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Support English Learners with Micro-credentials from Digital Promise

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Four primary characteristics of micro-credentials are: competency-based. Mathematical Language Routines – Facilitating Student Ideas and Language: Stronger and Clearer Each Time. Mathematical Language Routines – Developing Student Abilities to Critique and Clarify the Reasoning of Others. Mathematical Language Routines [link].

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How to Compare and Contrast Authentically

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Compare the point of view of two or more authors for how they treat the same or similar topics, including which details they include and emphasize in their respective accounts; Compare and contrast treatments of the same topic in several primary and secondary sources (9-10 grade Reading Standards–History–2) .

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How to Compare and Contrast Authentically

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emphasize in their respective accounts; Compare and contrast treatments of the same topic in several primary and secondary sources (9-10 grade Reading Standards–History–2). . It also appears multiple times for most grade levels in the Math Standards, including the Standards for Mathematical Practice.

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Critical Thinking Development in Middle School Education

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In mathеmatics, еducators can encourage critical thinking by prеsеnting rеal-world problems that require application of mathematical concеpts. By dissеcting litеraturе, studеnts not only develop analytical skills but also еnhancе thеir ability to construct rеasonеd arguments.

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How Did We Get Here? The Tangled History of the Second Law of Thermodynamics

Stephen Wolfram

But by the end of the 1800s, with the existence of molecules increasingly firmly established, the Second Law began to often be treated as an almost-mathematically-proven necessary law of physics. There were still mathematical loose ends, as well as issues such as its application to living systems and to systems involving gravity.

Energy 88
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Can AI Solve Science?

Stephen Wolfram

Three centuries ago science was transformed by the idea of representing the world using mathematics. And that’s for example why things like mathematical formulas have been able to be as successful in science as they have. But what I want to do here is to discuss what amount to deeper questions about AI in science.

Science 115
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Even beyond Physics: Introducing Multicomputation as a Fourth General Paradigm for Theoretical Science

Stephen Wolfram

Many would say that modern exact science was launched in the 1600s with the introduction of what we can call the “ mathematical paradigm ”: the idea that things in the world can be described by mathematical equations—and that their behavior can be determined by finding solutions to these equations.

Physics 65