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2022 Chicago National Conference - Sessions

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Displaying 9 results

Thursday, July 21
8:20 AM - 9:20 AM
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Unpacking the Crosscutting Concepts with a Brand New NSTA Quick-Reference Guide to the Three Dimensions

McCormick Place - Skyline W375c

Since its release, the NSTA Quick-Reference Guide to the NGSS has become an essential tool for many educators across the country. A new version titled the Quick-Reference Guide to the Three Dimension has been developed to not only support teachers in all states that have standards based on the Framework for K-12 Science Education. This new version of the Quick-Reference Guide still contains the most useful features of the original, including descriptions of the practices and the crosscutting concepts from the Framework of K-12 Science Education and K-12 progressions of the elements of all three dimensions. In addition, the new Quick-Reference Guide contains several new features that should make it even more helpful. For example, every element now has a unique code (based on the codes in the NSTA Atlas of the Three Dimensions) that makes it much easier to reference a particular element. In addition, there is an entire chapter devoted to the Performance Expectations. Finally, the guide also contains a number of tools for working with standards. This session will outline all of the features of the guide through the process of unpacking the crosscutting concepts to better understand how to make curriculum, instruction, and assessment more three-dimensional.

Takeaways: A deeper understanding of the Crosscutting Concepts and how a well-designed reference guide can make it easier to unpack the three dimensions for work in curriculum, instruction, and assessment.

Speakers

Ted Willard (Discovery Education: Silver Spring, MD)

Friday, July 22
10:40 AM - 11:40 AM
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The Scoop on STEM Competitions Administered by NSTA

McCormick Place - W176a

Join us for a chance to learn more about  NSTA-administered competitions and awards from NSTA staff and past participants. NSTA-administered competitions include NSTA Teacher Awards, the Army Educational Outreach Program, Shell Science Lab Regional Challenge, and Toshiba/NSTA ExploraVision competitions. This engaging hour will include discussion and tips on how to engage K–12 students in project-based learning opportunities that are no cost to participate.

Takeaways: 1. Engage with educators that have participated in NSTA-administered competitions and awards; 2. Learn more about opportunities to engage students in project-based learning; and 3. Share best practices and tips to foster inquiry-based learning and showcase ideas.

Speakers

Acacia McKenna (NSTA: Arlington, VA)

Presenter Materials for this Session:
(Please login with your NSTA account to view the materials)

NSTA Competitions_ presentation.pdf

Friday, July 22
11:50 AM - 12:50 PM
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Water Moves Our Earth; Plants Stabilize Our Earth

McCormick Place - Exhibit Hall, Poster Session Area, Table 28

Water is the major force in shaping our planet. Students use simple models to measure water outwash and soil erosion.

Takeaways: Simple models show students how plants and plant residue play major roles in preventing water runoff and soil erosion.

Speakers

Suzanne Cunningham (Purdue University: West Lafayette, IN)

Friday, July 22
2:20 PM - 3:20 PM
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Engaging with Your STEM Ecosystem Through After-School Programs: Lessons from Science Olympiad

McCormick Place - W179b

A challenge that STEM education presents to educators is how to stay current in an ever-evolving field to accurately represent and engage their students with new topics, activities, and careers. Too often STEM teachers become locked-in on a set of topics, activities, and careers because of the resources and opportunities to which they have access. After-school programs, and their ability to foster partnerships within a school’s larger STEM ecosystem, are one mechanism to open up STEM programs within schools to new topics, activities, and careers while offering avenues for professional growth and learning for the classroom teacher. By introducing the Science Olympiad program and the strategies used by our school participants for over three decades to build partnerships, connect to their STEM ecosystem, and expand learning we intend to help attendees draw parallels to their STEM ecosystems and their after-school programs. Building off of this information, attendees will analyze and discuss ways their STEM ecosystem can contribute to their STEM program, develop approaches for asking ecosystem members for support, and recognize opportunities to grow their STEM program through after-school programs. The session will close with a discussion of attendees’ specific challenges and issues ensuring attendees leave with actionable solutions.

Takeaways: The big takeaway from this session will attendees examining their STEM ecosystem to identify potential partners who align with their programming and can support student learning.

Speakers

John Loehr (Science Olympiad: Oakbrook Terrace, IL)

Saturday, July 23
8:00 AM - 9:00 AM
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What is Happening to the Rusty Patched Bumblebee?

McCormick Place - W195

Did you know that the Rusty Patched Bumblebee has lost 80% of its range in the last 20 years? Today, it is the first native pollinator to be put on the endangered species list. Why is this happening? And why should you care? Come explore a unit that guides students in using science and engineering practices to make sense of the functioning of the Rusty Patched Bumblebee’s ecosystem. From data on climate change to theories of pathogen spread, students grapple with all that science knows to date and create their own model for how changes to that system are impacting this keystone species. Learning is then extended beyond the walls of the classroom when students engage in intergenerational conversations and design actionable solutions to help this endangered native pollinator. Links to teacher guides and free printable and editable files will be shared with participants. This lesson will be shared through the perspective of a 7th grade life science teacher Amanda Mellenthin and her students, but is appropriate for grades 6-12. This unit is created by NFP: OnlyOneSky and information about the unit is found on skydayproject.com.

