الثقافة والترفيه

Carrie review – the teenage hell-raiser’s glorious return couldn’t come at a better time

المصدر: Culture | The Guardian · نُشر

Carrie review – the teenage hell-raiser’s glorious return couldn’t come at a better time
المصدر: Culture | The Guardian

This witty, smart remake takes bullying and telekinetic violence to new extremes. Even the shower scene is more excruciating than the original The automatic response to the news that a stone-cold classic of any genre is to be remade is “Why?” In an accompanying letter to critics,

This witty, smart remake takes bullying and telekinetic violence to new extremes. Even the shower scene is more excruciating than the original The automatic response to the news that a stone-cold classic of any genre is to be remade is “Why?” In an accompanying letter to critics, the creator of the new TV series Carrie, Mike Flanagan, promises us that this was the first question he asked himself too when he was approached about the project. Why mess with perfection – in this case, the Brian De Palma horror film, based on and nearly eclipsing in terms of cultural currency Stephen King’s debut novel about a telekinetic teen, that has been gloriously shocking audiences for half a century?

But it’s a far less necessary question than usual. Why remake Carrie, a story of teenage bullying, alienation and the vengeful violence it can fuel, for the modern age? Babe, look around!

We’ve got the internet now. We’ve taken teenage bullying, alienation and the fuelling of vengeful violence to levels that De Palma and King, with all their vaunted capacity for darkness, could never have imagined! We are, to use a construction popular among the very youth of whom we are speaking, Carriemaxxing these days.

The question is not why remake but quite why it has taken this long. Continue reading...

اقرأ المصدر الأصلي
Physicists just found the ‘ghost’ of superconductivity
العلوم والبيئة

Physicists just found the ‘ghost’ of superconductivity

Physicists have found striking evidence for an unusual form of superconducting behavior in uranium ditelluride, where electron pairs organize into rippling patterns called pair density waves. Even more surprisingly, these patterns appear to survive after ordinary superconductivit

All Top News -- ScienceDaily ·