7th Grade - Gateway 3
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Usability
Gateway 3 - Meets Expectations | 100% |
|---|---|
Criterion 3.1: Teacher Supports | 9 / 9 |
Criterion 3.2: Assessment | 10 / 10 |
Criterion 3.3: Student Supports | 8 / 8 |
Criterion 3.4: Intentional Design |
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for Usability. The materials meet expectations for Criterion 1, Teacher Supports, for Criterion 2, Assessment, and for Criterion 3, Student Supports.
Criterion 3.1: Teacher 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.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for Teacher Supports. The materials: provide teacher guidance with useful annotations and suggestions for enacting the materials, contain adult-level explanations and examples of the more complex grade-level concepts and concepts beyond the current grade so that teachers can improve their own knowledge of the subject, include standards correlation information that explains the role of the standards in the context of the overall series, provide explanations of the instructional approaches of the program and identification of the research-based strategies, and provide a comprehensive list of supplies needed to support instructional activities.
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 order to guide their mathematical development.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for providing teacher guidance with useful annotations and suggestions for how to enact the student materials and ancillary materials, with specific attention to engaging students in order to guide their mathematical development.
Materials provide comprehensive guidance that will assist teachers in presenting the student and ancillary materials.
A Curriculum Overview provides a chart of the components and description for the lessons, assessments, and Domain Review. The curriculum components are described briefly in the Overview section.
A Practical Approach to Using Assessments, Rubrics & Scoring Guidelines helps the teacher understand rubrics for the assessments.
In the Teacher Guide, there is instruction on planning a lesson with a sample sequence for lessons and assessments. The materials provide pacing for the year.
In the Teacher Guide, the instructional protocols used throughout the series are described and connected to the Mathematical Practices they support.
In the Detailed Lesson Plan, there is a section to help support Diverse Learners with a chart of Accommodations, Modifications, and Extensions, as well as Language Routines.
Common Misconceptions are listed in each Detailed Lesson Plan.
Teachers are given suggestions for vocabulary incorporation such as, “In your math classroom, make a Word Wall to hang and refer to vocabulary words throughout the lesson. As a whole-class exercise, create a visual representation and definition once students have had time to use their new words throughout a lesson.”
Guidance is given to teachers for applying and reinforcing math practices in the Teacher Guide and in Detailed Lesson Plans. For example, MP8: “This practice is reinforced by having the students watch a complimentary video in which Jo Boaler has students modeling how to look for and identify patterns in real-life scenarios.” Guidance shared directly from Jo Boaler states, “Students need time and space to develop their capacity to ‘look for and express regularity in repeated reasoning.’ When you provide tasks that are specific to supporting MP8, explicitly tell students that it’s ok to slow down, and to think deeply.” Several “tips” to address the MP are also shared.k to slow down, and to think deeply.”
“Detailed Lesson Plans provide a step-by-step guide with specific learning objectives for the math standard, lesson summary, prerequisite standards, vocabulary and vocabulary protocols, applying Standards for Mathematical Practice, Jo Boaler's SMP Tips, cluster connection, common misconceptions, instruction at a glance, and day-by-day teaching instructions with time allotments. Also included are suggestions for differentiation, and instructional moves as well as tips for the English Language Learner student.”
Materials include sufficient and useful annotations and suggestions that are presented within the context of the specific learning objectives. Throughout each lesson’s Detailed Lesson Plan, there is narrative information to assist the teacher in presenting student material throughout all phases. Examples include:
7.NS.A.2c The Mastermind, Teacher Instruction: “Remember that the properties of operations can be used as a tool when multiplying and dividing rational numbers. In The Mastermind, DJ Mastermind used the distributive property to quickly solve a problem involving mixed numbers in his head. We could have just multiplied these numbers on paper, but sometimes the structure of the properties of operations help us to rearrange problems or to break them down so we can simplify our calculations.”
7.G.B.6 Miracle Mural, Common Misconceptions: “Students may struggle with when to use square units or cubic units. Remind students that area is ‘covering,’ which involves 2-dimensions and square units, while volume is ‘filling,’ which involves 3-dimensions and cubic units.”
7.RP.A.2a Hot Sauce!, Instruction at a Glance Pro Tip: “Students may struggle with the difference between additive reasoning and multiplicative reasoning. Help them understand that although additive relationships can form a line, the line won't go through the origin and the ratios between values won't be equivalent.”
