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Preview of Vertical Circular Motion Simulation.

Vertical Circular Motion Simulation.

Vertical Circular Motion: An HTML5 simulation: like PhET, but a bit different.A simulation of a single object that can move in a vertical circle in a gravitational field. It can simulate virtually any vertical circular motion, including that of a pendulum. The object can move as a...pendulumobject moving in a circle with and without a gravitational field The object moving in a circle can be...on the end of a light stringon the end of a light rodon the inside of a circular trackinitially o
Preview of Ohm's Law - Doodle Sheets for Kids!

Ohm's Law - Doodle Sheets for Kids!

Ohm’s Law Doodle Sheet Posters & Classroom Role-Play Set (K–6) Make electricity visual, interactive, and kid-friendly with this Ohm’s Law doodle poster and role-play set designed especially for elementary learners. This resource uses simple language, doodle-style posters, and movement-based activities to help students understand voltage, current, resistance, electrons, and positive/negative charge—without heavy math or abstract explanations. Perfect for classroom walls, STEM units, homesch
Preview of Simplifying Algebra: Like & Unlike Terms   (Editable)

Simplifying Algebra: Like & Unlike Terms (Editable)

Created by
Concept Clicks
Simplifying Algebra: Like & Unlike Terms (Editable)Full Product DescriptionTopic: Algebra Key Concepts: Expressions, Like Terms, Coefficients, Simplifying Target Grade Level: Grades 6-8 A concise, visual introduction to the concept of "like terms." This editable PowerPoint uses simple graphics and animations to show students why we can add 3a + 2a but not 3a + 2b. Important Information for Teachers: Visual Approach: Uses clear, color-coded examples to demonstrate how to group terms with ident
Preview of Montessori Experiment Observation Sheet | Science Recording | Cosmic | FREE

Montessori Experiment Observation Sheet | Science Recording | Cosmic | FREE

A simple, minimal observation sheet for recording science experiments - designed for Lower Elementary students aged 6-9 and aligned with the Montessori Cosmic Education approach. Children record their experiment number, date, materials used and what they observed through drawing and writing simple sentences. They finish with an open-ended 'I wonder...' prompt, to encourage curiosity beyond the experiment. The minimal design is intentional - it should support the child's thinking without directin
Preview of Counting Significant Figures Worksheet | Sig Fig Rounding & Operations

Counting Significant Figures Worksheet | Sig Fig Rounding & Operations

Build accuracy and confidence with this Counting Significant Figures Worksheet set—perfect for High School Chemistry (Grades 9–12). Students practice counting significant figures, rounding, and applying sig fig rules to addition, subtraction, multiplication, and division. Problems progress from identification to mixed calculations, making this resource ideal for classwork, homework, warm-ups, stations, quizzes, or review. What’s Included Identifying Significant Figures (introduces rule
Preview of AP Physics 1 – 50 practice problems for unit 5

AP Physics 1 – 50 practice problems for unit 5

Description: 50 multiple-choice practice questions covering all of Unit 5: Torque and Rotational Dynamics - the most challenging unit on the AP Physics 1 exam. Includes full answer key and detailed explanations for every question. Topics Covered: 🔄 Torque – τ = rF sin(θ), lever arm, perpendicular force component, net torque ⚙️ Rotational Inertia – I = mr², moment of inertia for disks, hoops, rods, spheres, point masses 🎯 Newton's Second Law for Rotation – τ = Iα, angular acceleration
Preview of Minecraft Kinetic and Potential Energy Lesson Plan

Minecraft Kinetic and Potential Energy Lesson Plan

This lesson plan explains how to use Minecraft with a class to teach and assess kinetic and potential energy. Students learn about kinetic and potential energy (worksheet included) and then use Minecraft to create their own roller coaster. They then draw blueprints for their completed roller coaster, drawing the kinetic and potential energy for the coaster at each hill and dip.
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