If people starting speaking for bowlers like shami, siraj and bhuvneshwar team management and selecters have to select them.
Virat and Rohit fans are speaking for them that's why they can't drop him.
A progressive Tamil Nadu village raised funds door to door to build its 2km road when the system failed.
Pay taxes, elect politicians and still fund roads.
@TVKVijayHQ@arivalayam@actorvijay
How a mother's breastmilk visibly changes from white to deep yellow when her infant is fighting an illness, adapting its entire immune composition to act as personalized medicine.
Ravi Negi brutally exposed by a local 😂
He was faking force on a hammer to prove the road was solid.
A local walked in and literally lifted the same road with bare hands.
People are now trying to spot Negi after this masterpiece. 😭
On Tuesday, 6 October, a phone call will be made from Stockholm to a physicist somewhere in the world.
For a decade, the name of a boy from Chennai, who wanted to be a cricketer, has been floating around that call.
Ramamoorthy Ramesh was born in 1960 in Madras. His family roots are in Thanjavur, and his parents had a high school education. As a boy, his dream was to be a cricketer, a wicketkeeper, and he is said to have played serious league cricket.
Then came the science.
A BSc in chemistry from Madras University in 1980. A degree in metallurgy from the Indian Institute of Science, Bangalore, in 1983. Then a flight to the University of California, Berkeley, where he took a master's in 1985 and a PhD in 1987.
In 1989 he joined Bellcore, where he worked on ferroelectric memories: tiny cells that can hold information without power. They had a stubborn flaw called polarization fatigue. The cells wore out as they were switched, and for roughly 30 years nobody had cracked it.
Ramesh's answer was conducting oxide electrodes. The 30 year enigma, in his own bio's words, was solved, and it led to a commercial technology.
Along the way, he also pioneered research on a class of oxides called manganites, and coined the term colossal magnetoresistance for their extraordinary behaviour.
Then came the work that could define his career: multiferroics.
Electric polarization and magnetism have long been treated as rivals, and it is rare for a material to have both. In multiferroic materials they coexist.
Ramesh's group showed in the prototypical multiferroic, bismuth ferrite, that an electric field could control magnetism. Writing a magnet with a voltage, instead of a power hungry current.
The experiments agreed with 1st principles theory. And alongside him in this field was theorist Nicola Spaldin. They wrote some of its landmark reviews together, including Multiferroics: progress and prospects in thin films (Nature Materials, 2007).
The promise is ultra low power memory and logic, the kind of computing that sips energy instead of gulping it.
Ramesh co-founded Kepler Computing to push exactly that, and he has argued that orders of magnitude gains in energy efficiency are possible.
In 2014, Thomson Reuters named him a Citation Laureate in Physics for his multiferroics work. In 2020, the Royal Society elected him a Foreign Member.
Citation Laureates and Nobel Prizes do not always line up. Many names appear on those lists for years and the phone never rings.
But the question hangs there every October. A boy who once squatted behind the stumps in Madras now stands behind a field that may be about to change how computers use energy.
So here is what stays with me: if the call comes on Tuesday, a wicketkeeper's dream will have ended in the best way possible, and if it does not, the work will still be running inside the machines of the future.
பிடி உஷாவின் சாதனையை தகர்த்த தமிழ் பெண் 👏👏👏
குஜராத்தை போயி பாருங்கனு ஒரு அமைச்சர் சொன்னார்
தமிழ்நாட்டை பாருங்க சார்...
பதக்கம் வென்ற பெண் சொல்வதை கேளுங்க சார்...
@Udhaystalin your Great 🫡