Curious Bends – air pollution, menstruation, self-admiration and more

1. The air that Indians breathe is dangerously toxic

“Last year the WHO assessed 1,622 cities worldwide for PM2.5 and found India home to 13 of the 20 cities with the most polluted air. More cities in India than in China see extremely high levels of such pollution. Especially to blame are low standards for vehicle emissions and fuel. Nor, for different reasons, are rural people better off. Indoor pollution inhaled from dung-fuelled fires, and paraffin stoves and lights, may kill more than 1m Indians a year. The WHO says the vast majority of Indians breathe unsafe air. The human cost is seen in soaring asthma rates, including among children. PM2.5 contributes to cancer and it kills by triggering heart attacks and strokes. Air pollution is likely to cause vastly more deaths as Indians grow older and more obese. Indoor and outdoor pollution combined is the biggest cause of death, claiming over 1.6m lives a year.” (5 min read, economist.com)

2. In India, girls almost never talk to their coaches about period problems

“In a country where menstrual blood is widely considered impure and inauspicious and barely 12% of women have access to sanitary napkins, how do sportswomen in physically demanding sports deal with menstruation and its taboos? How much do periods impact their games? Anju Bobby George, India’s long jump champion from Kerala, won three golds, two silvers and two bronzes at major international competitions between 2002 and 2007. And she is convinced she could have added two more medals to her kitty if it had not been for menstruation.” (6 min read,scroll.in)

3. Wealthy Chinese kids are twice as likely to be nearsighted as the poor

“East Asia’s high levels of childhood myopia, also known as nearsightedness, has long been a mystery: It affects as many as 90% of urban 18-year-olds. Researchers have identified possible causes including intensive studying, less time spent outside—even the Chinese language itself. And now a new study has made the mystery even stranger.” (2 min read, qz.com)

4. Mongolians have decided the country’s future by text message

“Mongolians received a text message last week. It asked them to reply to vote for one of two futures for the country: budget cuts and economic austerity, or the controversial expansion of copper and gold mines, which could bring in billions of dollars in foreign investment.” (2 min read, qz.com)

5. When Indian scientists can’t show humility, what can you expect from its politicians?

“India’s most famous and highly decorated scientist is C.N.R. Rao, a Fellow of the world’s most prestigious scientific academies, and a recipient of his country’s highest honour, the Bharat Ratna. Some years ago, an admirer decided to lobby the Bangalore Municipality to name the circle outside the Indian Institute of Science (of which Rao had been director) after the great man. Now circles and roads are normally not named after living people. But here was C.N.R. Rao in the flesh, actually present when a circle named after him was being inaugurated.” (7 min read, telegraphindia.com)

Chart of the week

“No one knows how long the change will take. Lots of bright ideas exist for tackling air pollution. Their widespread implementation, however, depends to a great degree on how much the public makes a fuss about inaction. As lorry drivers might say, honk please.” (More on economist.com)

Asteroids are fascinating – not just because they can destroy humanity

Look up in the night sky, if you are lucky you might be able to see Vesta, the only asteroid—among millions that lurk between Mars and Jupiter—bright enough to be visible to the naked eye from the Earth. Given their dull (non)appearance in the sky, it is no wonder that the first asteroid was only discovered in 1801 when relatively powerful telescopes started to be built.

However, in the two centuries since, we have learnt a lot about these celestial bodies. They could prove to be both a curse and a blessing. A curse because they could bring about the end of human existence, and a blessing because they could be the launchpad for building human colonies in outer space.

The definition of an asteroid has changed over the years, but today we know them as small bodies found in the inner solar system. Asteroids can also be called failed planetesimals—tiny fragments that had the potential to grow larger under the influence of gravity and become a planet when the solar system was being formed billions of years ago, but couldn’t.

Living on a pale blue dot

We now know that these “failures” pose a high risk to life on the Earth. Only last week a half-kilometre wide asteroid passed by the Earth. If it had hit us, it could have caused human extinction. Fortunately it was about 1 million km away, which is three times the distance between the Earth and the moon. But the risk is real. In the past one such asteroid impact was responsible for extinction of dinosaurs and an older one caused even more destruction and made all the oceans boil.

4927597266_275e355960_oThe good news is that, with enough warning, we already have the technology to deflect asteroids. But the bad news is that we may not get enough warning, because there are thousands of asteroids—some of which could be on a collision course with the Earth right now—that we have not yet discovered.

This threat has spurred some to take matters in their hands, rather than wait for government agencies to do the work. The B612 foundation, for instance, is planning to launch a private space mission in 2018 that will discover and track hundreds of thousands of such asteroids.

If you can’t beat ’em, profit from ’em

Leaving the stories of doom behind, asteroids are fascinating for another reason: they hold clues about the formation of our solar system. For instance, according to theory, when the Earth formed into a planet, the process would have been too hot to have left any liquid water on the surface. So the current hypothesis is that water-rich celestial bodies, such as comets, brought the water when many crashed into the Earth during its early days.

A current space mission, called Rosetta, to the comet 67P recently tested this hypothesis. It found that the water on that comet was not of the same composition as that on the Earth. So if not comets, then the other celestial body that could achieve this feat are asteroids. This hypothesis will be tested by the Hayabusa-2 mission, launched in December by the Japanese space agency, when it will land three rovers on the asteroid 1999 JU3, and also collect and return a sample from the asteroid back to the Earth in 2020.

Even if they aren’t the source of terrestrial water, asteroids could be habitable, or at least resource-providing, stations for human colonies in outer space. And this isn’t just a crazy idea. Two private companies, Planetary Resources and Deep Space Industries, are currently working on projects to mine asteroids. They aim to harvest not just water, but also metals such as iron, nickel, platinum and palladium. Apart from the moon, few celestial bodies can boast of having such a close relationship with humanity.

First published in Lokmat Times. Lead image by ESA and ATG media lab. Asteroid image by Emily Lakdawalla (under CC-BY-NC-SA).

Sorry, Paulo

“When you want something, the universe conspires in helping you achieve it,” wrote Paulo Coelho in The Alchemist. Well, not really true. Instead, it is your unconscious thoughts that shape much of your conscious being, which does the actual work of getting you there. So the only part of the universe that is conspiring to help you achieve it is the back of your mind. That is until you share your dreams with others who care about you, and maybe then a greater part of the universe conspires with you. Just wanting something won’t get you anything.