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Simulaciones
- Balanceo de Ecuaciones Químicas (HTML5)
- Canales de Membrana
- Cargas y campos (HTML5)
- Conductividad
- Construye una Molécula (HTML5)
- Desintegración Alfa
- Dispersión de Rutherford (HTML5)
- Efecto Fotoeléctrico
- Energía en la pista de patinaje (HTML5)
- Energía en la pista de patinaje: Intro (HTML5)
- Estados de la materia (HTML5)
- Estados Ligados Cuánticos
- Estructura de Bandas
- Forma de la Molécula (HTML5)
- Fourier: Fabricacion de Ondas
- Interacciones Atómicas (HTML5)
- Lab de Péndulo (HTML5)
- Masas y Resortes (HTML5)
- Laboratorio de Resortes y Masa
- Ley de Faraday (HTML5)
- Ley de Hooke (HTML5)
- MRI Simplificado
- Neurona (HTML5)
- Penetración Mecánico-Cuántica y Paquete de Ondas
- Polaridad de la Molécula (HTML5)
- Polaridad de la Molécula
- Pozos Dobles y Enlaces Covalentes
- Reacciones reversibles
- Recta Numérica: Distancia (HTML5)
- Recta Numérica: Operaciones (HTML5)
- Resistencia en un alambre (HTML5)
- Velocidades de reacción
Actividades
- Potential Difference in Circuits
- Understanding Voltage, Potential Difference and Potential /Voltage Drop
- Electric Energy and Capacitance demonstrations (Inquiry Based)
- Lesson plan
- Kinetic and Potential energy
- Mechanical energy - Kinetic and Potential
- Exploring Electric Potential, Electric Field and Distance Relationships
- Ohm's Law
- Potential and Kinetic Energy
- Electric Field Hocket
- Series & Parallel Circuits PhET Lab
- Wave Interference and Path Difference
- Lab: Electric Field and Potential
- mechanical energy - exploring kinetic and potential energy
- Introduction to energy- a chemical context
- Conservation Of Mechanical Energy
- Lab Experiment
- Potential Energy of A Spring (Elastic Potential Energy)
- Electric Field and Potential Lab
- Energy Skate Park Basics - Clicker Questions
- Intermolecular Forces and States of Matter - Interactive Lecture Demonstration
- Energy Skate Park Basics Lesson
- Lab: Electric Field & Electric Potential
- Kinetic and Potential Energy
- Experimental Design with Forces
- Electric Field vs Electric Potential
- Natural Selection PhET Simulation
- potential barrier lab
- Energy Skate Park for Middle School(Inquiry Based)
- Energy Skate Park Basics
- Conservation of Energy for Middle School
- Stimulation of a Neuron and the Resulting Action Potential
- Kinetic, Potential and Total Energy: Claim, Evidence, Reasoning
- Energy Skate Park Basics | Remote Lab
- Circuit Builder: Parallel and Series Circuits
- Action Potential Simulation - Guided Inquiry Activity
- potential well lab
- Series, parallel circuits
- Conservation of Mechanical Energy
- PhET - Explore Absolute Value on the Number Line Distance Activity
- Wave Interference Lab: Path Difference impact on Constructive and Destructive Interference
- Spring Force, Spring Constant and Elastic Potential Energy
- Investigating the relationship between field and potential around point charges
- Electric field, electric potential and Coulomb's law
- DC Measuring Devices
- Roller Coaster Physics Investigation
- Conservation of Energy using Masses and Springs (Inquiry Based)
- Capacitor and Dielectric 2
- Elastic potential energy, work and Hooke’s law.
- On the molecular level, what is the difference between acids and bases?
