ScienceIQ.com

Malaria and Sickle Cell Anemia

Sickle cell anemia is a genetic disorder in which the red blood cells collapse into a 'sickle' shape and cannot carry oxygen very well. They also tend to get stuck in narrow blood vessels, causing painful crises. The disease is caused by a change in one amino acid making up the large hemoglobin molecule that gives blood its red color and its ...

Continue reading...

MalariaSickleCell
Biology

Why Can't We Really Clone Dinosaurs?

You might think, if you saw the movie Jurassic Park, or read the book, that a real live cloned dinosaur would be on the TV evening news any day now. Not very likely! In the fictional version, the ... Continue reading

CloneDinosaurs
Biology

How Do They Grow Those Colossal Pumpkins?

Those enormous pumpkins that set records every fall are living proof that both genes and environment make living things what they are. Home gardeners out to break the 2002 record for the world's ... Continue reading

ColossalPumpkins
Engineering

What Are Composite Materials?

A composite material is one in which two or more separate materials have been combined to make a single construct having more desirable properties. What many people don't realize is that composites ... Continue reading

CompositeMaterials
Physics

Can You Miss the Earth?

Have you ever wondered why astronauts float in space? Well, it isn't because there is no gravity in space. Astronauts float because they are in constant free fall. If a baseball pitcher throws a ... Continue reading

Weightlessness

Why Do Leaves Change Color In The Fall?

WhyDoLeavesChangeColorInTheFallEvery fall the leaves of many trees turn magnificent colors. One of the great benefits of the season is looking at the fall foliage, with its bright reds, oranges and purples, before the leaves fall off for winter. How exactly do the vibrant green leaves turn so many different colors, and why?

Over the spring and summer months, chlorophyll in the leaves absorb sunlight which is then used for energy. The energy is used to convert carbon dioxide, the kind of air we breathe out, to carbohydrates such as sugar and starch, for the tree to use or store. Chlorophyll gives the leaves' their green color. Other pigments are also in the leaves, such as carotenes and xanthophylls; these give yellow and orange pigments. During the spring and summer months, the chlorophyll is most prevalent, therefore the leaves appear green.

In the fall, the lower temperatures and shorter day lengths signal the trees to stop making food. The sugar and starch stored from earlier now serve as food for the tree during the winter months. Since the chlorophyll is not being used, it starts to break down, revealing yellow and orange pigments. Red and purples, or anthocyanin pigments, are made from different chemical interactions with the carotenes and xanthophylls. Thanks to these chemical changes, we are able to see extraordinary fall colors.