Invertebrates

Season 04
Episode 15
Duration 23:05
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⭐ Interactive Lesson ⭐
Interactive Science Lesson

Invertebrates

Based on Bill Nye the Science Guy · Season 4, Episode 15 · 23 min

Every animal you can think of probably has a backbone: fish, frogs, birds, even you. That group is actually the minority. This lesson is about the animals that make up almost all of the rest.

Step 1 of 6 · Engage
Engage

What Do 9 Out of 10 Animals On Earth Have In Common?

Explore

Put Your Instincts to the Test

Think about what you already know about animals without backbones. Pick an answer for each question, then see if your instincts were right.

A crab loses one of its claws in a fight. What happens next?
Picture a soft, boneless body shaped like a long balloon filled with water. Out of water, does it hold its shape?
A sea jelly gets touched on one side of its body. Does the response have to travel to a brain first before the jelly can react?
Explain

Understanding the Science

Tap each card to reveal the explanation, then try the two labs below.

Key Concepts

What Makes an Invertebrate

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A World of Invertebrate Groups

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Exoskeletons: Armor From the Outside

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Molting: Growing By Shedding Your Skeleton

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Regeneration: Regrowing What's Lost

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Nerve Nets: Thinking Without a Brain

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Body Support Without a Backbone

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Invertebrates as Ecosystem Engineers

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Reaction Race: Nerve Net vs Brain and Spinal Cord

Click anywhere on either creature to fire a signal. Most of the time, brain and spinal cord wins, it's the faster system overall. But watch for the glowing ring around the target: click inside it and something different happens.

Click either creature to fire the first signal.

How Fast, Really?

A jellyfish's nerve net sends a signal at about 0.2 metres per second, roughly the speed of a slow hand wave. A brain and spinal cord pathway conducts faster once it gets moving, but it always pays a small, fixed processing cost first, a few thousandths of a second, before it can react at all. Right next to the target, that fixed cost is all that matters, which is why the nerve net can win inside the glowing ring. Anywhere outside it, the brain and spinal cord's raw speed takes over and wins easily.

Elaborate

Apply Your Knowledge

Invertebrates solve the same problems vertebrates do (support, movement, growth, and defence) but every group does it differently. Match each strategy to what it actually solves.

Match the Concepts

Click an object to select it, then click the matching description to place it.

Items
Exoskeleton
Water buoyancy
Nerve net
Molting
Provides support and protection instead of internal bones
Lets soft bodied invertebrates like octopus and squid grow to a large size
Lets a decentralised body react to a stimulus without routing the signal through a brain
Lets an animal with a hard exoskeleton grow larger or regrow a lost limb

Real-World Challenge

A marine biology team just discovered a new species of soft bodied invertebrate living exclusively in shallow tide pools that are exposed to air twice a day at low tide. Based on what you have learned about exoskeletons and body support without a backbone, what physical challenge would this animal face at low tide that a similar species living permanently underwater would not, and what adaptation might help it survive being exposed to air?

Science Update

What Has Changed Since This Episode Aired

This episode first aired in 1996. The core science about invertebrates still holds up well, but research since then has sharpened a few of the specific numbers and ideas it used.

Evaluate

Test Your Understanding

Answer these questions and get instant feedback. How many can you get right?

Reflection

This lesson keeps circling back to one idea: invertebrates solve every problem (support, growth, defence, sensing) differently than we do. Which strategy surprised you the most, and can you think of a human made technology that solves a similar problem in a similar way, for example armor, hydraulics, or a distributed network?