• DMCA
  • Disclaimer
  • Privacy Policy
  • Cookie Privacy Policy
  • Terms and Conditions
  • Contact us
Inter Space Sky Way
  • Home
  • Alien
  • UFO
  • Space
  • NASA
  • Space Flight
  • Astronomy
No Result
View All Result
  • Home
  • Alien
  • UFO
  • Space
  • NASA
  • Space Flight
  • Astronomy
No Result
View All Result
Inter Space Sky Way
No Result
View All Result
Home Space

What’s the weak nuclear pressure and why is it essential?

October 14, 2025
in Space
60 2
0
What’s the weak nuclear pressure and why is it essential?
74
SHARES
1.2k
VIEWS
Share on FacebookShare on Twitter



Again within the Nineteen Thirties, physicists had been doing experiments involving what they known as “beta decay.” They noticed that a component would abruptly spit out a fast-moving electron, and as soon as it was accomplished, it could be totally different — typically a special isotope of the identical aspect, and typically a special aspect altogether.

You might also like

The Inconceivable Black Holes That Should not Exist

India exams parachutes for Gaganyaan astronaut capsule (video)

Odds of asteroid 2024 YR4 hitting the moon might rise to 30 per cent

So the query on all people’s thoughts was, precisely how did this decay course of unfold?

Enrico Fermi had a solution: a brand new force of nature. We knew that the nucleus of an atom was a bundle of neutrons and protons. Fermi hypothesized that some new force could change a proton into a neutron, or vice versa, and, in the process, release an electron and a nearly massless particle called a neutrino.


You may like

It was just a guess. But he was right, and the weak nuclear force was born.

The weak force can do things that no other force can. For example, it can change one flavor of quark into another, which is how neutrons and protons can swap places.

It’s also incredibly weak (hence the name). It has a coupling constant, which is a fancy way of describing rare interactions that can happen that are 100,000 times smaller than the electromagnetic force. And it has an incredibly short range. At around 10^-18 meters, it has the same strength as the electromagnetic force, but at just 10^-17 meters, it’s over 10,000 times weaker already.

And that incredible weakness comes from another property of the weak force that is totally unlike the other forces, and it has to do with what carries the weak force. All the carriers of all the other forces are massless. But the carriers of the weak force, known as the W and Z bosons, are heavier than a proton.

Breaking space news, the latest updates on rocket launches, skywatching events and more!

This was such a big surprise in the 1940s and ’50s that it demanded its own explanation. How in the world did the weak force end up with massive force carriers? The answer would come from theoretical physicist Peter Higgs. The whole reason for the existence of the Higgs boson is to explain why the weak force is the way it is, with the side benefit of creating mass for the other particles.

So the weak force doesn’t play by the normal rules — and, in fact, it breaks one of the biggest rules of all.

All of the other forces of nature obey something called parity symmetry. If you run a physics experiment and compare it with the same experiment in the mirror, the results should come out the same.


You may like

All particles also have a property called helicity, which is their spin relative to their direction of motion. This helicity can be counterclockwise, which we call left-handed, and clockwise, which we call right-handed. All particles spontaneously appear with an even mix of left- and right-handedness. This ensures that their mirror-universe versions are the same, thus maintaining the symmetry of parity.

But neutrinos, which are tiny particles created only by the weak force, do something else. Neutrinos are only ever left-handed. There are no known right-handed neutrinos. If you look at a process involving the weak force in the mirror, you’ll see right-handed neutrinos, which don’t exist. This breaks the mirror symmetry, and the weak force is the only force to do it.

So the weak force — the force that nobody asked for — is the only force that can change particle flavors, the only force with massive force carriers, and the only force to violate parity symmetry.

And for all that, what do we get? What has the weak force ever done for us?

Well, if you want to fuse two hydrogen atoms together, you can’t just do that, because they repel each other. So you need to do a little dance. You need to change one of the protons into a neutron so they can bind together. This creates a deuteron, which is just a fancy name for a proton and a neutron bound together. Those deuterons then go on to fuse to become helium, and energy is released.

