indicator 3k
Assessments include opportunities for students to demonstrate the full intent of grade-level/grade-band standards and elements across the series.
Evidence Guide
ent? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 72 of 91 -- Evidence Collection Review teacher and student materials across the series. Look for and record evidence to: ● Describe where and how the materials provide specific strategies and supports for differentiating instruction to meet the needs of students in special populations. ● Identify whether the materials support students in special populations in regular and active participation in grade-level/grade-band science and engineering and include any instances where differentiation does not present opportunities to engage students in the work of the grade level/grade band. Note: There must be more than a statement at the beginning of the chapter or lesson that is generic or states that the same strategy could be used with every lesson. Cluster Meeting Discuss and answer the following questions to support consensus scoring conversations: ● How and where do materials provide appropriate differentiated strategies and supports for students in special populations? ● Do materials provide differentiation supports to sufficiently engage students in grade level/grade band science and engineering? ● Do the materials include overarching guidance on strategies and accommodations for special populations? Are these evident in lessons? 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 73 of 91 -- Gateway 3: Teacher & Student Supports Criterion 3.2 The program includes materials designed for each student’s regular and active participation in grade-level/grade-band/series content. Indicator 3k Materials provide extensions a --- Supports Criterion 3.2 The program includes materials designed for each student’s regular and active participation in grade-level/grade-band/series content. Indicator 3k Materials provide extensions and/or opportunities for students to engage in learning grade-level/grade-band science and engineering at greater depth. Scoring: 2 points ● Materials provide multiple opportunities for advanced students to engage in grade-level/grade-band science at a higher level of complexity. AND ● No instances of advanced students doing more assignments than their classmates. 1 point ● Materials provide some opportunities for advanced students to engage in grade-level/grade-band science at a higher level of complexity. AND ● There are few instances of advanced students doing more assignments than their classmates. 0 points ● Materials provide few, if any, opportunities for advanced students to engage in grade-level/grade-band science at a higher level of complexity. OR ● There are many instances of advanced students doing more assignments than their classmates. About this indicator: What is the purpose of this Indicator? This indicator examines the materials to determine whether the materials provide opportunities for advanced students to engage in grade-level/grade-band science at a higher level of complexity. Research or Standards connection: “Arguably, the most pressing challenge facing U.S. education is to provide all students with a fair opportunity to learn.” (A Framework for K-12 Science Education, p. --- Research or Standards connection: “Arguably, the most pressing challenge facing U.S. education is to provide all students with a fair opportunity to learn.” (A Framework for K-12 Science Education, p. 282) “Science and engineering practices can actually serve as productive entry points for students from diverse communities...” (A Framework for K-12 Science Education, p. 283) “When people enter into the practices of science or engineering, they do not leave their cultural worldviews at the door. Instruction that fails to recognize this reality can adversely affect student engagement in science. …. Everyday experience provides a rich base of knowledge and experience to support conceptual changes in science. Students bring cultural funds of knowledge that can be leveraged, combined with other concepts, and transformed into scientific concepts over time.” (A Framework for K-12 Science Education, p. 284) Resources: ● A Framework for K-12 Science Education 6-8 Science Evidence Guide v2.0 Updated July 2025 -- 74 of 91 -- Indicator 3k Guiding Questions: What opportunities are present for students to engage in learning with grade-level/grade-band science and engineering at higher levels of complexity? Are the opportunities that are present purposeful investigations or extensions? Do the opportunities extend learning of the grade-level content or topic? Evidence Collection Review the student materials across the series. Look for and record evidence to: ● Describe how and where advanced students have opportunities to work at a higher level of complexity with the three dimensions to ma
3l · Indicator 3l
Assessments offer accommodations that allow students to demonstrate their knowledge and skills without changing the content of the assessment.
Criterion 3.3
6 ptsStudent Supports
The program includes materials designed for each student’s regular and active participation in grade-level/grade-band/series content.
3m · Indicator 3m
Materials provide strategies and supports for students in special populations to support their regular and active participation in learning grade-level/grade-band science and engineering.
3n · Indicator 3n
Materials provide extensions and/or opportunities for students to engage in learning grade-level/grade-band science and engineering at greater depth.
3o · Indicator 3o
Materials provide varied approaches to learning tasks over time and variety in how students are expected to demonstrate their learning with opportunities for for students to monitor their learning.
3p · Indicator 3p
Materials provide opportunities for teachers to use a variety of grouping strategies.
3q · Indicator 3q
Materials provide strategies and supports for students who read, write, and/or speak in a language other than English to regularly participate in learning grade-level/grade-band science and engineering.
3r · Indicator 3r
Materials provide a balance of images or information about people, representing various demographic and physical characteristics.
3s · Indicator 3s
Materials provide guidance to encourage teachers to draw upon student home language to facilitate learning.
3t · Indicator 3t
Materials provide guidance to encourage teachers to draw upon student cultural and social backgrounds to facilitate learning.
3u · Indicator 3u
Materials provide supports for different reading levels to ensure accessibility for students.
3v · Indicator 3v
This is not an assessed indicator in Science.
Criterion 3.4
0 ptsIntentional Design
The program includes a visual design that is engaging and references or integrates digital technology (when applicable) with guidance for teachers.
3w · Indicator 3w
Materials integrate interactive tools and/or dynamic software in ways that support student engagement in the three dimensions, when applicable.
3x · Indicator 3x
Materials include or reference digital technology that provides opportunities for teachers and/or students to collaborate with each other, when applicable.
3y · Indicator 3y
The visual design (whether in print or digital) supports students in engaging thoughtfully with the subject, and is neither distracting nor chaotic.
3z · Indicator 3z
Materials provide teacher guidance for the use of embedded technology to support and enhance student learning, when applicable.