7.NS.A.1b Space Selfie, Part 3 Resolution: “1. Play Resolution video to the whole class, and have the students compare their solutions as they watch. 2. After the video, prompt students with the following questions: What did you do that was the same? What was different? What strategy do you think was more efficient to find the equation? Why? Students may respond aloud or in a journal.”
Indicator 3b
Materials contain adult-level explanations and examples of the more complex grade-level/course-level concepts and concepts beyond the current course so that teachers can improve their own knowledge of the subject.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for containing 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.
Under the Resources Tab, there is a section dedicated to Adult-Level Resources. These contain adult-level explanations including examples of the more complex grade/course-level concepts so that teachers can improve their own knowledge of the subject. There are also professional articles provided on topics such as mathematical growth mindset, cultural diversity in math, and mathematical language routines.
The Teacher Guide contains a page at the beginning of each cluster section titled, “Cluster Refresher for the Teacher - Adult Level Explanation”. This provides a page of basic background information for the teacher including strategies to develop understanding. For example,
“7.RP.A involves analyzing proportional relationships and using them to solve real-world and mathematical problems. The concept relies on the understanding of how numbers relate to each other in multiplicative and divisional ways and applying that understanding to real-world contexts. ... The importance of understanding proportionality is paramount to realizing how many uses it has in a real world context. Application of this skill assists with cooking, money applications, statistics, measurement, geometry, architecture, and a great deal in the field of science, just to name a few.”
The Adult-Level Explanations booklet under the Resources tab includes a progression through each domain from Grade 5 through High School. The last section is Beyond Grade 8, which explains how the middle grades learning connects to high school standards. For example: Beyond Grade 8: Ratios & Proportions:
“Understanding the quantitative relationship between two quantities describes ratio, while equivalence between sets of ratios describes proportion. Making the connection that numbers relate to each other in the sense of multiplication and division is key to identifying and understanding proportional relationships. ... In the high school years, these concepts continue to build on each other. These concepts are essential in all facets of life, extending to topics such as speed, density, and acceleration in science, drawing conclusions about populations in statistics, adjusting recipes while cooking, and getting the best deal at the grocery store.”
Indicator 3c
Materials include standards correlation information that explains the role of the standards in the context of the overall series.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for including standards correlation information that explains the role of the standards in the context of the overall series.
Correlation information is present for the mathematics standards addressed throughout the grade level/series.
Each course in this series includes a document called Planning the Year that provides the standards and pacing for each lesson.
There are standards correlations in the Scope and Sequence Chart that lists each Lesson, Domain Review, and Major Cluster Lessons throughout a year.
Each lesson is designed to address a single standard.
Explanations of the role of the specific grade-level/course-level mathematics are present in the context of the series.
The Teacher Guide contains a page at the beginning of each cluster section titled “Role of Mathematics” which clearly identifies the grade-level clusters and standards within a domain and describes the intent of the cluster. The Cluster Role Across Grade Levels describes the grade-level content in context of the domain progression from when the initial related skills were introduced to how the skills progress through high school. For example, “The 7.RP.A cluster involves analyzing proportional relationships and using them to solve real world and mathematical problems. Students compute unit rates, recognize and represent proportional relationships, and use them to solve multistep ratio and percent problems. Skills leading up to this cluster begin in Grade 4, where students multiply or divide to solve word problems, distinguishing multiplicative reasoning from additive reasoning (4.OA.A.2). ... These skills will continue to be applied in High School, as students create equations in two or more variables to represent relationships between quantities (HSA.CED.A.2), use units to understand and guide the solution of multi-step problems (HSN.Q.A.1) and apply concepts of density based on area and volume (HSG.MG.A.2).”
The Detailed Lesson Plan for each lesson lists the Prerequisite Standards required for students to be successful in the lesson. For example, in 7.G.B.5 Guarding the Great Gate, the Prerequisite Standard listed is 4.MD.C.7.
The Detailed Lesson Plan for each lesson includes Cluster Connections that identify connections between clusters and coherence across grade levels. For example, in 7.G.A.3 Doctor Dilim's Dimensions, Cross-Cluster Connection: “This activity connects 7.G.A to 8.G.C as students will build capacity for seeing 3-D figures as a collection of 2-D components, which provides a foundation to better understand how formulas are developed for surface area and volume of pyramids, cylinders and cones.”
