project-based math curriculum

27

Upload: nafcareeracads

Post on 11-Nov-2014

1.430 views

Category:

Technology


4 download

DESCRIPTION

Do your students struggle with foundational math concepts? This session provides an overview of the project-based math support curriculum available in the NAF curriculum library. Any math teacher looking for alternatives to traditional instruction can use these hands-on math units. Presenter: Pier Sun Ho, ConnectEd: The California Center for College and Career

TRANSCRIPT

Page 1: Project-Based Math Curriculum
Page 2: Project-Based Math Curriculum

Project-Based Math Curriculum

Pier Sun Ho ConnectEdJuly 11, 2013

8:30AM – 9:45 AM

Page 3: Project-Based Math Curriculum

#nafnext

Is this session right for me?

Page 4: Project-Based Math Curriculum

#nafnext

Who’s still here?

Page 5: Project-Based Math Curriculum

#nafnext

Page 6: Project-Based Math Curriculum

#nafnext

Page 7: Project-Based Math Curriculum

#nafnext

Why Project-Based Algebra?

Page 8: Project-Based Math Curriculum

#nafnext

What Does Project-Based MathLook Like?

Access Ramp Activity

List math concept as you work!

Page 9: Project-Based Math Curriculum

#nafnext

Access Ramp: Math Concepts

• Measurement• Fractions• Proportional Reasoning:

scale drawings• Proportional Reasoning:

slope, linear growth• Unit conversions• Problem solving strategies

Page 10: Project-Based Math Curriculum

#nafnext

Wind Power Unit

• Measurement• Fractions• Percentages• Inequalities• Constraints

What are efficient wind turbine designs?

Page 11: Project-Based Math Curriculum

#nafnext

Wind Power Unit

Use rulers, add and subtract fractions to build a tower for the wind turbine.

Page 12: Project-Based Math Curriculum

#nafnext

Wind Power Unit

Multiply fractions to build rotor blades of a given area.Calculate percentages when analyzing quantity of

scrap materials.

Page 13: Project-Based Math Curriculum

#nafnext

Wind Power Unit

Test designs and record results as inequalities.Make and interpret graphs of results.

Page 14: Project-Based Math Curriculum

#nafnext

Blueprints and Models Unit Part I

Review proportions, scale, and slope by building a model wheelchair ramp that meets ADA guidelines.

Practice unit conversions by creating a materials list and cost chart.

Page 15: Project-Based Math Curriculum

#nafnext

• Calculate space allocation of buildings and present in pie charts.

• Solve construction-related problems involving ratios and proportional reasoning.

• Design and cost a remodeling plan under space and structural constraints

Blueprints and Models Unit Part II

Page 16: Project-Based Math Curriculum

#nafnext

How do you engineer an effective funicular system?

People Movers Unit

Page 17: Project-Based Math Curriculum

#nafnext

• Solving problems involving proportions and ratios, including gear ratios

• Interpreting the meaning of linear and non-linear graphs

• Understanding the slope of distance vs. time and velocity vs. time graphs

Arithmetic with negative numbers

Understanding and solving problems using the Pythagorean Theorem

Simplifying square roots

People Movers Unit

Page 18: Project-Based Math Curriculum

#nafnext

Use the Pythagorean theorem to construct a ramp for the funicular.

Apply the concept of similarity and parallel line relationships to build a platform for the funicular car to ride on.

People Movers Unit

Page 19: Project-Based Math Curriculum

#nafnext

Use integer operations to calculate and describe position and velocity.

Determine the travel time by applying knowledge of gear ratios.Graph and interpret linear and non-linear results.

People Movers Unit

Page 20: Project-Based Math Curriculum

#nafnext

How safe is a combination lock?

Cardboard fence

Safe Combinations Unit

Page 21: Project-Based Math Curriculum

#nafnext

• Tree diagrams and permutations

• Definition of exponents, graphing exponential growth

• Rules of exponents• Order of operations• Inverse operations

Equivalent equations and solving 1–5 step equations

Translating sentences into algebraic equations

Building and analyzing a working safe with a combination lock to specifications

Safe Combinations Unit

Page 22: Project-Based Math Curriculum

#nafnext

• Calculate the total possible number of combinations for a lock.

• Use the rules of exponents to analyze changes to the number of lock combinations.

• Practice solving equations by “coding” and “decoding” lock combinations.

Safe Combinations Unit

Page 23: Project-Based Math Curriculum

#nafnext

• Initial Cost: $200 - $500

• Consumable Materials: $10-$25 per unit

• Many materials can be borrowed from the school science department.

• None of the units require power tools, lab space, or special engineering knowledge.

• ~70 total hours of instruction

Practical Considerations

Page 24: Project-Based Math Curriculum

#nafnext

Engineering Integrated Units

Biomedical Health Sciences Integrated Units

Algebra I Drop-In Units

• Can be used as either supplemental or replacement material during the year

• Expands and reinforces the engineering theme and practice of problem solving skills in math class

• Covers major Algebra I standards (linear and quadratic equations, rational expressions, exponents, polynomials)

Page 25: Project-Based Math Curriculum

#nafnext

Algebra Drop-In Units

Solve single-variable linear equations as students build the pieces of a puzzle cube

Solve quadratic equations to design and play a game with projectile machines

Graph linear equations to chart the progress of multiple planes and direct them to land safely

Air Traffic Control Unit

Puzzle Cube Unit

Solve rational expressions to calculate the total resistance in circuits

Electrical Resistance Unit

Catapult Game Unit

25

Page 26: Project-Based Math Curriculum

#nafnext26

Page 27: Project-Based Math Curriculum

#nafnext

Download math units at the AOE library

http://naf.org/mynaf

http://www.naf-curriculum.org/index.html