EdX

Engineering Calculus and Differential Equations (edX)

Engineering Calculus and Differential Equations (edX)

Learn fundamental concepts of single-variable calculus and ordinary differential equations, as well as their applications in engineering fields. Apply mathematical skills to model and solve engineering problems.

Class Deals by MOOC List - Click here and see EdX's Active Discounts, Deals, and Promo Codes.

How do electrical engineers find out all the currents and voltages in a network of connected components? How do civil engineers calculate the materials necessary to construct a curved dome over a new sports arena? How do space flight engineers launch an exploratory probe?
If questions like these pique your interest, this course is for you!

Calculus with differential equations is the universal language of engineers. In this course, “Engineering Calculus and Differential Equations,” we will introduce fundamental concepts of single-variable calculus and ordinary differential equations. We'll explore their applications in different engineering fields. In particular, you will learn how to apply mathematical skills to model and solve real engineering problems.
This course will enable you to develop a more profound understanding of engineering concepts and enhance your skills in solving engineering problems. In other words, youwill be able to construct relatively simple models of change and deduce their consequences. By studying these, youwill learn how to monitor and even controla given system to do what you want it to do.
Techniques widely used in engineering will be illustrated; such as Laplace transform for solving problems in vibrations and signal processing. We have designed animations and interactive visualizations to supplement complex mathematical theories and facilitate understanding of the dynamic nature of topics involving calculus.

What you'll learn

  • Limits, Continuity, and Differentiation in Engineering Calculus
  • Applications of Derivatives
  • Parametric Equations and Polar Coordinates
  • Techniques of Integration
  • Applications of Definite Integrals
  • Engineering Differential Equations and First Order Equations
  • Homogeneous, Inhomogeneous Equations, and Exact Equations
  • Homogeneous Linear Equations with Constant Coefficients
  • Cauchy-Euler Equations and Laplace Transforms
  • How to analyze a given engineering problem
  • Ways to identify appropriate calculus and ordinary differential equations (ODE) skills
  • How to formulate the mathematical problem
  • How to find the solutions for engineering problems
Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Further Mathematics Year 13 course 2: Applications of Differential Equations, Momentum, Work, Energy & Power, The Poisson Distribution, The Central Limit Theorem, Chi Squared Tests, Type I and II Errors (edX) EdX
Imperial College London,ImperialX

Further Mathematics Year 13 course 2: Applications of Differential Equations, Momentum, Work, Energy & Power, The Poisson Distribution, The Central Limit Theorem, Chi Squared Tests, Type I and II Errors (edX)

Develop your thinking skills, fluency and confidence in the applied mathematics content of A-level further maths and prepare for undergraduate STEM degrees. This course by Imperial College London is designed to help you develop the skills you need to succeed in your A-level further maths exams. You will investigate key topic areas to gain a deeper understanding of the skills and techniques that you can apply throughout your A-level study.

Jan 3rd 2022
5-12 Weeks
Multivariable Calculus 1: Vectors and Derivatives (edX) EdX
MIT,MITx

Multivariable Calculus 1: Vectors and Derivatives (edX)

We live in a multivariable world. Explore the derivative in higher dimensions and learn how to apply it to solve real world problems. Part 1 of 3. Variables are all around us: temperature, altitude, location, profit, color, and countless others. Multivariable Calculus is the tool of choice to shed light on complex relationships between 2, 3, or hundreds of variables simultaneously.

Feb 16th 2022
13-24 Weeks
Wave-Based NDT Methods (edX) EdX
Purdue University,PurdueX

Wave-Based NDT Methods (edX)

Learn how to use wave-based NDT techniques, ultrasonic testing, acoustic emission, etc, to inspect the structural integrity of civil engineering structures, including highways, bridges, dams, and buildings. Wave-based NDT methods allow for reliable and rapid evaluation of civil engineering infrastructure. These methods are particularly useful in long-range inspection; for example, in pipelines, where the wave-based NDT can provide data on hundreds of meters of piping in a matter of seconds.

Feb 14th 2022
5-12 Weeks
Solid State Devices 1 (edX) EdX
Purdue University,PurdueX

Solid State Devices 1 (edX)

Semiconductor are everywhere in human activities, from your credit card to space exploration. This graduate-level introduction brings aspects of physics, chemistry, and engineering together to understand, analyze, and design transistors and solar cells. This course provides the graduate-level introduction to understand, analyze, characterize and design the operation of semiconductor devices such as transistors, diodes, solar cells, light-emitting devices, and more.

Jan 9th 2023
13-24 Weeks
Introduction to Quantum Science & Technology (edX) EdX
Purdue University,PurdueX

Introduction to Quantum Science & Technology (edX)

Learn about fundamental concepts and engineering challenges of quantum technologies. Emerging quantum systems are disruptive technologies redefining computing and communication. Teaching quantum physics to engineers and educating scientists on engineering solutions are critical to address fundamental and engineering challenges of the quantum technologies.

Aug 21st 2023
13-24 Weeks
Differential Equations: Fourier Series and Partial Differential Equations (edX) EdX
MIT,MITx

Differential Equations: Fourier Series and Partial Differential Equations (edX)

Learn to use Fourier series to solve differential equations with periodic input signals and to solve boundary value problems involving the heat equation and wave equation. Differential equations are the mathematical language we use to describe the world around us. Many phenomena are not modeled by differential equations, but by partial differential equations depending on more than one independent variable.

Mar 22nd 2023
5-12 Weeks
Differential Equations: Linear Algebra and NxN Systems of Differential Equations (edX) EdX
MIT,MITx

Differential Equations: Linear Algebra and NxN Systems of Differential Equations (edX)

Learn how to use linear algebra and MATLAB to solve large systems of differential equations. Differential equations are the mathematical language we use to describe the world around us. Most phenomena can be modeled not by single differential equations, but by systems of interacting differential equations. These systems may consist of many equations. In this course, we will learn how to use linear algebra to solve systems of more than 2 differential equations. We will also learn to use MATLAB to assist us.

Jan 11th 2023
5-12 Weeks
Calculus 1C: Coordinate Systems & Infinite Series (edX) EdX
MIT,MITx

Calculus 1C: Coordinate Systems & Infinite Series (edX)

Master the calculus of curves and coordinate systems; approximate functions with polynomials and infinite series. Part 3 of 3. How did Newton describe the orbits of the planets? To do this, he created calculus. But he used a different coordinate system more appropriate for planetary motion. We will learn to shift our perspective to do calculus with parameterized curves and polar coordinates. And then we will dive deep into exploring the infinite to gain a deeper understanding and powerful descriptions of functions.

Feb 15th 2023
13-24 Weeks