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.
Indicator 3e
Materials provide explanations of the instructional approaches of the program and identification of the research-based strategies.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for providing explanations of the instructional approaches of the program and identification of the research-based strategies.
Materials explain the instructional approaches of the program.
The Curriculum Overview in the Teacher's Guide states that the curriculum is designed to “STOP THE DROP.” The materials state, “Core Curriculum by MidSchoolMath is developed to fix this problem through a fundamentally different approach... MidSchoolMath emphasizes structured, conceptual learning to prepare students for Algebra I... MidSchoolMath is specifically designed to address the ‘The Mid School Math Cliff’.”
In the Teacher Guide, the overview on Scoring Guidelines states, “In coordination with Dr. Jo Boaler, MidSchoolMath has developed an approach to using rubrics and scoring with an emphasis on making them useful and practical for helping teachers support student learning. This is in contrast to the use of scoring guidelines for the primary purpose of giving grades.”
In the Letter to the Parent, the instructional approaches are summarized, “MidSchoolMath strives to help students see that math is relevant and holds value and meaning in the world. The curriculum is designed not only to enhance student engagement, but also to provide stronger visual representation of concepts with focus on logic structures and mathematical thinking for long-term comprehension. ... Peer Teaching: Students learning from other students is a powerful mechanism, wherein both the ‘teachers’ and the ‘learners’' receive learning benefits.”
Materials reference relevant research sources:
“Hattie, J. (2017) Visible Learning
Cooney, J.B., Laidlaw, J. (2019) A curriculum structure with potential for higher than average gains in middle school math
Tomlinson (2003) Differentiated Instruction
Dweck (2016) Growth Mindset
Carrier & Pashler (1992) The influence of retrieval on retention: the testing effect
Boaler, J. (2016) Mathematical MindSets
Rohrer, D., & Pashler, H. (2007) Increasing retention without increasing study time
Kibble, J (2017) Best practices in summative assessment
Laidlaw, J. (2019) Ongoing research in simulators and contextualized math
Lave, J. (1988) Cognition in practice: Mind, mathematics and culture in everyday life
Schmidt and Houang (2005) Lack of focus in mathematics curriculum: symptom or cause.”
Materials include research-based strategies. Examples include:
“Detailed Lesson Plans (Research Indicator: Teacher pedagogy and efficacy remains the highest overall factor impacting student achievement. Multiple instructional models show greater gains than ‘stand and deliver’.)
The Math Simulator (Research Indicator: On randomized controlled trials, The Math SimulatorTM elicited high effect sizes for achievement gains across educational interventions. Contextual learning and Productive Failure are likely influences contributing to the large achievement gains.)
Teacher Instruction (Research Indicator: Clarity of teacher instruction shows a large effect on student achievement.)
Practice Printable (Research Indicator: Differentiation of instruction leads to higher effect sizes compared to full-time ‘whole-group’ instruction. Varied instructional approaches support a growth mindset, an indicator for student success.)”
Indicator 3f
Materials provide a comprehensive list of supplies needed to support instructional activities.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for providing a comprehensive list of supplies needed to support instructional activities.
The Teacher Guide includes Planning the Year, Comprehensive Supply List which provides a supply list of both required and recommended supplies for the grade. For example: “Required: Markers, Chart, Paper, Colored Pencils, Dry-erase Markers, Graph Paper, Ruler, Protractor, Compass; Recommended: Individual white boards/laminated alternative, Calculator, Dice, Playing cards, Algebra tiles.”
Each Detailed Lesson Plan includes a Materials List for each component of the lesson. For example in 7.SP.C.8.a-b Red Buffalo:
“Immersion: Materials - Red Buffalo Immersion video; Chart paper/Interactive whiteboard; White paper
Data & Computation: Materials - Copies of Red Buffalo Data Artifact, one per student
Resolution: Materials - Red Buffalo Resolution video
Math Simulator: Materials - Red Buffalo Simulation Trainer; Student Devices; Paper and Pencil; Student Headphones
Practice Printable: Materials - Red Buffalo Practice Printable
Student Reflection: Materials - Copies of Student Reflection rubric, 1 per student; White Paper; Colored Pencils; Sticky notes
Clicker Quiz: Materials - Red Buffalo Clicker Quiz; Student Devices; Paper and Pencil”
Indicator 3g
This is not an assessed indicator in Mathematics.
