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Conquer Conversions: The 7 Summits Math Project
Conquer Conversions: The 7 Summits Math Project
Conquer Conversions: The 7 Summits Math Project
Conquer Conversions: The 7 Summits Math Project
Conquer Conversions: The 7 Summits Math Project
Conquer Conversions: The 7 Summits Math Project
Conquer Conversions: The 7 Summits Math Project
Conquer Conversions: The 7 Summits Math Project
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Description

Ditch the worksheets and engage students with real-world math! In this project, students choose one of the 7 Summits and apply measurement conversion skills as they are taught throughout your unit. As new concepts are introduced, students add accurate, math-based facts using real mountain data.

Designed to grow alongside your instruction, this low-prep project works perfectly for project-based learning, enrichment, review, or a culminating assessment.

Students read high-interest articles, follow guided tasks, respond to research questions, and use clear examples to apply each conversion skill. They can present their learning using any digital tool, encouraging creativity while staying standards-aligned.

What’s Included:

✔️ 7 informational articles (one for each summit)

✔️ Step-by-step project tasks

✔️ Research question prompts covering: Length, Weight/Mass, Capacity,

Metric Conversions & Elapsed Time

✔️ Student-friendly format that builds with each lesson

✔️ Flexible presentation options

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Reported resources will be reviewed by our team. Report this resource to let us know if this resource violates TPT's content guidelines.

Conquer Conversions: The 7 Summits Math Project

Curiosity & Courage
7 Followers
$4.00

Highlights

Grades icon
Grades
3rd - 5th
Subjects icon
Subjects
Standards icon
Standards
Pages
16
Teaching Duration
2 Weeks

Description

Ditch the worksheets and engage students with real-world math! In this project, students choose one of the 7 Summits and apply measurement conversion skills as they are taught throughout your unit. As new concepts are introduced, students add accurate, math-based facts using real mountain data.

Designed to grow alongside your instruction, this low-prep project works perfectly for project-based learning, enrichment, review, or a culminating assessment.

Students read high-interest articles, follow guided tasks, respond to research questions, and use clear examples to apply each conversion skill. They can present their learning using any digital tool, encouraging creativity while staying standards-aligned.

What’s Included:

✔️ 7 informational articles (one for each summit)

✔️ Step-by-step project tasks

✔️ Research question prompts covering: Length, Weight/Mass, Capacity,

Metric Conversions & Elapsed Time

✔️ Student-friendly format that builds with each lesson

✔️ Flexible presentation options

Report this resource to TPT
Reported resources will be reviewed by our team. Report this resource to let us know if this resource violates TPT's content guidelines.

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Questions & Answers

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Standards

to see state-specific standards (only available in the US).
Convert among different-sized standard measurement units within a given measurement system (e.g., convert 5 cm to 0.05 m), and use these conversions in solving multi-step, real world problems.
Make sense of problems and persevere in solving them. Mathematically proficient students start by explaining to themselves the meaning of a problem and looking for entry points to its solution. They analyze givens, constraints, relationships, and goals. They make conjectures about the form and meaning of the solution and plan a solution pathway rather than simply jumping into a solution attempt. They consider analogous problems, and try special cases and simpler forms of the original problem in order to gain insight into its solution. They monitor and evaluate their progress and change course if necessary. Older students might, depending on the context of the problem, transform algebraic expressions or change the viewing window on their graphing calculator to get the information they need. Mathematically proficient students can explain correspondences between equations, verbal descriptions, tables, and graphs or draw diagrams of important features and relationships, graph data, and search for regularity or trends. Younger students might rely on using concrete objects or pictures to help conceptualize and solve a problem. Mathematically proficient students check their answers to problems using a different method, and they continually ask themselves, "Does this make sense?" They can understand the approaches of others to solving complex problems and identify correspondences between different approaches.
Reason abstractly and quantitatively. Mathematically proficient students make sense of quantities and their relationships in problem situations. They bring two complementary abilities to bear on problems involving quantitative relationships: the ability to decontextualize-to abstract a given situation and represent it symbolically and manipulate the representing symbols as if they have a life of their own, without necessarily attending to their referents-and the ability to contextualize, to pause as needed during the manipulation process in order to probe into the referents for the symbols involved. Quantitative reasoning entails habits of creating a coherent representation of the problem at hand; considering the units involved; attending to the meaning of quantities, not just how to compute them; and knowing and flexibly using different properties of operations and objects.
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