Vermont pronto será el primer estado de la nación que requerirá etiquetas de los alimentos modificados genéticamente (OMG). Su ley de etiquetado de transgénicos, la primera aprobada en la nación, entra en vigor el 1 de julio. Maine y Connecticut posteriormente han aprobado sus propias leyes de etiquetado de transgénicos. Pero no entrarán en vigor hasta que los estados vecinos pasan una legislación similar

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The recent trend of increasing Antarctic sea ice extent -- seemingly at odds with climate model projections -- can largely be explained by a natural climate fluctuation, according to a new study led by the National Center for Atmospheric Research (NCAR).

The study offers evidence that the negative phase of the Interdecadal Pacific Oscillation (IPO), which is characterized by cooler-than-average sea surface temperatures in the tropical eastern Pacific, has created favorable conditions for additional Antarctic sea ice growth since 2000.

The findings, published in the journal Nature Geoscience, may resolve a longstanding mystery: Why is Antarctic sea ice expanding when climate change is causing the world to warm?

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What does the “city of the future” look like?

In an era of rapid technological advancement and increasing urbanization, it’s a fair question. Eighty percent of the U.S. population already lives in large cities* – each with a smartphone, wearable or other device in hand.

As such, city officials are beginning to piece together how those bits of technology can connect with assets like energy meters, garbage cans, street lights, traffic lights, water pipes and more. But, how do we make it all work together? By building a truly smart city.

A truly smart city is one with seamless connectivity that solves local problems and provides its inhabitants with safety, cleanliness and the most efficient ways to get from Point A to Point B. It’s a city that optimizes how we use valuable resources to help improve quality of life, positively impact our planet and open new economic opportunities. A truly smart city provides tremendous opportunities for its citizens and beyond.

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Those orange tree patches pictured aren’t harbingers of winter. They are dying or dead trees in California, most likely the result of pine beetle forest damage.

It’s hot now in much of the golden state, and as temperatures continue to rise, something else is happening: Trees are dying in unprecedented numbers.

A recent U.S. Forest Service aerial detection survey revealed a record 66 million dead trees in southern Sierra Nevada. What we’re left with is a breeding ground for wildfires in a state where wildfires are already rampant—particularly this time of year.

40 million trees died statewide from 2010 to October 2015, but an additional 26 million trees died in California since October 2015.

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Paris was at the forefront of public bike-sharing schemes, and it now has electric car-sharing schemes and is something of a laboratory for mobility. As of today, motorists with cars built before 1997, and motorcycles built before 2000, will no longer be able to drive them in the city during daylight hours on weekdays.

Paris Mayor Anne Hidalgo says keeping old cars out of the city will help lower pollution levels. But not everyone is happy about it.

Marc Vernhet makes his living driving tourists around Paris in the classic French car known as the Deux Chevaux, or two-horse power. Peugeot Citroen no longer makes the model, but for collectors, it's a nostalgic symbol of the good old days. Vernhet says tourists from all over the world want to ride in them.

 

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Scientists from the Department of Energy's Lawrence Berkeley National Laboratory (Berkeley Lab) have discovered a possible secret to dramatically boosting the efficiency of perovskite solar cells hidden in the nanoscale peaks and valleys of the crystalline material.

Solar cells made from compounds that have the crystal structure of the mineral perovskite have captured scientists' imaginations. They're inexpensive and easy to fabricate, like organic solar cells. Even more intriguing, the efficiency at which perovskite solar cells convert photons to electricity has increased more rapidly than any other material to date, starting at three percent in 2009 -- when researchers first began exploring the material's photovoltaic capabilities -- to 22 percent today. This is in the ballpark of the efficiency of silicon solar cells.

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