And what converts a proton into a neutron? That’s right: the weak nuclear force. So, in addition to changing particle flavors, using massive force carriers and making the universe left-handed, the weak nuclear force allows the sun to shine — not a bad trade-off for such a weird force.



Source link

Tags: ForceImportantNuclearweak
Share30Tweet19

Recommended For You

The Inconceivable Black Holes That Should not Exist

by Chato80
November 12, 2025
0
The Inconceivable Black Holes That Should not Exist

In 2023, gravitational wave detectors picked up the signature of a collision 7 billion mild years away. Two black holes had merged in an explosion of warped space-time,...

Read more

India exams parachutes for Gaganyaan astronaut capsule (video)

by Chato80
November 11, 2025
0
India exams parachutes for Gaganyaan astronaut capsule (video)

India took one other step towards its first-ever human spaceflight final week, efficiently testing the parachute system for its Gaganyaan astronaut capsule.The take a look at occurred on...

Read more

Odds of asteroid 2024 YR4 hitting the moon might rise to 30 per cent

by Chato80
November 11, 2025
0
Odds of asteroid 2024 YR4 hitting the moon might rise to 30 per cent

Asteroid 2024 YR4 might hit the moonMARK GARLICK/SCIENCE PHOTO LIBRARY Astronomers are working out of time to resolve whether or not to forestall asteroid 2024 YR4 from hitting...

Read more

Observations counsel GRB origin for quick X-ray transient detected by Einstein Probe

by Chato80
November 11, 2025
0
Observations counsel GRB origin for quick X-ray transient detected by Einstein Probe

The placement of the counterparts to EP241107a in optical and radio bands is proven. Credit score: arXiv (2025). DOI: 10.48550/arxiv.2511.02562 Astronomers have performed multiwavelength observations of a just...

Read more

ESA – John McFall | Prosthetics, risk & parabolic flights

by Chato80
November 12, 2025
0
ESA – John McFall | Prosthetics, risk & parabolic flights

Meet John McFall – Paralympian, medical physician and member of ESA’s Astronaut Reserve. As a part of ESA’s groundbreaking FLY initiative, John helps show that bodily incapacity is...

Read more
Next Post
NASA lays off 550 staff at Jet Propulsion Laboratory in sweeping ‘realignment’ of workforce

NASA lays off 550 staff at Jet Propulsion Laboratory in sweeping 'realignment' of workforce

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

Browse by Category

  • Alien
  • Astronomy
  • NASA
  • Space
  • Space Flight
  • UFO

Recent News

SpaceX progress on Starship Pad realignment for the longer term

SpaceX progress on Starship Pad realignment for the longer term

November 12, 2025
The Inconceivable Black Holes That Should not Exist

The Inconceivable Black Holes That Should not Exist

November 12, 2025
Launch Roundup: New Glenn, Viasat, & Sentinel-6B spotlight busy week of launches

Launch Roundup: New Glenn, Viasat, & Sentinel-6B spotlight busy week of launches

November 11, 2025
India exams parachutes for Gaganyaan astronaut capsule (video)

India exams parachutes for Gaganyaan astronaut capsule (video)

November 11, 2025
‘This all should finish now.’ NASA lab closures at Goddard House Flight Heart beneath Congressional scrutiny

‘This all should finish now.’ NASA lab closures at Goddard House Flight Heart beneath Congressional scrutiny

November 12, 2025
See Mars and Mercury shine within the glow of the setting solar on Nov. 12

See Mars and Mercury shine within the glow of the setting solar on Nov. 12

November 12, 2025
  • DMCA
  • Disclaimer
  • Privacy Policy
  • Cookie Privacy Policy
  • Terms and Conditions
  • Contact us
INTER SPACE SKY WAY

Copyright © 2023 Inter Space Sky Way.
Inter Space Sky Way is not responsible for the content of external sites.

No Result
View All Result
  • Home
  • Alien
  • UFO
  • Space
  • NASA
  • Space Flight
  • Astronomy

Copyright © 2023 Inter Space Sky Way.
Inter Space Sky Way is not responsible for the content of external sites.

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In