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MS-ESS3-2 Earthquake and Volcano Mapping Lab | Printable, Digital & Editable

Rated 4.89 out of 5, based on 36 reviews
4.9 (36 ratings)
;
Stephanie Elkowitz
13.3k Followers
Grade Levels
5th - 9th, Homeschool
Resource Type
Standards
Formats Included
  • Zip
  • Google Apps™
$7.00
$7.00
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Stephanie Elkowitz
13.3k Followers
Includes Google Apps™
The Teacher-Author indicated this resource includes assets from Google Workspace (e.g. docs, slides, etc.).

What educators are saying

My students always love the SNAPS station labs. I love the fact that I can set the stations out and have the students travel around the room, be active while learning and reinforce concepts taught in class.
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Description

About SNAPs Lab Stations Activities

SNAPs Lab Stations Activities require students to use science, math, literacy, problem-solving and engineering skills. They are designed to enhance students' understanding of scientific concepts and help students apply scientific ideas to the real world. Each station activity promotes skills so to develop students into proficient and competent scientific thinkers.

SNAPs lab activities have five components:

Science Skills Station to develop science skill proficiency

Narrative Station to build science literacy

Assessment Station to evaluate learning and understanding

Problem-Solving Station to foster engineering design

Synthesis Station and Project to inspire higher-order learning

Important Notes:

• Download the FREE SNAPs Setup Guide for best practices, signage and editable rubrics

• Download a FREE SNAPs Lab Stations Activity to learn more about my SNAPs labs

• Save $$ with the NGSS Science Lab Stations Bundle ($500 for 200+ labs)

• Save $$$ with the Earth Science Complete Curriculum

• Save $$$$ with the Integrated Science Complete Curriculum

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DIGITAL LABORATORY – DISTANCE LEARNING & DIGITAL CLASSROOMS

• This lab is offered in a digital format to support digital classrooms & distance learning.

• The digital lab activity is designed to work with Google Slides and Microsoft PowerPoint

• The digital lab activity CANNOT be edited. However:

- Students can manipulate text boxes

- Students can create tables, graphs and diagrams

- Students can insert images and drawings

GOOGLE FORM ASSESSMENT STATION

• The assessment station is offered as a self-grading Google Form.

• Questions are all short answer and are 100% editable.

• Suggestions for use are included in the download.

DISTANCE LEARNING COMPATIBILITY

SNAPs lab activities are rated for their ease with distance – independent learning. Refer to the preview for more information about how well this laboratory works in a fully digital classroom and with distance learning.

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EDITABLE DOCUMENTS

This download includes an editable word document (docx file) of all lab components:

• Pre-Lab and Post-Lab Activities

• The Lab Overview

• Lab Station Activities and Questions

• Directed Synthesis Project (when applicable)

Important Notes:

• Diagrams, illustrations, tables and graphs essential to lab activities are included

• Illustrative clipart is NOT included

• Editable documents and rubrics are included with the FREE SNAPs Setup Guide

Editable files allow you to:

• Edit the scope of the activities so to suit your students’ needs

• Edit the materials required based on resource availability

• Create single-period “mini-labs” using activities at the individual skills stations

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The activities at each station in this lab are detailed below.

Earthquake and Volcano Mapping Lab Stations Activity Learning Objectives

1. Interpret and analyze data to predict where earthquakes and volcanic eruptions are more and less common.

2. Identify the relationship between earthquakes and volcanic activity with tectonic plate boundaries.

3. Discuss the predictability of an earthquake and volcanic eruption relative to other natural hazards.

4. Discuss the development of early detection and warning systems that can mitigate the negative effect of an earthquake or volcanic eruption.

Science Skills Station

Students will interpret and analyze data from an interactive map of volcanic eruptions and earthquakes. Students will use the map to identify patterns in the location of seismic events and make predictions about the probability of an earthquake or volcanic eruption for different locations.

Narrative Station

Students will read about relationships between tectonic plate boundaries, earthquakes and volcanic eruptions. Students will also watch a video about predicting earthquakes and study a map that summarizes the ”seismic risk” for locations across the globe.

Assessment Station

At this station, students will answer questions about key terms and ideas relating to mapping and predicting earthquakes and volcanic eruptions. Students must employ lower, mid and higher order thinking skills to answer these questions.

Problem-Solving Station

Students will evaluate earthquake and tsunami early detection and warning systems. Students will consider the constraints in predicting these events and will assess the practicality and use of these systems.

Synthesis Station

Students will compose a CER (claim-evidence-reasoning) report to summarize the lab. Students are provided the claim statement and must support the claim with observations, data and other information gathered in the lab. Students will explain how the evidence supports the claim using scientific reasoning.

Synthesis Project

Students will have a choice of 11 projects. Refer to the SNAPs Lab Stations Best Practices and Setup Guide for directions and suggestions on how to conduct the project.

This download includes:

• A pre-lab assignment and post-lab reflection

• Directions and questions for each lab station

• Student recording sheets

• Teacher Key

Additional Materials Required:

3 Computers or tablets

Important Notes:

This lab can be completed in one lab period (approximately 90 minutes). However, I strongly suggest allowing additional time for this lab so students have more time for higher-order thinking activities.

LINKS TO VIDEOS

This laboratory requires internet to access videos. Videos are hosted on SafeShare.TV so to safely watch and share educational YouTube videos without ads, comments and other distractions. Shortened and full link(s) to SafeShare.TV included. Full link to original YouTube video(s) included.

NEXT GENERATION SCIENCE STANDARDS

This laboratory satisfies NGSS 4-ESS2-2. It combines the three dimensions of science learning - science and engineering practices, disciplinary core ideas and crosscutting concepts - to meet the standard. This lab also makes interdisciplinary connections to STEM, Math CCSS and ELA CCSS to build the appropriate skills.

TERMS OF USE

• All rights reserved by Stephanie Elkowitz.

• This product is to be used by the original purchaser only.

• Intended for classroom and personal use only.

• Copying for more than one teacher, classroom, department, school, or school system is prohibited.

• This product may not be distributed or displayed digitally for public view.

• Failure to comply is a copyright infringement and a violation of the Digital Millennium Copyright Act (DMCA).

Total Pages
Answer Key
Included
Teaching Duration
90 minutes
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Standards

to see state-specific standards (only available in the US).
NGSSMS-ESS3-2
Analyze and interpret data on natural hazards to forecast future catastrophic events and inform the development of technologies to mitigate their effects. Emphasis is on how some natural hazards, such as volcanic eruptions and severe weather, are preceded by phenomena that allow for reliable predictions, but others, such as earthquakes, occur suddenly and with no notice, and thus are not yet predictable. Examples of natural hazards can be taken from interior processes (such as earthquakes and volcanic eruptions), surface processes (such as mass wasting and tsunamis), or severe weather events (such as hurricanes, tornadoes, and floods). Examples of data can include the locations, magnitudes, and frequencies of the natural hazards. Examples of technologies can be global (such as satellite systems to monitor hurricanes or forest fires) or local (such as building basements in tornado-prone regions or reservoirs to mitigate droughts).

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