Indicator 3h
This is not an assessed indicator in Mathematics.
Criterion 3.2: Assessment
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.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for Assessment. The materials: have assessment information included in the materials to indicate which standards are assessed, include an assessment system that provides multiple opportunities throughout the grade to determine students' learning and sufficient guidance to teachers for interpreting student performance and suggestions for follow-up, and provide assessments that include opportunities for students to demonstrate the full intent of grade-level standards and practices.
Indicator 3i
Assessment information is included in the materials to indicate which standards are assessed.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for having assessment information included in the materials to indicate which standards are assessed. The materials consistently identify the standards and Mathematical Practices addressed by formal assessments.
In the Teacher Guide, Curriculum Components lists several assessments: Clicker Quiz, Test Trainer Pro, and the summative Milestone Assessment. Each cluster has a Pre-assessment and a Post-assessment (Milestone Assessment) which clearly identifies the standard(s) being assessed. The standard is part of the title, for example, “Milestone Post-Assessment 7.SP.C.”; individual tasks and items are not identified on the actual assessment. However, each problem is identified with the standard being assessed in the teacher answer key.
Standards are identified accurately and are from the appropriate grade level.
Assessment problems are presented in the same order as the lessons. They are sequential according to Domain and Cluster headings.
The Milestone Assessments include a chart that aligns Mathematical Practices to each question on the assessment, including identifying if the assessment is online, print, or both.
The end of each lesson includes a student self-assessment rubric that has students evaluate their understanding of the content standard and the mathematical practices that align with the lesson.
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.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for including an assessment system that provides multiple opportunities throughout the grade to determine students' learning and sufficient guidance to teachers for interpreting student performance and suggestions for follow-up. There is guidance provided to help interpret student performance and specific suggestions for following-up.
The assessment system provides multiple opportunities to determine students' learning and sufficient guidance to teachers for interpreting student performance.
In the Teacher Guide, the Domain Curriculum Components lists two assessments: Test Trainer Pro (formative) and Milestone Assessment (summative).
“Milestone Assessment is a summative evaluation following each cluster per grade. They are automatically graded, yielding the percentage of items answered correctly. The math items are crafted to include items of varying difficulty.” “Please note: Milestone Assessments should not be used to determine student growth. As summative assessments, they are not as sensitive nor as accurate as the adaptive tool, Test Trainer Pro, for providing individual student data for achievement gains over time.”
“Test Trainer Pro acts as a low-stakes, formative learning tool for students to practice testing under more relaxed and stress-free conditions. It is an adaptive tool and is designed to elicit the largest gains in student achievement possible in the shortest period of time.”
The Teacher Guide contains a section titled “A Practical Approach to Using Assessments, Rubrics & Scoring Guidelines.” This section provides several assessment rubrics:
The MidSchoolMath Rubric and Scoring Framework aligns a percentage “raw score” with a 4-point rubric and proficiency levels.
The Milestone Assessment Rubric aligns a percentage “raw score” with a 4-point rubric and has suggestions for follow-up.
The Student Self Assessment has students reflect and identify understanding for each lesson component.
An article by Jo Boaler, “Assessing Students in a Growth Mindset Paradigm with Jo Boaler” provides “recommendations for assessment and grading practices to encourage growth mindsets.”
Each Curricular cluster contains a tab for Assessments which has a Milestone Assessment Overview & Rubric. There is a rubric from 0 to 3 provided for the open response section of the assessment. To earn all 3 points, students must demonstrate accuracy, show work, and may only have minor mistakes.
“Recommended Scoring for Milestone Assessments: A 3-point response includes the correct solution(s) to the question and demonstrates a thorough understanding of the mathematical concepts and/or procedures in the task. This response: Indicates that the student has completed the task correctly, using mathematically sound procedures; Contains sufficient work to demonstrate a thorough understanding of the mathematical concepts and/or procedures; May contain inconsequential errors that to not detract from the correct solution(s) and the demonstration of a thorough understanding.”
The Overview states, “All items in Milestone Assessments are at grade level and evaluate student understanding of the content at the ‘cluster’ level. Milestone Assessments should only be administered to students after all lessons are completed within the cluster, following recommended sequence and pacing.”
The answer key for each Milestone Assessment provides examples of correct responses for each problem. There is a sample response for the open-ended questions.
