1.3: Engineering vs Science vs Technology
- Page ID
- 131344
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Students often blur these three words together. They are related, but they are not the same thing. Keeping them straight will help you understand where your work fits.
| Science | Engineering | Technology | |
|---|---|---|---|
| Core question | Why does this happen? | How can we use this safely and reliably? | What can this do? |
| Primary output | Knowledge, laws, theories | Systems, designs, analyses | Products, tools, capabilities |
| Success looks like | An accurate explanation | A working solution within constraints | A useful artifact people adopt |
| Example | A physicist measures how steel deforms under load | A structural engineer uses that data to design a bridge | The bridge, once built, is a piece of transportation technology |
Neil Armstrong — a mechanical and aeronautical engineer before he was an astronaut — put it simply:
"Science is a quest for truth for its own sake… Engineering turns those explanations and understandings into new or improved machines, technologies, or processes."
Engineering depends on science. Every equation you will use in this course was discovered by scientists. But engineering's job is different: engineers are judged by whether their designs work, not by whether they discovered something new.
In 1999, NASA lost a $327 million spacecraft called the Mars Climate Orbiter. It did not crash because of bad science. Gravity worked exactly as Newton said it would. It crashed because one engineering team provided thrust data in pound-seconds (US units) while another team's navigation software expected newton-seconds (SI units). The spacecraft flew too close to Mars and was destroyed in the upper atmosphere.
Science was not the failure. Engineering discipline was. Every number was correct inside its own unit system — but engineering requires that the entire system be consistent. You will study units in Chapter 5 for exactly this reason.

