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            <div class="bg-blue-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
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                 data-tippy-content="Next Generation Science Standards • Performance Expectations • HS-ETS1-2 • Design a solution to a complex real-world problem by breaking it down into smaller, more manageable problems that can be solved through engineering.">
                HS-ETS1-2
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            <div class="bg-blue-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
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                 data-tippy-content="Next Generation Science Standards • Science and Engineering Practices • 9-12.AF.3.3 • Plan and conduct an investigation or test a design solution in a safe and ethical manner including considerations of environmental, social, and personal impacts.">
                9-12.AF.3.3
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            <div class="bg-blue-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
                 data-controller="tooltip"
                 data-tippy-content="Next Generation Science Standards • Engineering Technology and Applications of Science • HS-ETS1-1 • Analyze a major global challenge to specify qualitative and quantitative criteria and constraints for solutions that account for societal needs and wants.">
                HS-ETS1-1
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            <div class="bg-blue-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
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                 data-tippy-content="Next Generation Science Standards • Science and Engineering Practices • 9-12.AF.6.5 • Design, evaluate, and/or refine a solution to a complex real-world problem, based on scientific knowledge, student-generated sources of evidence, prioritized criteria, and tradeoff considerations.">
                9-12.AF.6.5
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            <div class="bg-blue-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
                 data-controller="tooltip"
                 data-tippy-content="Next Generation Science Standards • Engineering Technology and Applications of Science • HS-ETS1-2 • Design a solution to a complex real-world problem by breaking it down into smaller, more manageable problems that can be solved through engineering.">
                HS-ETS1-2
            </div>
            <div class="bg-blue-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
                 data-controller="tooltip"
                 data-tippy-content="Next Generation Science Standards • Performance Expectations • HS-ETS1-1 • Analyze a major global challenge to specify qualitative and quantitative criteria and constraints for solutions that account for societal needs and wants.">
                HS-ETS1-1
            </div>
            <div class="bg-blue-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
                 data-controller="tooltip"
                 data-tippy-content="Next Generation Science Standards • Performance Expectations • HS-ETS1-3 • Evaluate a solution to a complex real-world problem based on prioritized criteria and trade-offs that account for a range of constraints, including cost, safety, reliability, and aesthetics, as well as possible social, cultural, and environmental impacts.">
                HS-ETS1-3
            </div>
            <div class="bg-blue-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
                 data-controller="tooltip"
                 data-tippy-content="Next Generation Science Standards • Engineering Technology and Applications of Science • HS-ETS1-3 • Evaluate a solution to a complex real-world problem based on prioritized criteria and trade-offs that account for a range of constraints, including cost, safety, reliability, and aesthetics, as well as possible social, cultural, and environmental impacts.">
                HS-ETS1-3
            </div>
            <div class="bg-blue-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
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                 data-tippy-content="Next Generation Science Standards • Science and Engineering Practices • 9-12.AF.1.2 • Evaluate a question to determine if it is testable and relevant. (a) Ask questions that can be investigated within the scope of the school laboratory, research facilities, or field (e.g., outdoor environment) with available resources and, when appropriate, frame a hypothesis based on a model or theory. (b) Ask and/or evaluate questions that challenge the premise(s) of an argument, the interpretation of a data set, or the suitability of a design. (c) Define a design problem that involves the development of a process or system with interacting components and criteria and constraints that may include social, technical, and/or environmental considerations.">
                9-12.AF.1.2
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            <div class="bg-blue-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
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                 data-tippy-content="Next Generation Science Standards • Science and Engineering Practices • 9-12.AF.3.1 • Plan an investigation or test a design individually and collaboratively to produce data to serve as the basis for evidence as part of building and revising models, supporting explanations for phenomena, or testing solutions to problems. Consider possible confounding variables or effects and evaluate the investigation&#39;s design to ensure variables are controlled.">
                9-12.AF.3.1
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            <div class="bg-green-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
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                 data-tippy-content="Deeper Learning Competencies • Collaboration  - Students co-design projects with peers, exercise shared-decision making, strengthen relational agency, resolve conflict, and assume leadership roles.">
                Collaboration
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            <div class="bg-green-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
                 data-controller="tooltip"
                 data-tippy-content="Deeper Learning Competencies • Critical Thinking &amp; Problem Solving  - Students consider a variety of innovative approaches to address and understand complex questions that are authentic and important to their communities.">
                Critical Thinking &amp; Problem Solving
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            <div class="bg-green-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
                 data-controller="tooltip"
                 data-tippy-content="Deeper Learning Competencies • Content Expertise  - Students develop key competencies, skills, and dispositions with ample opportunities to apply knowledge and engage in work that matters to them.">
                Content Expertise
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            <div class="bg-green-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
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                 data-tippy-content="Deeper Learning Competencies • Effective Communication  - Students practice listening to understand, communicating with empathy, and share their learning through exhibiting, presenting and reflecting on their work.">
                Effective Communication
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            <div class="bg-green-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
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                 data-tippy-content="Deeper Learning Competencies • Academic Mindset  - Students establish a sense of place, identity, and belonging to increase self-efficacy while engaging in critical reflection and action.">
                Academic Mindset
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            <div class="bg-green-100 rounded-xl p-1 px-1.5 max-w-fit text-xs"
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                 data-tippy-content="Deeper Learning Competencies • Self Directed Learning  - Students use teacher and peer feedback and self-reflection to monitor and direct their own learning while building self knowledge both in and out of the classroom.">
                Self Directed Learning
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