Several of the other lesson components could be used as formative assessments or for progress monitoring such as the Clicker Quiz.
The assessment system provides task-specific suggestions for following-up with students. There are suggestions for follow-up that are generic strategies, and there are some that direct students to review specific content.
The Milestone Assessment Rubric includes Recommendations for Follow Up. These are found in the front matter of the Teacher Guide. They are generic to all assessments and align with the 4 points of the rubric:
“Review and correct any mistakes that were made. Participate in reteaching session led by teacher.
Review and correct any mistakes that were made. Identify common mistakes and create a ‘Top-3 Tips’ sheet for classmates.
Review and correct any mistakes that were made. Participate in the tutorial session.
Review and correct any mistakes that were made. Plan and host a tutorial session for the Nearing Proficient group.”
The Milestone Assessment also includes suggestions based on which problems are missed. The guidance directs students to review the worked example and Clicker Quiz in the lessons that align to the missed problems and then revise the problems they missed in the assessment. This provides specific feedback to review the content of the lesson.
The Student Self-Assessment provides a generic strategy for follow-up: “Recommended follow-up: When students self-identify as ‘Don’t get it!’ Or ‘Getting there!’ on an assignment, is it essential for teachers to attempt to provide support for these students as soon as possible. Additionally, it is helpful for teachers to use scoring on Practice Printables and Clicker Quizzes to gauge student comprehension. Use the general scoring guidelines to determine approximate proficiency. It is highly recommended that all assignments may be revised by students, even those which are scored.”
The Student Self-Assessment provides suggestions based on where the students rate themselves. Students are directed to review specific parts of the lesson to reinforce the parts they do not feel successful with. There are also more generic strategies suggested that go across lessons and grade levels.
The materials state that “Test Trainer Pro automates assessment and recommendations for follow-up under the score. As an assessment, Test Trainer Pro is the most specific, and most accurate measure available in MidSchoolMath to determine how students are performing in terms of grade and domain level performance.” A teacher can view the Test Trainer Pro question bank; however, there is no way to review the specific follow-up recommendations provided since they are adapted to each student.
Exit Ticket results are sometimes used to suggest grouping for instructional activities the following day.
Indicator 3k
Assessments include opportunities for students to demonstrate the full intent of grade-level/course-level standards and practices across the series.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for providing assessments that include opportunities for students to demonstrate the full intent of grade-level standards and practices across the series. Assessments include opportunities for students to demonstrate the full intent of grade-level standards and the mathematical practices across the series.
Assessments are specific to each standard, so there is opportunity for students to demonstrate to the full intent of grade-level standards.
Considering both formative and summative assessments, there are a variety of item types offered including Exit Tickets, Clicker Quizzes, Test Trainer Pro, Lesson Reflection, Self-Reflection, and Milestone Assessments.
Most assessments are online and multiple choice in format, though there is a print option for milestone assessments that includes open response.
Students have the opportunity to demonstrate the full intent of the practices in assessments; practices are aligned in Milestone assessments and addressed in the student self-assessments for each lesson.
Indicator 3l
Assessments offer accommodations that allow students to demonstrate their knowledge and skills without changing the content of the assessment.
Criterion 3.3: Student Supports
The program includes materials designed for each student’s regular and active participation in grade-level/grade-band/series content.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for Student Supports. The materials provide: strategies and supports for students in special populations to support their regular and active participation in learning grade-level mathematics, extensions and/or opportunities for students to engage with grade-level mathematics at higher levels of complexity, strategies and supports for students who read, write, and/or speak in a language other than English to regularly participate in learning grade-level mathematics, and manipulatives, both virtual and physical, that are accurate representations of the mathematical objects they represent and, when appropriate, are connected to written methods.
Indicator 3m
Materials provide strategies and supports for students in special populations to support their regular and active participation in learning grade-level/series mathematics.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for providing strategies and supports for students in special populations to support their regular and active participation in learning grade-level/series mathematics.
Materials regularly provide strategies, supports, and resources for students in special populations to help them access grade-level mathematics. In each Detailed Lesson Plan, Supporting Diverse Learners, there is a chart titled Accommodations, Modifications, and Extensions for English Learners (EL) and Special Populations that provides accommodations for each component of the lesson. Many of these are generic, but some are specific to the content of the lesson. For example, the components of 7.EE.B.4a, Pen Perimeter, include:
The Math Simulator Immersion: “Reinforce vocabulary in action: Quotient: a result obtained by dividing one number by another; Using the Frayer model, have students create vocabulary cards for each of the lesson’s vocabulary words, plus quotient, positive quotient, and negative quotient.”