Takeaways: Participants will walk through a high quality NGSS lesson that they can adapt to their classroom and supportive teacher resources.

Speakers

Amanda Mellenthin (Carriel Junior High School: O Fallon, IL)

Saturday, July 23
10:40 AM - 11:40 AM
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Brain-Based Instruction: Using Cognitive Psychology to Boost Science Learning

McCormick Place - W178b

Cognitive science has identified flexible and often counterintuitive cognitive strategies that boost student learning. Teachers will learn how to implement these techniques within their classrooms.

Takeaways: Learn how to apply multiple practical, flexible, and research-based cognitive strategies, including retrieving information from memory, distributing practice across time, scaffolding, and mixing together different examples, within their own classrooms to improve student learning.

Speakers

Jonathan Tullis (The University of Arizona: Tucson, AZ)

Saturday, July 23
1:00 PM - 2:00 PM
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Artemis: NASA's Missions to the Moon & Mars

McCormick Place - W186c

Attendees will be provided with a high-level overview of NASA’s Artemis Missions to the Moon and Mars, Next Generation Science Standards, and gain insights on how Engineering Design fits within the NGSS. This session highlights an activity from NASA’s Next Gen STEM - Moon to Mars Educator Guide titled, "Landing Humans on the Moon" (https://www.nasa.gov/stem-ed-resources/landing-humans-on-the-moon.html) which is part of a series of standards-aligned educator guides designed to help students reach their potential to join the next-generation STEM workforce and learn about sending humans to the Moon, Mars, and beyond. The focus of the “Safe Landing on the Lunar Surface” activity engages participants to understand how a spacecraft’s engines can provide downward thrust to counteract the force of gravity not only at launch, but also during a landing to slow its descent. Utilizing the engineering design process attendees will use household materials to better understand the difficulties in landing a lander on the surface of a terrestrial body that does not have an atmosphere (no atmospheric braking, no use of parachutes, and no aerodynamic control surfaces). Participants will design, build, and improve a model of a lunar lander that can slow its descent using the downward thrust of a balloon; graph the speed with respect to elevation of a model lunar lander.

Takeaways: 1. Attendee will explore NASA STEM Educator Guides that are standards-aligned and provide detailed information and resources on how to implement STEM engagement learning experiences in the classroom to help students learn about sending humans to the Moon, Mars, and beyond. 2. Attendees will gain hand on minds on experience with implementing NASA STEM engagement activities in their classroom. Then, using engineering design principles, attendees will mirror the process that NASA engineers follow to brainstorm a human lander design, ultimately building an actual model that they will test. 3. Participants will gain insights into the difficulties in landing a lander on the surface of a terrestrial body that does not have an atmosphere (no atmospheric braking, no use of parachutes, and no aerodynamic control surfaces).

Speakers

LaTina Taylor (NASA Educator Professional Development Collaborative (EPDC): Flossmoor, IL)

Saturday, July 23
2:20 PM - 3:20 PM
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NASA STEM: Computational Thinking: Crew Transportation with Orion

McCormick Place - W175a

The free NASA STEM lesson plans introduce the practice of computational thinking and include elements of a real NASA mission. NASA’s Artemis program will return humans to the lunar surface for the first time since 1972, the year of the agency's last Apollo moon landing. This Educator Guide provides four standards-aligned activities to help students learn about NASA's Orion spacecraft that will take astronauts to the Moon and beyond. In this session, we will design and build a crew module model that will secure two 2-cm astronaut figures during a drop test. The PowerPoint will be available to all participants. The PowerPoint will include the videos and activities including the tips and pointers. Session Outline: 5 min - Welcome and Introduction to NASA Artemis Mission 10 min- STEM Engagement strategies and culturally relevant teaching 10 min- Introducing the Engineering Design Challenge 20 min- Teams Design a Crew Vehicle 10 min- Testing the Crew Vehicle 5 min- Reviewing the Resources and Q and A https://www.nasa.gov/sites/default/files/atoms/files/np-2020-02-2805-hq.pdf

Takeaways: NASA provides free educational resources that include educator guides with standards-aligned activities to help students use computational thinking while including elements of real NASA missions.

Speakers

Susan Kohler (NASA Glenn Research Center: Cleveland, OH)

Saturday, July 23
2:20 PM - 3:20 PM
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Designing Escape Boxes

McCormick Place - W183b

Turn any multiple-choice review into an exciting escape! Learn to create digital and in-person escapes to help keep students interested, engaged, and motivated.

Takeaways: Participants will learn tips for designing escape boxes, plus how to add riddles, puzzles, games, and small prizes. The digital escape uses Google Forms, and the physical escape uses lockable boxes with resettable combination locks. Links to a customizable digital and physical escape will be available to attendees.

Speakers

Sharon Beck (Davidson County High School: Lexington, NC)

Presenter Materials for this Session:
(Please login with your NSTA account to view the materials)

Designing Escape Boxes--PPT Version
This PowerPoint describes how to Design Escape Boxes and contains a link to all the workshop documents in Google Drive. To edit any of the Google Drive materials, click on File > Make a Copy.
Designing Escape Boxes--PDF Version
This PowerPoint (in PDF format) describes how to Design Escape Boxes and contains a link to all the workshop documents in Google Drive. To edit any of the Google Drive materials, click on File > Make a Copy.