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Vera Abresch Julie Lemke Growing a STEM Program

Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

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Page 1: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Vera AbreschJulie Lemke

Growing a STEM Program

Page 2: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

S.T.E.M.•Science•Technology•Engineering•Mathematics

Page 3: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Realistic Projects…•Help students discover the value of

academic courses.•Encourage student motivation.

New Experiences…•Reach different learning styles.•Build confidence.•Create interest in future jobs.

Using Technology that’s Already Part of Student’s Lives…•Develops critical thinking & problem-

solving skills.•Encourages team work.

Why Do It?

Page 4: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Our STEM StoryVera Abresch

• Mentor Teacher in Science• Attended AFRL Teacher Institute

Julie Lemke• 1st-Year Teacher Excited about

Technology but NEW to Teaching Science

• Encouraged to Attend AFRL Teacher Institute

Page 5: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

• STEM encouraged both of us to broaden the scope of our student projects.

• We began brainstorming ideas and problem-solving together.

• We started writing grants to fund our growing technology needs, and each of us was successful!

• We worked together as a TEAM and continue to work together even though we are a state apart!

Our STEM Story

Page 6: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Blade Design(Earth

Science)

Goal:Design a wind turbine

that produces the most energy.

Page 7: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Blade Design(Earth

Science)• S: Alternative Energy Investigation (Wind),

Experimental Design• T: Multi-meter (Determine electrical output),

Vernier Probes (Graph voltage and current output)

• E: Wind Turbines Design (blades, angles, quantity, placement)

• M: Estimated Surface Area, Data Analysis, Wind Power Formula

Page 8: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

• Grade Level: 6th and Up (possibly 5th)• Amount of Time: 6 45-min periods • Needed Equipment: Kit from KidWind, Fan • Approximate Cost: $70 per kit (1-2 kits per

classw/ additional $10 per hub (1 hub per group) Watch for

SALES!

Blade Design(Earth

Science)

Page 9: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Blade Design(Earth

Science)

Page 10: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Ecosystem Jars (Life Sciences)

Goal:Build a self-

sustaining, closed ecosystem that can support one

or more secondary consumers

Page 11: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

• S: Ecosystems, Element Cycles, Organism Identification, Energy Transfer, Limiting Factors

• T: Microscopes, Vernier Light & Temperature Sensors

• E: Ecosystem “Building”• M: Data Gathering, Graphing,

& Analysis

Ecosystem Jars (Life Sciences)

Page 12: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Ecosystem Jars (Life Sciences)

• Grade Level: 6th and Up (possibly 5th)• Amount of Time: 1-2 45-min period per week

(approx. 7 weeks)• Needed Equipment: Big Jars (Pickle), Microscopes

(Light, Dissecting, Digital Microscopes), Thermometers or

Temperature Probes, Light Probes, Mud and Water from the Environment

• Approximate Cost: Depends on your current Science supplies (Adaptable to your situation!)

Page 13: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Roller Coasters(Physical Science)

Goal:Design a roller coaster and calculate different

types of energy.

Page 14: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Roller Coasters(Physical Science)

• S: Potential & Kinetic Energy• T: Vernier Photogate, Tools,

Google Sketch-Up, Online Roller Coaster Games

• E: Designing, Building, & Testing Roller Coaster

• M: Gather & Analyze Data, Velocity, Calculate Potential & Kinetic Energy & G-Forces, Measure Mass

Page 15: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Roller Coasters(Physical Science)

• Grade Level: 8th Grade• Amount of Time: 10 45-min

class periods• Needed Equipment: Vernier Photogate

Sensor or Stopwatches, Balance, Meter Stick, Tape Measure, Ball Bearings, (Student are responsible for any building materials)

• Approximate Cost: $45-Photogate

Page 16: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

ZOO WEBPAGE(LIFE SCIENCES)

GOAL:Design a zoo enclosure for an animal based on your city’s climate.

Page 17: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

ZOO WEBPAGE(LIFE SCIENCES)

• S: Biomes, Food Webs, Animal Habitats & Needs

• T: HTML Programming, Webpage Creation, Google Sketch-up or Paint, Inspiration

• E: Zoo Enclosure Design for Chosen Animal• M: Temperature & Rainfall Data Analysis,

Programming Logic

Page 18: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

ZOO WEBPAGE(LIFE SCIENCES)

• Grade Level: 6th Grade and Up• Amount of Time: 2 45-min class periods

per week (approx. 10 weeks)

• Needed Equipment: Computers, Internet, Inspiration

Software, Google Sketch-up or Paint

• Approximate Cost: None!

Page 21: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Boe-Bots(Physical Science)

• S: Electricity, Electromagnetic Radiation, Sound & Frequency

• T: PBASIC Programming, Binary vs. Analog, Google Sketch-up, Skype

• E: Build Robot Using a Breadboard• M: Rotational Velocity Calculation, Measurement,

Proportional Analysis, Directionality, Detection Distances vs. Resistance

Page 22: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Boe-Bots(Physical Science)

• Grade Level: 8th Grade • Amount of Time: 10 45-Min Class Periods

MINIMUM • Needed Equipment: Boe-Bot Kit (2-3 students per

kit), Computer, Free Software, Batteries (9V and AA)

• Approximate Cost: $160 per kit w/ bundling discounts Parallax

Page 24: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Support for Your Program (Funding & Continuing Education)

• PTL• Targeted Fundraiser• Air Force Research Laboratory

(AFRL) and other Military Bases• Society of Automatic Engineers

(SAE)• Businesses (Sandia Labs, Intel, GE,

Dow Chemical, etc.)

Page 25: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Grants• Follow the directions.• Think of a creative angle.• Be willing to spend the time.• Seek honest criticism.• Just try! And try! And try again!

Page 26: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Tech

nolo

gy:

It’s

Not

Just

Com

pute

rs!

• Vernier Probes and Sensors• Digital Cameras, Flip Cameras• Microscopes (Light, Dissecting, Digital)• Graphing Calculators• Robots• SMART Board & SMART Response

System• Document Cameras• IPods and IPads

Page 27: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Helpful Software & Internet Programs

• Google SketchUp• Noodle Tools• Skype• Scratch• Wordle

• Inspiration• Logger Lite & Logger Pro

(Vernier Probes)• Movie Maker, PhotoStory,

and other similar programs

Page 28: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

www.stem-lea.wikispaces.com Along with other great resources!

Find this Presentation on the WEB!

Page 29: Vera Abresch Julie Lemke Growing a STEM Program. S.T.E.M. Science Technology Engineering Mathematics

Vera AbreschChrist Lutheran School

Albuquerque, NM

Middle School Math, Science & Technology

[email protected]

Julie LemkeSt. John’s Lutheran School

Denver, CO

Middle School Language Arts &

Technology

[email protected]