- Electrolyte and Non-electrolyte Solutions - Interactive Lecture Demonstration
- Subtraction stories
- Isotopes and Atomic Mass - Guided Inquiry Activity
- Energy Forms Clicker Questions
- Investigating Resistance in Circuits
- Ohm's Law
- Conservation of Energy 1: Introduction (qualitative approach)
- Conservation of Energy using Masses and Springs (homework version) (Inquiry Based)
- Intermolecular Forces and Molecules - Interactive Lecture Demonstration
- Skate Park Phet- Science 8 and ACC Science 8
- Pendulum Energy
- Energy Skate Park: Basics
- NUMBER LINE (DISTANCE)
- Reactions and Rates 2: Intro to Kinetics (inquiry based)
- Reactions and Rates 3: Introduction to Equilibrium (Inquiry Based)
- Cell Transport and Neuron Simulation
- Virtual Lab - Circuit Basics
- Resistivity in a wire
- Science Teacher
- Energy Skate Park
- Finding Properties of Energy (via the skate park)
- Conservation of mechanical energy.
- Batteries
- Charges & Fields PhET Lab
- Energy Skate Park - Concept Questions Compendium
- Energy skate park
- Reflection and Transmission Interactive Lecture
- Conservation of Linear Momentum
- True or False? 1st grade
- Conservation of Mechanical Energy
- PHET: Masses and Springs 2021
- Conservation of Mechanical Energy
- Conservation of Energy - conceptual
- Work - Energy
- PhET Energy Sk8r sim Activity
- Energy Simulation
- Intro to Energy Conservation
- Energy Skate Park Worksheet
- Energy skate park
- Energy Skatepark Adventures
- Energy Skatepark!
- Intro to energy
- Atomic Interactions PhET Exploration - with Coulomb's Law application
- Mechanical energy lab - Remote
- How are greenhouse gases different from non-greenhouse gases?
- Online Lab Series/Parallel Circuits
- Batteries in series and parallel
- Energy Skate Park
- The Ramp--Conservation of Energy
- Kirchhoff's LAw
- Pendulum Virtual Lab 2021
- Conservation of Energy
- Energy Skate Park Lab
- Energy Skate Park
- Hooke's Law
- Masses and Springs: Energy
- Hooke's Law investigation including multi-spring systems and Energy
- Charges and Fields
- Investigating Kinetic Energy
- PHETman
- Conceptual Energy and Springs
- Phet Skate Park Inquiry Lab and Graphical Modelling Activity
- Qualitative Introduction to Energy
- Line of best fit activity
- Conservation of Linear Momentum
- Fission: controlled vs. uncontrolled
- Energy Skater -- Introduction to Mechanical Energy Conservation
- Energy Skate Park: Basics
- Inputs and Outputs in Unit Operations
- conservation of mechanical energy
- Conservation of Energy Exploration with Skatepark Physics
- Using the Molecule Polarity PhET Simulation: Concept Development for Understanding Molecular Dipoles
- Energy Skate Park Lab Questions
- Energy in a Pendulum
- Energy Skate Park Basics Student Guide [HTML]
- Energy Simulation Lab - Skate Park
- Work Energy on a Ramp
- Equipotential Surfaces Lab Activity
- Energy Analysis of a Mass Oscillating on a Spring
- Energy in a Skateboarder-Conservation of Energy
- Conservation of Mechanical Energy
- Conservation of Linear Momentum
- PhET Interactive Lab on pH
- Introduction to Energy Model
- Energy Skate Park
- Energy Skate Park Basics: Énergie potentielle et cinetique
- Modelling Motion
- Video: Self-paced learning on Electrical Equipotential Lines
- Using the Atomic Interactions PhET Simulation: Concept Development for Understanding Energy Changes Associated with Bond Forming and Bond Breaking Events
- Phet Energy Forms and Changes Student Worksheet
- Heat or temperature
- Heat or temperature?
- Online Assignment 4 Ms & Ss
- Conservation of Mechanical Energy (Lab Report)
- Charges and Fields Exploration
- Energy Skate Park Analysis Lab
- Energy Skate Park Student Simulation
- Pendulum Energy
- Skate Park and Energy Conservation
- Energy Skate Park Formal Lab
- Static Pressure
- AP Physics Gravity Lab
- Energy Skate Park Lab (html5)
- Energy Skate Park Lesson
- Photoelectric Effect
- Energy Skate Park Basics Energy Exploration
- Graphing Energy at the Skate Park
- Unusual cases of oscillation