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Preview of Aquatic Food Chains & Biomagnification | Ecology Lesson Bundle

Aquatic Food Chains & Biomagnification | Ecology Lesson Bundle

Aquatic Food Chains & Bioaccumulation Lesson Bundle for Grades 6–10 that teaches how energy and pollutants move through aquatic ecosystems through a visual slideshow while students follow along in a single organized Work Bundle. This bundle includes 2 structured lessons where students investigate phytoplankton, zooplankton, aquatic food chains, and biomagnification through guided notes, visuals, and a hands-on simulation that models how pollutants increase through feeding levels. Students comp
Preview of Static Electricity Lesson | Charging Methods Electrostatic Series | Grade 9

Static Electricity Lesson | Charging Methods Electrostatic Series | Grade 9

Created by
Ms.Bee's
A complete one-period lesson on static electricity for Grade 9 Science (SNC1W). The 12-slide presentation introduces charging methods (friction, conduction, induction), the electrostatic series, and the Law of Electrostatics through a dark-themed, visually engaging format. The 4-page follow-along worksheet walks students through vocabulary matching, electrostatic series predictions, a charging methods comparison table, and real-world application questions covering lightning formation, fuel truck
Preview of The Reward Path, Pathology of Addiction, Mouse Party Worksheet with KEY

The Reward Path, Pathology of Addiction, Mouse Party Worksheet with KEY

This is a 4-page Word document - the first 2 pages are the assignment, the next two pages are the KEY. I created this assignment to go along with a website and a YouTube video - all awesome, interesting stuff! The first part of the assignment, "The Reward Path", uses an interactive website at the University of Utah Genetics Learning Center. Students move through interactive and answers questions about the how your brain behaves when it needs something - like food, and eating a cheeseburger.
Preview of Monster Genetics Lab | Heredity Simulation | Mendelian and Non-Mendelian Traits

Monster Genetics Lab | Heredity Simulation | Mendelian and Non-Mendelian Traits

Introducing the EDITABLE Monster Baby Heredity Simulation Lab, the perfect way to learn the complexities and intricacies of heredity in a fun and interactive way! This genetics inheritance lab is designed to help middle and high school students understand the mechanisms of Mendelian and non-Mendelian traits that can be inherited and passed down generations. A terrific alternative to the common baby lab version, this simulation encourages students to be creative and work collaboratively. With th
Preview of CELLS & Compound Light Microscopes Virtual Lab/Simulation (Digital/Printable)

CELLS & Compound Light Microscopes Virtual Lab/Simulation (Digital/Printable)

Created by
Science 4 Real
Looking for a virtual lab alternative for your introductory lab on the use of a compound light microscope and types of cells? Or do you need sub plans or an alternative makeup lab for students who were absent? This virtual lab is interactive as students manipulate a virtual microscope and view specimens via the virtual eyepiece. Comprehension questions are included.Note: It is recommended that students have an understanding of prokaryote and eukaryote cells prior to completing this lab.Due to th
Preview of PhET Forces and Motion Webquest

PhET Forces and Motion Webquest

Access a free PhET simulation and allow students to work independently in discovering the effects of forces on objects.
Preview of MEIOSIS and CHROMOSOMES Virtual SIMULATION (Digital/Printable)

MEIOSIS and CHROMOSOMES Virtual SIMULATION (Digital/Printable)

Created by
Science 4 Real
Need an alternative virtual Meiosis activity or a virtual option for your Meiosis lab? Or even an alternative makeup lab for absent students? This simulation is a great option to cover what you need. Students learn about all phases of Meiosis and practice the steps by manipulating chromosomes and through animations. A separate part of the simulation specifically explains why it’s difficult to understand “chromosome” number in Meiosis. Guiding and Practice questions are included. Due to the we
Preview of Interactive Virtual Frog Dissection with Digestive, Respiratory, & Circulatory F

Interactive Virtual Frog Dissection with Digestive, Respiratory, & Circulatory F

Virtual Frog Dissection & Human Anatomy Exploration – Middle School Science ActivityGive your students the experience of a hands-on dissection without using real specimens! This middle school activity guides students through a virtual frog dissection and pairs it with human anatomy exploration, focusing on the digestive, respiratory, and circulatory systems. Perfect for in-class use, remote learning, or blended classrooms. What’s included in this resource: A detailed student worksheet aligned
Preview of Magnet vs Hand Pull Lab: Magnetic Force Experiment & Data Analysis

