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<!DOCTYPE html>
<html lang="en">
<head>
<meta charset="utf-8">
<meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no">
<meta name="description" content="">
<meta name="author" content="">
<title>SPH3U-Ze Feng Wang</title>
<!-- Bootstrap core CSS -->
<link href="vendor/bootstrap/css/bootstrap.min.css" rel="stylesheet">
<!-- Custom fonts for this template -->
<link href="vendor/fontawesome-free/css/all.min.css" rel="stylesheet" type="text/css">
<link href='https://fonts.googleapis.com/css?family=Lora:400,700,400italic,700italic' rel='stylesheet' type='text/css'>
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<!-- Custom styles for this template -->
<link href="css/clean-blog.min.css" rel="stylesheet">
</head>
<body>
<!-- Navigation -->
<nav class="navbar navbar-expand-lg navbar-light fixed-top" id="mainNav">
<div class="container">
<a class="navbar-brand" href="index.html">SPH3U</a>
<button class="navbar-toggler navbar-toggler-right" type="button" data-toggle="collapse" data-target="#navbarResponsive" aria-controls="navbarResponsive" aria-expanded="false" aria-label="Toggle navigation">
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<li class="nav-item">
<a class="nav-link" href="index.html">Home</a>
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<li class="nav-item">
<a class="nav-link" href="about.html">Kinematics</a>
</li>
<li class="nav-item">
<a class="nav-link" href="post.html">Dynamics</a>
</li>
<li class="nav-item">
<a class="nav-link" href="contact.html">Energy</a>
</li>
<li class="nav-item">
<a class="nav-link" href="contact.html">Waves</a>
</li>
<li class="nav-item">
<a class="nav-link" href="contact.html">Electromagnetism</a>
</li>
<li class="nav-item">
<a target="_blank" class="nav-link" href="https://docs.google.com/document/d/1lT8QjiHylAezgKIk0Q2vH7cbQ1eX9IZHPKP0Scq0qQg/edit?usp=sharing">Formula Sheet</a>
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<div class="site-heading">
<h1>SPH3U Review Assignment</h1>
<span class="subheading">Ze Feng Wang</span>
</div>
</div>
</div>
</div>
</header>
<!-- Main Content -->
<div class="container">
<h1 id="in">Connections</h1>
<div class="row">
<div class="col-lg-8 col-md-10 mx-auto">
<br>In Physics, there are many in-depth connections that could be made throughout the units, but the most important one of them all is visualization. To fully understand a physics concept, it is crucial to visualize them first, especially the most abstract concept of energy. Visualization tactics include drawing Free Body Diagrams and Vector Diagrams.
<br> Another important connection between all of the units are the use of formulas. Formulas in one unit can be applied to formulas in other units. For example, deriving the kinetic energy(Unit 3) formula with the use of a kinematic formula(Unit 1). The speed formula in Kinematics is similar to the wave speed in formula in the Waves Unit.<br><b>See "Formula Sheet" for other Connections</b>
<br><img class="img-fluid" src="https://physics.osu.edu/sites/default/files/styles/news_and_events_image/public/Atom%20%281%29.png?itok=UsOb9mzo">
<span class="caption text-muted">???</span>
The study of motion is influeneced by both Kinematics and Dynamics, Dynamics being one of the branches of Mechanics and Kinematics being a branch of Dynamics. Many of the concepts of Kinematics apply to Dynamics such as velocity, acceleration, time, displacement, and many more. Dynamics relates these concepts to the concept of how movement is caused by force. One of the forces being the gravitational force which affects all movement on Earth and on other planets/stars. Gravity and other forces depends on the acceleration of an object. The Kinematic Formulas can also be used in place with the Law of Conservation and other energy formulas.
<br>Electromagnetic Force is one of the 4 Fundamental Forces of Dynamics and is the characteristic of any energy source capable of driving electric charge around a circuit. It depends on the work done(energy) and the charge.
<img class="img-fluid" src="https://i.ytimg.com/vi/GMnsZuEE_m8/maxresdefault.jpg">
<span class="caption text-muted">Electromagnetic Force</span>
<br>Energy includes motion and other quantifiable changes in the universe. Energy depends on the force applied to an object, the distance of change, and the angle of the change. It can be split into Kinetic Energy and Potential Energy which depends on velocity at a given point and height at a given point respectively. Mass plays no role in solving for these variables, just like solving problems in Kinematics.
<br>Waves are the transfer of energy from one point to another. They are the reason why energy is preserved. The amount of energy depends on the wave's amplitude and wavelength as well as the distance the wave travels before it loses all of its energy. Electromagnetic Waves are an example of waves with energy that are composed of oscillating electric and magnetic fields. Electricity is a form of energy. In sound waves, energy is transferred through the vibrations of the air particles.
<img class="img-fluid" src="https://www.toyo-chem.com/en/products/electronics/images/img_emishield_01.png">
<span class="caption text-muted">Electromagnetic Waves</span>
<br>The electric force acts between all charged particles and the magnetic force acts between moving charged particles, meaning that every charged particle gives off an electric field.
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