Thursday, May 2, 2013

Economics influence fertility rates more than other factors

Apr. 30, 2013 ? The world population could top 8 billion in the year 2023 if current growth rates remain constant, according to United Nations figures. However, if global fertility rates slow more quickly than expected, there could be up to half a billion fewer mouths to feed on Earth in 2023. Based on a recent study by a University of Missouri anthropologist, economic changes have the greatest impact on reducing family size, and thus slowing population growth, compared to other factors. Understanding the causes of declining birth rates may lead to improved policies designed to influence fertility and result in reduced competition for food, water, land and wealth.

"Improvements in economic development, such as higher educational attainment, increasing employment in the formal labor market, and the shift away from agriculture, seem to have a doubly-powerful effect because they not only raise individuals' standards of living, but also correlate to declining fertility rates, according to the results of our study," said Mary Shenk, assistant professor of anthropology in MU's College of Arts and Science. "Another important finding of our study was that intervention programs that made changes that really affected individuals achieved the best results. For example, although advertising campaigns encouraging lower fertility may reach a wider audience for less money, face-to-face intervention campaigns providing health services or access to contraception provide better results and are thus a better use of resources."

In their research, Shenk and her colleagues used data collected since 1966 from approximately 250,000 people in rural Bangladesh, along with detailed interviews of nearly 800 women from the region. Sixty-four factors related to family size were considered and organized according to three possible explanations for declines in fertility rates:

  • Risk and mortality -- Parents have fewer children when they have more hope that children will survive into adulthood, according to this explanation.
  • Economic and investment -- This explanation suggests that rising costs of children and higher payoffs to investing in self and children reduce fertility with the shift to a market economy.
  • Cultural transmission -- This explanation holds that social perceptions of the value of children, ideal family size and acceptance of contraception influence fertility rates.

Shenk's team used specially designed data collection and statistical methods to discern that "economic and investment" factors most clearly correlated to lower fertility. However, Shenk noted that the three possible explanations were interwoven. Although economic factors were significantly more influential, other phenomena such as mortality rates and health interventions also affect fertility decline in Bangladesh.

"Few studies have compared those three possible explanations for fertility declines to determine which had the strongest effect," said Shenk. "Population growth rates have fallen globally, starting in 18th century Western Europe, but the exact cause was intensely debated because there are so many different explanations in the literature. Our study created a framework by which different explanations could be explicitly compared. Population data from any region could be analyzed using these methods to help researchers, government officials, health workers and others understand the key drivers of demographic change in that region."

This research was funded by the U.S. National Science Foundation.

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The above story is reprinted from materials provided by University of Missouri-Columbia.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.


Note: If no author is given, the source is cited instead.

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/~3/k6B5G3CPXIc/130430161940.htm

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Wednesday, May 1, 2013

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Saturn's youthful appearance explained

Apr. 30, 2013 ? As planets age they become darker and cooler. Saturn however is much brighter than expected for a planet of its age -- a question that has puzzled scientists since the late sixties. New research published in the journal Nature Geoscience has revealed how Saturn keeps itself looking young and hot.

Researchers from the University of Exeter and the Ecole Normale Sup?rieure de Lyon found that layers of gas, generated by physical instability deep within the giant planet, prevent heat from escaping and have resulted in Saturn failing to cool down at the expected rate.

Professor Gilles Chabrier from Physics & Astronomy at the University of Exeter said: "Scientists have been wondering for years if Saturn was using an additional source of energy to look so bright but instead our calculations show that Saturn appears young because it can't cool down. Instead of heat being transported throughout the planet by large scale (convective) motions, as previously thought, it must be partly transferred by diffusion across different layers of gas inside Saturn. These separate layers effectively insulate the planet and prevent heat from radiating out efficiently. This keeps Saturn warm and bright."

Characterised by its distinctive rings, Saturn is one of the largest planets in our Solar System, second only in size to massive Jupiter. It is primarily made of hydrogen and helium and its excessive brightness has previously been attributed to helium rains, the result of helium failing to mix with Saturn's hydrogen rich atmosphere.

Layered convection, like that recently discovered in Saturn, has been observed in Earth's oceans where warm, salty water lies beneath cool and less salty water. The denser, salty water prevents vertical currents forming between the different layers and so heat cannot be transported efficiently upwards.

These findings suggest that the interior structure, composition and thermal evolution of giant planets in our Solar System, and beyond, may be much more complex than previously thought.

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Journal Reference:

  1. J?r?my Leconte, Gilles Chabrier. Layered convection as the origin of Saturn?s luminosity anomaly. Nature Geoscience, 2013; 6 (5): 347 DOI: 10.1038/ngeo1791

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Source: http://feeds.sciencedaily.com/~r/sciencedaily/top_news/top_technology/~3/E3GGjrhmn9I/130430131525.htm

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