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Technological Design Process (Step-by-step explanation, Examples and Worksheets)

Grade 8 Science Worksheets

Technological design refers to the systematic and creative problem-solving approach used by engineers, designers, and innovators to develop practical solutions for real-world challenges.

Whether it’s designing a more efficient wind turbine or creating an engaging mobile application, the technological design process provides a structured framework to transform ideas into tangible inventions. By engaging students in this process from an early age, we can cultivate their critical thinking, creativity, and problem-solving skills, enabling them to become active contributors to our rapidly evolving technological landscape.

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This article aims to introduce 8th-grade students to the fundamentals of the technological design process. We will break down each step of this iterative process and provide comprehensive explanations to ensure a clear understanding. Additionally, we have included a set of accompanying worksheets that will encourage students to apply the concepts they learn, fostering hands-on experience and promoting collaborative learning.

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Who performs a Technological Design Process?

There are many roles defined for persons who undertake a technology design process. They are primarily Engineers or Technologists who possess specialized skills as Designers. Hence the process is also termed as Engineering Design.

A typical design process consists of many steps. These steps are usually done in sequence but sometimes some steps may need to be repeated, which makes it an Iterative Process. Let us explore these steps.

7 Steps of Technological Design Process

Steps in the Technological Design Process

1. Identify the problem

The first step of the technological design process is the identification of the problem. For any new technology to come into existence, there needs to be a need or a desire. For example, depleting fossil fuels may lead to a desire to design cars that run on non-conventional sources of energy. It may also be triggered by an idea or a Vision in the mind of a scientist or an engineer, even though a need or desire is not felt. For example, the design of a touchscreen phone came to the mind of Steve Jobs, leading to the creation of the iPhone. This step requires a clear Problem Statement to be written.

2. Research the problem

The second step of the technological design process is research.It is the process of finding answers to many questions that can crop up in the design process. For example, to build a car on non-conventional energy, one would research which energy source is best suited for the purpose – wind or sun or biomass fuel? If sun energy is to be used, then how best can we receive the sun’s rays? How will we convert it into usable energy? Where will we store the energy? Similar questions will arise if we researched wind energy or biomass fuel.

3. Generate possible solutions

The third step of the technological design process is when the research will leads to more than one solution. A designer may explore many alternatives before deciding one. Sometimes, many solutions appear feasible, and a designer will experiment with all of them in the subsequent steps before deciding on the right solution. This is where the steps can become Iterative. For example, at this stage, a designer may conclude that solar and biomass energy are the best suited to take forward, while wind energy is not feasible as a solution.

4. Select the best solution

The fourth step of the technological design process is finding the best suitable solution. Iterations of multiple solutions will help decide the feasibility of one particular solution which is best suited to satisfy the problem. It may be based on cost, availability of the right materials, the efficiency of the solution, how long it takes to build, and many other such factors. Taking the example forward, the designer may decide on a solar-powered car as the most feasible solution.

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5. Create & test models of the solution

In the fifth step of the technological design process, we create various models and test them to see how well they work.The designer always needs to draw Sketches and create Models or Prototypes to test the feasibility of every alternate solution. Models are usually built in a quick timeframe using relatively cheap materials and are tested to check their functioning.

6. Refine and retest the model

In the sixth step of the technological design process, the modeling process is usually iterative too – multiple models may need to be created and tested before the right one appears feasible. Sometimes, all modeling outcomes may be infeasible and the designer may need to go back to the research stage to answer more questions before returning to this step.

7. Communicate the final solution

The result or the seventh step of the technological design process is the final design solution decided. This is often written and sketched in complete detail in the form of Design Specifications which are handed over to other engineers and technologists to carry out the actual build and manufacture of the solution.

This concludes the Technological Design Process.

Check Point

  1. A Technological Design Process is where we apply ________ in order to develop a ________.
  2. People who perform Technological Design Process are usually ______ or ______ with specialized skills as ________.
  3. Identifying the problem end with writing up a ________.
  4. Repeating some steps in the Technological Design Process is known as ______.
  5. The final outcome of the Technological Design Process is a document known as _______.

Answer Key

  1. Scientific knowledge, Technology
  2. Engineers, Technologists, Designers
  3. Problem Statement
  4. Iteration
  5. Design Specifications

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