The Math Simulator Data & Computation: “Provide students with a graphic organizer with concrete examples as well as definitions and mathematical rules for the following words: integers, non-integers, rational numbers, undefined, quotients, positive quotients, and negative quotients. Give students real world examples of what the fractions mean (like the one in the problem) to help students make the fractions with a negative make more sense. Another example would be negative temperatures.”
Simulation Trainer: “Pair students to allow for peer teaching and support.”
Practice Printable: “Upon completion of the first page (Procedure #1), consider following the Exit Ticket Differentiation Plan. Pair students to allow for peer teaching and support. Consider allowing students to answer questions verbally to a scribe. Students may benefit from extended time.” The Practice Printable also has interactive buttons that allow students to complete work online through draw and text tools as well as a work pad that includes an opportunity to chat with the teacher.
Clicker Quiz: “Students may benefit from a printed copy of the Clicker Quiz pages. Read Clicker Quiz questions aloud to students, especially those questions that are text-intensive.”
Indicator 3n
Materials provide extensions and/or opportunities for students to engage with grade-level/course-level mathematics at higher levels of complexity.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for providing extensions and/or opportunities for students to engage with grade-level mathematics at higher levels of complexity.
Materials provide multiple opportunities for advanced students to investigate the grade-level content at a higher level of complexity. The Exit Ticket in each lesson provides a differentiation plan that includes extension. While some strategies are the same across lessons, there are a variety of tasks offered. Examples include:
7.G.A.3 Doctor Dilim's Dimensions, “Task the students with creating a match game with index cards. One pair of cards should have a visual model of a 3D figure with a line for a cross-section cut, and the other should have a visual model of 2D figure that matches.”
7.NS.A.1a Ghost Tamers, “Create a poster to explain the idea of opposite quantities. Include at least one diagram, at least one real-life example, and at least one mathematical example.”
7.NS.A.2d Grandpa's Journey, “Analyze these rational numbers and their decimal equivalents. Attempt to define a shortcut telling you and your classmates when a rational number will terminate or repeat just by looking at the fraction representation.”
In each Detailed Lesson Plan under Supporting Diverse Learners, there is a chart titled Accommodations, Modifications and Extensions for English Learners (EL) and Special Populations that provides extensions for each component of the lesson. Many of these are generic, but some are specific to the content of the lesson. For example, the components of 7.EE.B.4a Pen Perimeter include:
The Math Simulator Data & Computation: “Have students create additional clues to a map like the ones in the Immersion and trade with a partner to solve. Have them use a 20 × 20 map to do so.”
Practice Printable: “Upon completion of the first page (Procedure #1), consider following the Exit Ticket Differentiation Plan. Have students create problems like a)-d) using fractions. Have them exchange them with a partner and solve.”
Clicker Quiz: “Task students with writing and solving their own ‘clicker quiz’ question.”
Extensions are optional; there are no instances of advanced students doing more assignments than their classmates.
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 students to monitor their learning.
Indicator 3p
Materials provide opportunities for teachers to use a variety of grouping strategies.
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 mathematics.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for providing strategies and supports for students who read, write, and/or speak in a language other than English to regularly participate in learning grade-level mathematics.
Materials consistently provide strategies and supports for students who read, write, and/or speak in a language other than English to meet or exceed grade-level standards through regular and active participation in grade-level mathematics. Examples include:
In the Detailed Lesson Plan for every lesson, the same two strategies are suggested: “Access Closed Caption and Spanish Subtitles within the video.” and “Pair students to allow for peer teaching and support. Consider allowing EL students to write the narrative in their native language, then use a digital translator to help them transcribe it into English.”
Each Detailed Lesson Plan makes a connection with one of the eight identified Math Language Routines (MLR), listed and described in the Teacher Guide. The MLRs include: Stronger and Clearer Each Time, Collect and Display, Critique, Correct, and Clarify, Information Gap, Co-Craft Questions and Problems, Three Reads, Compare and Connect, Discussion Supports.
All materials are available in Spanish.
The use of protocols such as Think-Pair-Share, Quick Write, and I Wonder I Notice provides opportunities for developing skills with speaking, reading, and writing.
