ScienceIQ.com

Rock, Mineral, Crystal, or Gemstone?

Rocks and minerals are all around us and used every day, perhaps without us even being aware of them. Besides making up the solid, supporting surface of the earth we live and move upon daily, rocks and minerals are used in surfacing roads, in the concrete foundations of our homes, in the brick and mortar of buildings, in clocks, and for scientific ...

Continue reading...

RockMineralCrystalGemstone
Geology

Landslides and Mudflows

Landslides are a serious geologic hazard common to almost every state in the United States. It is estimated that nationally they cause up to $2 billion in damages and from 25 to 50 deaths annually. ... Continue reading

LandslidesandMudflows
Biology

How Biological Clocks Work

Anyone who has traveled has experienced jet lag—that groggy realization that while your day is beginning in Washington, DC, the night you just left in San Francisco is hardly over. Jet lag is an ... Continue reading

HowBiologicalClocksWork
Engineering

Liquid Crystal Communication

The Information Age rides on beams of carefully controlled light. Because lasers form the arteries of modern communications networks, dexterous manipulation of light underpins the two definitive ... Continue reading

LiquidCrystalCommunication
Geology

The Hole Scoop on Ozone

Ozone is a molecule containing three oxygen atoms. It is blue in color and has a strong odor. Normal oxygen, which we breathe, has two oxygen atoms and is colorless and odorless. Ozone is much less ... Continue reading

OzoneHole

The Self-less Gene?

SelflessGeneThe dictionary defines altruism as 'an unselfish concern for the welfare of others.' That's the kind of behavior that rescue workers showed in the 9-11 attack on the World Trade Center, and many of those rescuers sacrificed their lives so that the lives of others could be saved. Every culture has altruists. But altruistic behavior has long posed an interesting challenge to evolutionary theorists. How could an 'altruism gene' be passed through the generations if it led to behavior that benefited others at one's own expense? Wouldn't your chances of survival, and of the perpetuation of your genes, be greater if you simply placed priority on your own welfare?

One theory is that altruism can be advantageous as long as you direct it towards the right people, those who share many of your own genes. Your parents, children, and siblings share half your genes on average; your grandchildren and grandparents, one quarter; your cousins, one eighth. Evolution, then, might act according to a relatively simple cost-benefit analysis: as long as the cost to you of your altruistic behavior is less than, say, one half its benefit to your sister, it is advantageous in the sense of resulting in a net gain in the chances of ensuring the perpetuation of your genes. In fact, if the beneficiary also has the gene for altruism, all that matters for the perpetuation of that gene is that its benefit to that person is greater than its cost to you. As far as this kind of algorithm is concerned, it makes no difference whether or not you die in the process. From a genes-eye view, the body that houses it is just a temporary means for replicating itself.

So if people with an altruism gene were selective about behaving altruistically, that right there would enhance the survival value of the gene. You can quickly see another advantage of this selective strategy: if you just help out people who are also cooperative and unselfish, they're more likely to help you out at another time. That results in 'reciprocal altruism' an ethic of 'I'll help you if you help me,' which could hardly be called unselfish. Even altruism, it seems, has to be at least a little self-serving in order to survive.