Instructional Video10:00
Bozeman Science

Comparing DNA Sequences

12th - Higher Ed
Paul Andersen shows you how to compare DNA sequences to understand evolutionary relationships. He starts with a brief introduction to cladograms and evolutionary relationships. He shows you how to classify DNA relationships using a...
Instructional Video9:49
SciShow

The Randomness Problem: How Lava Lamps Protect the Internet

12th - Higher Ed
Randomness is important for all kinds of things, from science to security, but to generate true randomness, engineers have turned to some pretty odd tricks!
Instructional Video10:03
SciShow

Here's What DNA Really Looks Like

12th - Higher Ed
There’s more to DNA than just the double helix we know and love: under some conditions this familiar molecule can take on unfamiliar forms, each of which can have a different impact on our health.
Instructional Video4:31
TED-Ed

TED-Ed: The twisting tale of DNA - Judith Hauck

Pre-K - Higher Ed
What do a man, a mushroom, and an elephant have in common? A very long and simple double helix molecule makes us more similar and much more different than any other living thing. But, how does a simple molecule determine the form and...
Instructional Video7:12
SciShow

Why Genetic Engineering Can’t Do Everything (Yet)

12th - Higher Ed
We've made some great strides in understanding the human genome, but before we can tackle genetic engineering, we have some "chicken and egg" problems to figure out.
Instructional Video5:18
SciShow

How Neanderthals Ended Up With Human Chromosomes

12th - Higher Ed
This week we learned that the Neanderthal/Denisovan/Human family tree is pretty complicated, thanks to a close look into some Neanderthals' Y chromosomes.
Instructional Video14:55
TED Talks

TED: How digital DNA could help you make better health choices | Jun Wang

12th - Higher Ed
What if you could know exactly how food or medication would impact your health -- before you put it in your body? Genomics researcher Jun Wang is working to develop digital doppelgangers for real people; they start with genetic code, but...
Instructional Video6:31
SciShow

How Protein Shapes Help Us Make Medicine

12th - Higher Ed
Coming up with brand new drugs is all about pinpointing and exploiting a disease’s weakness. A big part of perfecting drug design will be learning to predict how proteins get their shapes because that has everything to do with how both...
Instructional Video10:18
TED Talks

Hendrik Poinar: Bring back the woolly mammoth!

12th - Higher Ed
It’s the dream of kids all around the world to see giant beasts walk the Earth again. Could -- and should -- that dream be realized? Hendrik Poinar talks about the next big thing: the quest to engineer a creature that looks very much...
Instructional Video7:06
PBS

Are Space and Time An Illusion?

12th - Higher Ed
This episode of Space Time is actually about Spacetime, so pull up a chair, grab your favorite snack, and buckle up, because this episode is going to be a TRIP. Gabe explores what reality is, what "time" is, and why what you think those...
Instructional Video3:55
TED-Ed

TED-Ed: Can you find the next number in this sequence? - Alex Gendler

Pre-K - Higher Ed
1, 11, 21, 1211, 111221. These are the first five elements of a number sequence. Can you figure out what comes next? Alex Gendler reveals the answer and explains how beyond just being a neat puzzle, this type of sequence has practical...
Instructional Video15:53
TED Talks

TED: How CRISPR lets us edit our DNA | Jennifer Doudna

12th - Higher Ed
Geneticist Jennifer Doudna co-invented a groundbreaking new technology for editing genes, called CRISPR-Cas9. The tool allows scientists to make precise edits to DNA strands, which could lead to treatments for genetic diseases ... but...
Instructional Video5:14
SciShow

High-Tech Ways Genomics is Changing Field Biology

12th - Higher Ed
To figure out an organism's genome and DNA sequence, field biologists need big, expensive equipment in the labs. But, new high-tech devices help scientists to examine samples on the sites!
Instructional Video11:47
PBS

How Infinity Explains the Finite

12th - Higher Ed
Peano arithmetic proves many theories in mathematics but does have its limits. In order to prove certain things you have to step beyond these axioms. Sometimes you need infinity.
Instructional Video5:27
SciShow

Creating $122 Billion of Antibodies | Antibodies Series Part 2

12th - Higher Ed
Figuring out how to hack the immune system and make the antibodies we want was just the beginning. Thanks to innovative technologies, we're finding ways to produce safe, effective antibodies for all sorts of uses.
Instructional Video8:38
SciShow

CRISPR: A Gene-Editing Superpower

12th - Higher Ed
Any molecular biologist will tell you that genetic engineering is tricky. But up until recently we might be witnessing a new age in human development.
Instructional Video4:45
TED-Ed

TED-ED: Can you solve the seven planets riddle? - Edwin F. Meyer

Pre-K - Higher Ed
Your interstellar police squad has tracked a group of criminals to a cluster of seven planets. Now you must apprehend them before their reinforcements arrive. Of course, the fugitives won't just stay put _ they'll try to dodge you by...
Instructional Video5:10
TED-Ed

TED-Ed: Is math discovered or invented? - Jeff Dekofsky

Pre-K - Higher Ed
Would mathematics exist if people didn't? Did we create mathematical concepts to help us understand the world around us, or is math the native language of the universe itself? Jeff Dekofsky traces some famous arguments in this ancient...
Instructional Video19:22
TED Talks

TED: I am my connectome | Sebastian Seung

12th - Higher Ed
Sebastian Seung is mapping a massively ambitious new model of the brain that focuses on the connections between each neuron. He calls it our "connectome," and it's as individual as our genome -- and understanding it could open a new way...
Instructional Video14:07
Crash Course

DNA, Hot Pockets, & The Longest Word Ever: Crash Course Biology

12th - Higher Ed
Hank imagines himself breaking into the Hot Pockets factory to steal their secret recipes and instruction manuals in order to help us understand how the processes known as DNA transcription and translation allow our cells to build proteins.
Instructional Video4:59
TED-Ed

TED-Ed: The race to sequence the human genome - Tien Nguyen

Pre-K - Higher Ed
In 1990, The Human Genome Project proposed to sequence the entire human genome over 15 years with $3 billion of public funds. Then, seven years before its scheduled completion, a private company called Celera announced that they could...
Instructional Video4:40
SciShow

We Hadn't Sequenced the Human Genome...Until Now | SciShow News

12th - Higher Ed
Researchers have unlocked the final gaps in the human genome, and what they tell us could mean big waves for the future of medicine.
Instructional Video5:05
TED-Ed

TED-ED: How to sequence the human genome - Mark J. Kiel

Pre-K - Higher Ed
Your genome, every human's genome, consists of a unique DNA sequence of A's, T's, C's and G's that tell your cells how to operate. Thanks to technological advances, scientists are now able to know the sequence of letters that makes up an...
Instructional Video4:31
SciShow

Prions: The Real Zombie-Makers

12th - Higher Ed
Hank is tired of zombies in popular culture, and while acknowledging that dead people are scary (especially if they start moving around), he brings us some information on prions - misfolded proteins that are responsible for destroying...