Showing posts with label physics. Show all posts
Showing posts with label physics. Show all posts

June 18 - Missing Neutrinos Found!

   Posted on June 18, 2022     


This is an update of my post published on June 18, 2011:




When you're as teensy as an electron, it's hard to see you!

But electrons have a negative charge, so we can at least detect that charge. They interact with matter because they are charged—for example, the electrons streaming away from the Sun excite atoms in our atmosphere and cause colorful curtains of light called aurorae.


There are other particles streaming away from the Sun that are just as tiny as electrons but that have no charge. These neutral particles are called neutrinos. And boy, are they hard to detect!!!

Way back in 1930 theoretical physicist Wolfgang Pauli predicted that there should be such a thing as a neutrino. When physicists make such predictions, they are working with data and equations, and they sometimes find that something is missing in their data—the math doesn't come out right unless some other thing, still unknown, exists. Pauli was in that situation—he thought that there must be a particle as large as an electron, but with no charge. He named this not-yet-discovered particle a neutron.

A few years later, another physicist discovered a much larger neutral particle that he named neutron. So the as-yet-undiscovered particle got renamed neutrino.

In 1956, physicists were able to detect neutrinos (well, it turned out that they were closely-related particles called anti-neutrinos) created in nuclear reactors. And in the 1960s, scientists were able to detect and even count neutrinos coming from the Sun, using huge tanks of dry-cleaning liquid deep, deep underground. (Those few incoming neutrinos that hit a chlorine atom in the liquid changed the chlorine to argon. The amount of argon in the liquid was then measured.)


The Sun emits particles (including neutrinos)
in all directions. This is called the solar wind.

Once they were able to detect and measure neutrinos, scientists noticed that Earth was receiving only one third to one half of the expected solar neutrinos. Again, our equations were scrutinized—this time, the equations that modeled how nuclear fusion operates deep in the Sun's core. Could there be something wrong with our model? Could something be missing?


The Sudbury Neutrino Observatory reported on this day in 2001 that the missing neutrinos were there, all along, but had changed “flavors” in their long journey through the outer layers of the Sun, through space, and through our own atmosphere. The earlier neutrino detectors had only detected electron neutrinos, but the SNO used heavy-water detectors that also detected muon and tau neutrinos. With data on all three flavors of neutrinos, the expected number was found, and our model of how the Sun operates was confirmed.


Above and below, the Sudbury Neutrino Observatory




None of the neutrinos have a charge,
and they are pretty close to having zero mass,
as well.


Have you always wanted...
...a muon neutrino of your very own? Get it here.


Older students might enjoy the Particle Adventure. 


Also on this date:










































Birthday of musician Paul McCartney




Mermaids on Parade





(Saturday closest to Summer Solstice)



Plan ahead:



Check out my Pinterest boards for:

And here are my Pinterest boards for:



January 20 - First Successful Roller Coaster!!

    Posted on January 20, 2022


This is an update of my post published on January 20, 2011:


LaMarcus A. Thompson built the first successful roller coaster in Coney Island, New York. And the patent for that roller coaster was awarded to Thompson on this date in 1885.



He called it the “Gravity Pleasure Switchback Railway”—a name entirely unlike roller coaster names these days; the Cyclone, Viper, Intimidator are three examples. The ride only cost five cents—again, how different from today! A coaster in Las Vegas costs $14 for just one ride!. "Gravity Pleasure" passengers sat sideways in cars that were pulled down a 600-foot rail line with low, gentle waves—what a contrast to the steep hills, vertical loops and corkscrews of today! Thompson's coaster only reached speeds of 6 miles per hour—nowadays some coasters reach 100 miles per hour!—but people loved it and lined up to ride. Apparently the daily earnings of $600 per day were astounding. (I guess, when it's a nickel at a time!)


Modern roller coasters are crazy!

The roller coaster's beginnings are in Russia, where people would ride blocks of ice (with straw or fur seats) down wood-framed slides on specially constructed hills. In the summer wheeled carts rolled riders down large, undulating wooden ramps not unlike Thompson's railway.


Apparently in many languages roller coasters are called what could be translated as “Russian Mountains.” But in Russia the name for this sort of ride is “American Mountains”!

Celebrate roller coasters!
  • Design a fantastic ride just how you like it. Consider, not just the hills and turns and loops, but also the car design, the name, and the decorations.
  • Take a ride? If you are lucky enough to live near an affordable coaster, you could give it an honorary spin today.
  • Take a virtual ride. There are two links at the bottom of this earlier post. 
  • Virtually build a coaster or two. Roller coaster simulator games are lots of fun and can teach you a thing or two about physics, too. Try the free demo of No Limits Roller Coaster Simulator. 
  • Learn the physics of roller coasters from this primer. 










December 27 - Happy Birthday, Johannes Kepler and Louis Pasteur

  Posted on December 27, 2021


This is an update of my post published on December 27, 2010:




Two giants of science were born on this day (251 years apart!).



On December 27, 1571, Johannes Kepler was born in Germany. His claim to gigantic-ness—he is even called the Father of Modern Astronomy!— is that he figured out that the planets travel in elliptical (oval-shaped) orbits rather than round orbits, and he figured out three major laws of planetary motion. Sir Isaac Newton's law of gravitation had their genesis in Kepler's laws. Kepler also suggested that the tides were caused by the attraction of the moon. All of that is pretty gigantic!





In 1822, Louis Pasteur was born in France.


Pasteur's claim to gigantic-ality—he is considered one of the founders of microbiology!—is that he discovered much about causes and preventions of diseases: he developed the first vaccine for rabies and anthrax, invented pasteurization of milk, and discovered the role of bacteria in fermentation and was therefore able to improve the manufacture of wine.



For more on Kepler's Three Laws, try Carl Sagan's “Cosmos”...

Here is a video on how one of Louis Pasteur's discoveries not only changed science, but also changed the public's knowledge of - and caring about - science!

Kwanzaa (from 12/26/11 to 1/1/12)