Saturday, September 5, 2020

#IfWeDoNotRise: Gauri Lankesh’s Legacy Lives On

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Vanshita Banuana

Article Title

#IfWeDoNotRise: Gauri Lankesh’s Legacy Lives On

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Global Views 360

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September 5, 2020

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Image of Gauri Lankesh

Image of Gauri Lankesh | Source: Twitter

In the late evening hours of 5th September, 2017, journalist and activist Gauri Lankesh was unlocking the door to her house after a long day at work. However, she was never destined to set foot inside again, as armed assailants fired seven shots before fleeing, some of which hit Lankesh and led to her death at the scene.

Lankesh was an outspoken critic of right-wing and Hindutva ideologies, and it is widely believed that this was the reason she was targeted. This corresponds with a lot of the arrests that have been made in the case, most of whom—including the people who shot her—were people who belonged to Hindutva groups.

Lankesh was one of three children born to poet and journalist Palya Lankesh who established the weekly Kannada-language Lankesh Patrike. Lankesh followed in her father’s footsteps, starting out in the Times Of India and then working with Sunday magazine for close to a decade. She married, and later divorced, opinion columnist Chidanand Rajghatta, after which she remained single.

Lankesh had been a journalist for 16 years when her father passed away. She and her brother Indrajit initially planned on ceasing the publication of Lankesh Patrike, but was convinced by the publisher to continue. Gauri became the editor, while Indrajit handled the business side of things. However, due to creative and ideological differences, the siblings had a falling out, leading to Gauri establishing her own Kannada weekly called Gauri Lankesh Patrike.

In the last few days before her death, Lankesh and her team were in the process of reshaping her magazine, Gauri Lankesh Patrike. After her death, the staff of Gauri Lankesh Patrike published the last edition of the magazine before shutting it down for a few months.

A year after her death, the staff released the first edition of Nyaya Patha (Way Of Justice), a weekly Kannada-language tabloid. Currently, they also run two websites, Gauri Lankesh News in English and Naanu Gauri in Kannada.

Lankesh’s death was described by the BBC as the most high-profile journalist murdered in recent years. A Karnataka Special Investigation Team (SIT) was formed in 2018 to probe the murder case. The charge sheet for the 18 arrested for their involvement in the case runs thousands of pages long and supposedly provides damning evidence, but similar to cases of other murdered journalists, the case is slow to move forward in court, especially due to the COVID-19 pandemic. Lankesh’s family, along with the families of journalists like M.M. Kalburgi have been appealing to the state government for a special fast-track court to be set up to ensure speedy justice, especially after special measures such as SITs and length investigations to ensure an in-depth probe into the cases.

In light of the third anniversary of Lankesh’s death, activists all over the country are organising a campaign by the name of #IfWeDoNotRise, to speak out against the crackdown on dissenting journalists and activists. Many journalists have been murdered in manners similar to Lankesh and others are arrested under laws like the Unlawful Activities (Prevention) Act, which has been accused of being misused to clamp down on freedom of speech.

Those protesting against rightward shift in governance look up to figures like Gauri Lankesh who paid for their activism with their life, but are also raising their voices to ensure that it doesn’t happen again. Forgetting Lankesh and the circumstances of her death means forgetting the constant threat of Hindutva indoctrination and its violence, which is only increasing under the present ruling dispensation.

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February 4, 2021 4:53 PM

Physics and Technological Revolutions

As he witnessed the first detonation of a nuclear weapon on July 16, 1945, a piece of ancient Scripture “Bhagwad Geeta” ran through the mind of Robert Oppenheimer: “Now I am become Death, the destroyer of worlds”. Oppenheimer, alongside the likes of Richard Feynman, Enrico Fermi, George Gamow, was part of the star-studded Physicist squad behind the Manhattan Project.

The biggest implications drawn from the end of WW2 for many might have just been the incoming power Struggle between the US and Soviet Union, but for your average American it went to a great length to show that Physicists form a breed of people who can build dangerously effective technology.

That fact, however, would have been evident to anyone with a brisk walk through Human History itself. Physicists have arguably provided the most significant contributions to the Technological Development of our race. From Archimedes building light reflectors to save the Greek Army from Roman Infiltration to the large-scale Ballistic Missile systems made during WW-II, weaponry technology has been highly influenced by physicists in every generation.

But mere list of armaments cannot do justice to the role played by Physics Research in Technological Developments of our society. To get a feel for that, let’s go back to the fathers of Modern Physics as we know it; Sir Isaac Newton and Galileo Galilei. Galileo had his long list of achievements in creating cutting edge technology of the day, ranging from Telescopes to Thermometers & the Magnetic Compass. Sir Isaac for his part was the reason behind the advent of the Industrial Revolution in Great Britain!

The simple Atwood Machines which have today become mainstay material taught to College Freshman and High School Seniors worldwide, were actually the kind of mechanical models on which the large-scale Factory Machines were built. Newton’s laws kickstarted the modern Technological Revolution and ever since then, Physics has been a constant source of inspiration behind all Technology.

The great pioneers in the field “Natural Philosophy” (the physics of today) after Newton continued the trend which their illustrious predecessor had started. The seminal works on Thermodynamics by the likes of Lord Kelvin, Ludwig Boltzmann, James Clerk Maxwell etc. played the decisive part in creating automobile engines and really any technology which dealt with heat (Spoiler Alert- There were a lot of them!). Maxwell’s work on the famous equations on Electromagnetism now named after him played the most significant part in the mission of making Electricity available to everyone (a conquest now just famously remembered for the fight between Nikola Tesla and Thomas Edison).

While one can point out that Theoretical works cannot lead to new Technology on their own, that assertion is only the half-truth. Sure, building technology on the basis of theoretical physics is mostly down to the Engineers, but one cannot underestimate the effect new theoretical developments and their possible uses have on the construction of new technologies. After all, if one was not able to understand the principles of the conversion of mass to energy or Electric & Magnetic Fields are coupled to each other, then expecting the construction of Nuclear Reactors and virtually all Electric Tech today would have been off the table.

So one might ask, what are the new theoretical ideas which can guide the next leap forward technologically? Well, no one can be quite sure of the form which technology will take in even a couple of decades (who would have thought that Server systems designed for efficiently using giant Data in CERN would one day be heavily used for making memes!).

I would go as far as to say that we have not yet completely exhausted the technological possibilities of the Special Theory of Relativity itself, the most prominent example of game changing technology based on that has been GPS Communication systems. One can hence fail to even imagine the kind of technological (and Industrial) progress technologies built on the revealing concepts from General Relativity and Quantum Mechanics can bestow upon us (I’m even refraining to comment on the Quantum Field Theoretic parts!).

Whatever that physics will lead us to is a mystery time will be most suited to answer, but one can see the effects of Quantum Mechanics in the next Computational Revolution itself; Quantum Computing. To put into perspective the extent of development Quantum Computing can bestow upon us, consider the following.

Computational devices today, which are stronger than the computers which put humans to the moon, are fundamentally built upon binary bit systems. From generating Big Bang like Energies in CERN and reaching past Saturn, to making all the knowledge available to everyone has been done in two bits. While Quantum Computers, which are being vividly researched on, can work with virtually infinite bits ! So, hold on tight as exciting new physics promises some large-scale changes on our Civilization as a whole.

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