Welcome!

Welcome to Dr. B's Science Lab, a non-commercial resource for up-to-date and accurate science content, activities, and projects. Explore a different topic every month, and get the whole family involved in learning and experimenting! Just be sure to follow the directions exactly and pay attention to any safety information given.

If you would like to receive email updates whenever new content is added to Dr. B's Science Lab, submit your address in the "Follow by Email" link at left. Your email address will not be used for any other purpose.



Showing posts with label airplanes. Show all posts
Showing posts with label airplanes. Show all posts

Thursday, September 30, 2010

Paper Airplane Capers

How can you make a toy out of a sheet of paper? It's easy - fold it into a paper airplane and fly away! Most people know how to make the usual "dart"-type airplane, but these links show you some other really cool designs!

Alex's Paper Airplanes
Amazing Paper Airplanes
Best Paper Airplanes

Try building some of these planes. How long can you keep them flying? You might even want to have races or other contests with your friends. Or you can decorate your plane!

'Round and 'Round

As mentioned in the previous post, airplanes usually use either jets or propellers to make them move. In this experiment, you'll try out some different propeller designs.

What you'll need:
Several 3" x 5" index cards
Scissors
Straight pin
Pencil with eraser

Cut the index cards into 1" x 5" strips (they don't have to be exact). Push the pin through the center of one of the strips and move the pin around to make the hole slightly larger. The strip should be able to spin around on the pin. Insert the pointy end of the pin into the pencil eraser. Hold the pencil straight up, place the propeller close to your mouth, and blow. What happens? Do the propeller blades turn? Try making some other propeller designs. Fold one or both corners of the strip. Does that make a difference? Does it matter whether both corners are up (or down), or whether one is up and one down? You can cut the other strips into different shapes, or fold and bend them in different ways, to see which design makes the best propeller. You just need to try to blow the same in all cases.

What you'll find is that flat blades don't turn very well. The air just rushes over the blade. But when you put some sort of curve or fold in, the air pushes against it, turning the propeller. The more area there is to push, the easier the blades turn. The air pressure is higher in front of the blade and lower behind. Airplane propellers work on the same principle. They are not flat, but curved and twisted.

Monday, September 27, 2010

Ready, Set, ... Jet!

If you looked at the history of flight links in the last entry, you may have noticed that many of the earliest "flying machines" were actually gliders, which flew without power. Like a modern glider, they needed help getting going. The importance of the Wright Brothers' invention was that their airplane had an engine, and could take off from the ground.

Modern airplanes usually use either propellers or jets to move. Let's talk about jet engines here. Jet engines work by blowing gas out through a small hole called a nozzle. Air is sucked into the front of the engine by a fan. The air is then mixed with fuel and ignited. The hot gas, which is at high pressure, comes rushing out the back, pushing the jet engine (and whatever it is attached to) forward.

You can make a simple jet engine with things you may have around the house.

What you'll need:
Balloon
Tape
Drinking straw
Long piece of string

Blow the balloon up and just hold the empty end closed. Tape the drinking straw to the balloon as shown in the picture. Let the air out of the balloon.

Now find a place to tie the string that lets you stretch it out to its full length. Try a doorknob in a fairly large room. Tie one end of the string, then thread the string through the drinking straw. Stretch the string out, keeping the balloon near your end. Blow the balloon up and hold the end closed again. Make sure that the string is straight, then let go of the balloon. As the air rushes out, the balloon will take off along the string. How far can you make it go?

Tuesday, September 21, 2010

A Brief History of Flight

Do you know who flew the first airplane? If you do, you probably answered "Orville Wright". Orville and Wilbur Wright were brothers and engineers who did a lot of research about flight before they built their first airplane. On December 17, 1903, they launched their "Flyer" from the beach at Kitty Hawk, North Carolina. This video shows a later flight of their amazing flying machine.

The Wright brothers' invention was important because their flying contraption with an engine that could transport a person. However, earlier scientists and engineers had designed and even built lots of different balloons, gliders, and models. The National Aeronautics and Space Administration (NASA) has a website which shows pictures of many of these early machines.

Thursday, September 16, 2010

Wing It!

In the last experiment, you got an idea about how airplane wings work. But airplane wings aren't flat like a piece of paper. In this activity, you'll make a more realistic wing and try out some of your own designs!

What You'll Need:
5" x 8" (12 1/2 cm x 20 cm) index cards, or pieces of paper about the same size
Tape
Scissors
Pencil

Fold the paper and tape it so that the side view looks like black lines in the picture at right. Slide the pencil into the open space so that the wing hangs from the pencil. Hold the pencil near your chin, letting the paper swing freely. Tilt your head down and blow onto both edges of the wing. Air should flow as shown in the picture.
You should notice that the wing lifts slightly. This happens because the air moving over the top of the wing (light blue arrow) has to follow a longer path than the darker blue arrow. This means that the air pressure is lower on the top. This lowers the air pressure (pushing force) on the top. Since the pressure on the bottom is now higher the wing moves up.
Try some different shapes and see whether you can make a better wing! See the pictures below for some ideas. You can also trying cutting holes in the wings. Can you make a wing that lifts up more than the one pictured above?

Wednesday, September 8, 2010

Lift Off!

Here's a quick and easy experiment that will demonstrate one of the reasons why airplanes can fly. All you need is a sheet of paper, 8 1/2" x 11".

Hold the paper in both hands. Place your hands on the sides near the bottom, with your thumbs on one side of the paper and the other eight fingers on the back. Let the paper flop down away from you so that it covers your fingers. Bring the paper up to your mouth and blow gently across the top. Pay special attention to what happens just after you start to blow. What do you think the paper will do?

You might think that the paper would move down because of the force of the air. But instead you see it move upward! This happens because the air moving over the surface of the paper reduces the air pressure on the top of the paper. Then the paper moves toward the area of lower pressure. This difference in air pressure is very important in understanding how airplanes fly, as you'll see in the next experiment.

Tuesday, September 7, 2010

Fly Away!

You can fly to faraway places using this month's topics - airplanes! Learn how they fly and how they maneuver. Finally, build some cool paper airplanes and try designing your own!