This resource is focused on encouraging student questioning through the use of phenomena and problem solving. Content overall aligns well to SEEd standards. Students are asked to use cross-cutting concepts and science and engineering processes in a series of learning activities designed to build upon each other. There is a significant hands on component to this resource and group discussion and analysis is used to reveal student thinking.
Item | 3 - Extensive | 2 - Adequate | 1 - Inadequate | 0 - None | ||
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Sensitive Materials and Prohibited Submission 53G-10-103, R277-628 | This item has not been graded. | |||||
Prohibited discriminatory practices 53G-2-103-5, 53B-1-118 and 67-27-107 | This item has not been graded. | |||||
Maintaining constitutional freedom in the public schools. 53G-10-202 | This item has not been graded. | |||||
Free from advertising, e-commerce, or political interest | This item has not been graded. | |||||
Item | 3 - Extensive | 2 - Adequate | 1 - Inadequate | 0 - None | ||
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Presence of Three Dimensions of Science: Builds understanding of the science and engineering practices (SEPs), disciplinary core ideas (DCIs), and crosscutting concepts (CCCs). i. Provides opportunities to develop and use specific elements of the SEP(s) ii. Provides opportunities to develop and use specific elements of the DCI(s) iii. Provides opportunities to develop and use specific elements of the CCC(s) | 3 of the Criteria Indicators are met | 2 of the Criteria Indicators are met | 1 of the Criteria Indicators are met | None of the Criteria Indicators are met | ||
Book has integrated all aspects of 3 Dimensional science. Opportunities are provided for students to practice using cross cutting concepts as well as using SEP's to solve problems. Investigations correspond to appropriate DCI's and require students to learn and apply DCI concepts. | ||||||
Integration of Three Dimensions of Science: Materials integrate elements of the SEPs, CCCs, and DCIs for student sense‐making: Three dimensions of science (SEPs, CCCs, and DCIs) are integrated (consistently utilized in conjunction with each other) to help students make sense of phenomenon and solve problems. | Three dimensions of science (SEPs, CCCs, and DCIs) are consistently integrated. | Three dimensions of science are integrated in certain portions of the instructional material. | Three dimensions of science are rarely integrated in the instructional material. | Three dimensions of science (SEPs, CCCs, and DCIs) are separated and not integrated for student sense making. | ||
Materials connect SEP's, CCC's and DCI's in a logical progression that is student driven and inquiry based. Content is framed by phenomena and application of principles to problems. | ||||||
Alignment to Standards: The DCI Concepts (science content) in the instructional materials align to the Utah Science with Engineering Education (SEEd) Standards | DCI concepts (science content) in the instructional material align to 100% the SEEd Standards for the Grade/Course. | DCI concepts (science content) in the instructional material align to 75% the SEEd Standards for the Grade/Course. | DCI concepts (science content) in the instructional material align to 50% the SEEd Standards for the Grade/Course. | DCI concepts (science content) in the instructional material align to less than 50% the SEEd Standards for the Grade/Course. | ||
Materials come with standard correlations to match the Utah State SEEd core standards. | ||||||
Scientific Accuracy: Uses scientifically accurate and grade‐appropriate scientific information, phenomena, and representations to support students’ three‐dimensional learning. | Instructional materials are scientifically accurate and grade appropriate. | N/A | N/A | Instructional materials are NOT scientifically accurate and grade appropriate. | ||
Information is accurate and appropriate for a secondary Earth Science class. |
Item | 3 - Extensive | 2 - Adequate | 1 - Inadequate | 0 - None | ||
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Focus on Phenomena (Science) or Problems (Engineering): Making sense of phenomena and/or designing solutions to a problem drive student learning. i. Student questions and prior experiences related to the phenomenon or problem motivate sense‐making and/or problem solving ii. The focus of the lesson is to support students in making sense of phenomena and/or designing solutions to problems iii. When engineering is a learning focus, it is integrated with developing disciplinary core ideas from physical, life, and/or earth and space sciences | 3 of the Criteria Indicators are met | 2 of the Criteria Indicators are met | 1 of the Criteria Indicators are met | None of the Criteria Indicators are met | ||
Lessons are phenomena or problems based. Students are frequently asked to think about prior experiences and incorporate their existing knowledge into explanations. Lessons encourage student led questioning and investigation. Engineering principles are included and incorporated into building DCI content knowledge. | ||||||
Scaffolding: Identifies and builds on students’ prior learning in all three dimensions i. Provides supports to help students engage in the practices and gradually adjusts supports over time so that students are increasingly responsible for making sense of phenomena and/or designing solutions to problems (Required) ii. Explicitly identifies prior student learning expected for all three dimensions iii. Clearly explains how the prior learning will be built upon | 3 of the Criteria Indicators are met | 2 of the Criteria Indicators are met (i MUST BE MET) | Only Criteria Indicator i has been met | None of the Criteria Indicators are met | ||
Students are provided opportunities to practices skills and solve problems gradually building on prior learning to allow students to explain framing phenomena or develop solutions to engineering challenges. The materials explain how prior learning connects to learning goals for surrounding content but prior students learning for all three dimensions is not explicitly stated. | ||||||