Vocabulary is provided at the beginning of each lesson and reinforced during practice and lesson reflection, “In the Practice Printable, remind students that key vocabulary words are highlighted.” In the Student Reflection, the rubric lists the key vocabulary words for the lesson. Students are required to use these vocabulary words to explain, in narrative form, the math experienced in the lesson.
There is teacher guidance under the Resources tab - Math Language Routines. “Principles for the Design of Mathematics Curricula: Promoting Language and Content Development”, from the Stanford University Graduate School of Education, provides background information, philosophy, four design principles, and eight math language routines with examples.
There are no strategies provided to differentiate the levels of student progress in language development.
Indicator 3r
Materials provide a balance of images or information about people, representing various demographic and physical characteristics.
Indicator 3s
Materials provide guidance to encourage teachers to draw upon student home language to facilitate learning.
Indicator 3t
Materials provide guidance to encourage teachers to draw upon student cultural and social backgrounds to facilitate learning.
Indicator 3u
Materials provide supports for different reading levels to ensure accessibility for students.
Indicator 3v
Manipulatives, both virtual and physical, are accurate representations of the mathematical objects they represent and, when appropriate, are connected to written methods.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 meet expectations for providing manipulatives, both virtual and physical, that are accurate representations of the mathematical objects they represent and, when appropriate, are connected to written methods.
Examples where manipulatives are accurate representations of mathematical objects include:
The students have access to virtual manipulatives on the Work Pad which is available online in their Simulator Trainer, Practice Printable, Assessments, and Clicker Quiz. These include shapes, 2-color counters, base 10 blocks, algebra tiles, protractor, and ruler. In addition, there are different styles of digital graph paper and dot paper on the digital whiteboard.
Throughout the materials, there are visual models with number lines, graphs, or bars, though these cannot be manipulated.
During the Immersion and Resolution videos, items from the real world are used to represent mathematical concepts.
The Teacher Guide has a section titled “Guidance on the Use of Virtual Manipulatives.” This section includes sub-sections titled: Overview, General Guidance, During Lessons, Manipulative Tools, and Examples of their Use & Connecting to Written Methods. The “Examples of their Use & Connecting to Written Methods” provides teachers with guidance about how to use and make connections with the manipulatives.
In the Detailed Lesson Plan, Practice Printable, there is a “Manipulative Task!” where students use the virtual tools in the Work Pad and specifically connect manipulatives to written methods. For example, 7.RP.A.2b Coffee Caravan, Manipulative Task for Digital WorkPad: “Have students return to Problem #1d on the Practice Printable and use the WorkPad to graphically represent the data provided in the table. The students should aim to visually verify if the relation in the table has the same constant of proportionality as y = 1/3x. Encourage students to experiment with the different manipulatives provided in the WorkPad to complete the exercise. For example, students could use the grid background, Line tool, and the Text tool to create and label a coordinate plane, keeping in mind the scale necessary to easily plot the given data points. Finally, the students could use the 2-Color Counters to plot the given ordered pairs, and may connect them using the Line tool. Using this visual representation, students can explore how a graph can help them visually identify the constant of proportionality by observing patterns between each point of data.”
Criterion 3.4: Intentional Design
The program includes a visual design that is engaging and references or integrates digital technology, when applicable, with guidance for teachers.
The materials reviewed for Core Curriculum by MidSchoolMath Grade 7 include a visual design that is engaging and integrates digital technology, when applicable, with guidance for teachers. The materials: integrate technology such as interactive tools, virtual manipulatives/objects, and/or dynamic mathematics software in ways that engage students in the grade-level standards, include or reference digital technology that provides opportunities for teachers and/or students to collaborate with each other, have a visual design that supports students in engaging thoughtfully with the subject, and provide some teacher guidance for the use of embedded technology to support and enhance student learning.
Indicator 3w
Materials integrate technology such as interactive tools, virtual manipulatives/objects, and/or dynamic mathematics software in ways that engage students in the grade-level/series standards, when applicable.
Indicator 3x
Materials include or reference digital technology that provides opportunities for teachers and/or students to collaborate with each other, when applicable.
Indicator 3y
The visual design (whether in print or digital) supports students in engaging thoughtfully with the subject, and is neither distracting nor chaotic.
Indicator 3z
Materials provide teacher guidance for the use of embedded technology to support and enhance student learning, when applicable.