Magnet vs Hand Pull Lab: Magnetic Force Experiment & Data Analysis

If you want a simple, high-engagement way to teach forces (and get students thinking like real scientists), Magnet vs. Hand Pull is a must-have. This lab-style investigation challenges students to compare two different ways objects can move—the pull of a magnet versus the pull of a hand—and then back up their thinking with observable evidence and recorded data. Instead of passively reading about forces, students actively test, observe, measure, and explain what happens. They’ll run repeat
Preview of Bioman Snurfle Meiosis and Genetics Interactive Worksheet

Bioman Snurfle Meiosis and Genetics Interactive Worksheet

Bioman Snurfle Meiosis and Genetics Interactive Worksheet This worksheet is written to go with the Bioman Snurfle Meiosis and Genetics interactive lesson. Once students are on the website, they can go through the areas of the site to fill in the worksheet. This lesson is a self-paced or teacher-paced lesson using the website to find the answers. It can be assigned as 1 long assignment or broken up into the for components of the interactive.
Preview of DNA Fingerprinting-Gel Electrophoresis "paper lab"!

DNA Fingerprinting-Gel Electrophoresis "paper lab"!

Absolutely no prep! Just print and go! This activity will teach students why and how gel electrophoresis is used. Students will also analyze a gel or "DNA fingerprint" and help to solve a crime! This is a great product for a Biotech unit if you do not have the equipment to run an actual gel or use as a fun pre-lab! Used by thousands of students!
Preview of Science Review Choose Your Own Adventure Story - Google Form - Digital Activity

Science Review Choose Your Own Adventure Story - Google Form - Digital Activity

Created by
Miss EDTECH
Students will review science concepts by choosing events and situations to follow in a 'Choose Your Own Adventure' style story in Google Forms. Students start off by choosing to visit the Mount Vesuvius Eruption, the Discovery of Cells, or the Apollo 11 Launch. They then branch off and answer questions about those events to move along the story and open up more possible events to visit. Overall they visit and review 6 different topics: Earth Systems, Energy in Organisms, Force & Motion, Chan
Preview of Modelling Genetic Crosses Activity | Genetics Punnett Square Lab I Practical

Modelling Genetic Crosses Activity | Genetics Punnett Square Lab I Practical

Engage your students in hands-on learning with this interactive genetics activity that brings Punnett squares and Mendelian inheritance to life! In this modelling genetic crosses resource, students build and breed their own “Paper Mates”—fun paper characters with heritable traits such as eye color, arm length, hair texture, and footwear. This creative, student-led activity reinforces key biology concepts such as dominant and recessive genes, genotype vs phenotype, and the use of Punnett square
Preview of Test My Genes Lab: Students Use Their Traits to Practice Punnett Squares - NGSS

Test My Genes Lab: Students Use Their Traits to Practice Punnett Squares - NGSS

In Brief: The lab proceeds as follows 1. Students complete a short matching section using important genetics terms 2. Students read about five different human traits (Interlacing of fingers, PTC tasting, Presence of Palmaris Longus Muscle, Hair Texture, and Color Vision) 3. Students attempt to determine their genotpyes, based upon their phenotypes, and the information in the lab. 4. Students perform Punnett Squares using their genotypes, in order to make predictions about future generations A.
Preview of Acceleration Lab: Speed vs Acceleration Motion Experiment

Acceleration Lab: Speed vs Acceleration Motion Experiment

If you’re looking for a simple, high-impact lab that helps students truly understand acceleration (not just memorize a definition), this Acceleration Experiment is exactly what you need. This activity turns your classroom into a real science lab where students collect motion data, compare results, and use evidence to explain how acceleration works in the real world. Students don’t just “do a worksheet”—they investigate motion like scientists. They’ll run trials, record time/distance observ
Preview of Virtual Density Lab

Virtual Density Lab

Created by
Laney Lee
Students use PhET Sim to explore density in an inquiry based lab. Check out the Sim here:: http://phet.colorado.edu/sims/html/density/latest/density_en.html?fbclid=IwAR09bUeRxx_DckEweccfg2_1DozdustsrS4RJYOtwDkaHwiyJ6RDzLTofPIThis lab first walks students through finding volume through water displacement. Then students explore densities of different materials with the same mass but different volume, same volume but different mass, and then same density but different masses and volumes. Fina
Preview of Conservation of Momentum Lab Series using Marbles

Conservation of Momentum Lab Series using Marbles

This listing features two labs about the conservation of momentum using marbles. I facilitate this activity series on successive days in my eighth-grade physical science class. This lab set aligns with our unit about Newton’s three laws. In the first lab activity, students determine if there is a positive correlation between the number of marbles released down the ruler ramp and the number of stationary marbles ejected upon impact on the bottom, flat portion of the track. In the second lab acti
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