Teacher Supports: Supports teachers in facilitating coherent student learning experiences over time i. Provides strategies for linking student engagement across lessons (e.g. cultivating new student questions at the end of a lesson in a way that leads to future lessons) ii. Providing strategies for ensuring student sense‐making and/or problem‐solving is linked to learning in all three dimensions (e.g. Claim Evidence Reasoning-CER Framework for communicating sense-making, teacher probing questions) iii. Provides additional resources for student learning (e.g. Models, simulations, and/or data sets for students investigation) | 3 of the Criteria Indicators are met | 2 of the Criteria Indicators are met | 1 of the Criteria Indicators are met | None of the Criteria Indicators are met | ||
Materials include learning strategies that encourage student questioning and engagement. Lessons build upon each other to encourage students to link learning to future lessons. Data sets, hands on experiments, reading and probing questions are provided for students to investigate. | ||||||
Assessments: Includes formative, summative, and guidance measures for interpreting student performances that assess three‐dimensional science learning. i. Embeds formative assessment processes throughout conceptual development that surfaces student understanding to inform instruction ii. Embeds summative assessment processes following conceptual development that evaluate student learning and measure understanding iii. Includes aligned rubrics or scoring guidelines that provide guidance for interpreting student performance | 3 of the Criteria Indicators are met | 2 of the Criteria Indicators are met | 1 of the Criteria Indicators are met | None of the Criteria Indicators are met | ||
Materials include frequent formative assessments and encourages students to work in small groups to share thinking and develop understanding. Summative assessments are included with materials but there are no aligned rubrics or scoring guidelines to use to interpret performance. Quiz analytics are available. |
Item | 3 - Extensive | 2 - Adequate | 1 - Inadequate | 0 - None | ||
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Relevant and Authentic: Engages students in authentic and meaningful scenarios that reflect the practice of science and engineering as experienced in the real world. i. Students experience phenomena or design problems as directly as possible (first-hand or through media representations) ii. Includes suggestions for how to connect instruction to the students' home, neighborhood, community and/or culture as appropriate iii. Provides opportunities for students to connect their explanation of a phenomenon and/or their design solution to a problem to questions from their own experience | 3 of the 4 Criteria Indicators are met | 2 of the 4 Criteria Indicators are met | 1 of the 4 Criteria Indicators are met | None of the 4 Criteria Indicators are met | ||
Students are presented with real life examples and data to use to make sense of phenomena or design solutions to problems. Materials include procedures and questions for hands on investigations to help explain DCI's and build student experiences. Students are frequently asked to find and analyze data sets or are presented with data sets associated with real world problems. Students are asked to apply what they learn in investigations to their own experiences or communities. | ||||||
Teacher Supports for Diverse Learners: Provides guidance for teachers to support differentiated instruction i. Includes appropriate reading, writing, listening, and/or speaking alternatives (e.g., translations, picture support, graphic organizers, etc.) for students who are English language learners, have special needs, or read well below grade level ii. Provides extra support (e.g., phenomena, representations, tasks) for students who are struggling to meet the targeted expectations iii. Provides extensions for students with high interest or who have already met the performance expectations to develop a deeper understanding of the practices, disciplinary core ideas, and crosscutting concepts | 3 of the Criteria Indicators are met | 2 of the Criteria Indicators are met | 1 of the Criteria Indicators are met | None of the Criteria Indicators are met | ||
Materials include a text to speech screen reader, assignments are designed to support struggling learners through the use of graphic organizers, vocabulary support, and picture support. There were no translations available or readily apparent. Extension activities are suggested for students with high interest. Suggestions for struggling students were not observed. | ||||||
Accessible for all students: Engages students using methods, vocabulary, representations, and examples that are accessible and unbiased for all learners (e.g., Deaf and Blind, English Learners, Gifted and Talented, Special Education). | Instructional Materials are accessible for all students | N/A | N/A | Instructional Materials are NOT accessible for all students | ||
A screen reader is provided and helpful learning strategies are employed and students are often asked to include their own experience. No other tools for accessibility were present or easily available. | ||||||
Physical Characteristics | This item has not been graded. | |||||
Technical Standards | This item has not been graded. | |||||
Ethnic Studies- (Ethnic studies in core standards and curriculum should be a narrowly tailored incorporation of age-appropriate opportunities that naturally arise through education without pretextual effort in courses, programs, or activities where ethnic studies is not a primary focus. The material should incorporate a curriculum of people and cultures that reflect the state’s various demographics without commentary that seeks to violate the neutrality standard established in codes: 53B-1-118, 53G-2-103, 53G-2-104, 53G-2-105, 67-27-107, | This item has not been graded. | |||||
Shared Values and Character Traits | This item has not been graded. | |||||
250 East 500 South
Salt Lake City, UT 84111-3204
Phone: 801.538.7807