Is AI replacing jobs? Some, yes. But history shows new technology rarely just erases work.
The people who come out ahead are the ones who know how to do the new version of the work, and education is how they learn it.
This summer I spent some time studying what past inventions did to the workforce. I wanted a better question than "will AI take our jobs?" The one I landed on is this: what happened the last time a technology changed everything, and what did schools do about it?
This is the first post in a four-part series on AI & Digital Readiness. Here's what I found.
Every new technology brings impact, but that impact isn't always what people expect. A few examples:
Some jobs grew. Some shrank. Some changed shape completely.
That impact can change livelihoods and economies for generations. I believe it is the job of both the private and public sector to drive innovation while also protecting livelihoods, specifically through education.
When I compare notes with what 2026 feels like, I keep coming back to the example of electricity.
A factory in 1890 ran on one big steam engine. Belts and shafts along the ceiling connected every machine to it. The building was several stories tall, and machines were placed by how close they needed to be to the engine, not by the order of the work.
Then electricity arrived, and factory owners reacted in two ways:
Same invention. Two very different results.
Stanford economist Paul David argues the second approach could not have happened faster, because it required people who knew how to do the new work. Someone had to train the factory architects and electrical engineers who understood this new way of building. And workers making more decisions on the floor needed more training than before.
What held back the electricity revolution was not electricity. It was people who knew what to do with the new innovation.
AI is moving far faster than electricity did. That makes the people problem more urgent, not less.
Education is what closed the gap with training up people who knew how to do the new work with electricity.
Higher education responded first:
K-12 changed too. Employers wanted workers who could read a manual, handle algebra, do mechanical drawing, and understand electrical basics. Between 1910 and 1940, the share of American teenagers enrolled in high school went from 18 percent to 71 percent. The share graduating went from 9 percent to 51 percent.
In thirty years, we went from a country where most kids did not attend high school to one where most kids finished it, largely because of what the new industry demanded.
I think most of the world is in the first factory right now. We're pulling out the steam engine and dropping in a motor. We're adding AI to what we already do without asking what it would look like if we designed around it from the start.
So I keep coming back to the same questions:
We built the high schools once, when the machinery changed and we needed a generation who could work with it. Many argue the education system hasn't changed enough in the past 100 years. It appears we have the catalyst to change it now.
We don't have forty years this time. The good news is that the moves that worked last time map directly onto AI:
Skill Struck's role is to make these shifts possible in real classrooms. That includes AI building tools in high-impact CTE areas like computer science, AI, cybersecurity, and data science, plus micro-courses for other CTE subjects on how AI is changing their industries.
AI replacing jobs is a real concern, but it doesn't have to be the end of the story. Factories didn't change because electricity was invented. They changed when enough people understood it well enough to rebuild the work around it, and that took schools.
Ready to build AI & Digital Readiness in your district, from kindergarten to career? Get a demo and see how Skill Struck fits your grade bands.