Showing posts with label sun. Show all posts
Showing posts with label sun. 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:



November 24 - First Observation of a Transit of Venus

  Posted on November 24, 2021


This is an update of my post published on November 24, 2010:



Every once in a while, one of the planets gets between us and the Sun. These planets are too far away to cast a shadow on our planet or to block much of the sunlight—in other words, they don't eclipse the Sun like the Moon occasionally does. Instead, from our point of view, they appear as tiny black dots that travel across the disc of the Sun. This is called a transit.

Only two planets can be seen in transit across the Sun from the Earth. Do you know which ones they are?

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ANSWER: Mercury and Venus are both closer to the Sun than we are here on Earth, so they are the only planets that can get between us and the Sun.



Anyway, Jeremiah Horrocks was an English astronomer. He was the only person known to have predicted the transit of Venus on this date in 1639, and he is one of only two to have observed and recorded it. (His friend William Crabtree was the other.)

You may be wondering how he—or anybody—could watch a transit across the blindingly bright Sun. Well, he focused the image of the Sun through a simple telescope onto a piece of cardboard. He then watched the not-so-bright image on the cardboard. People still make this simple kind of helioscope these days, although astronomers have of course figured out more sophisticated systems with which they study the Sun.

NOTE: Never look at the image of the Sun EVEN with a helioscope without adult supervision.


A Rare Treat!

Transits of Venus are very rare. They happen in pairs that are eight years apart—and these pairs are separated by around 100 years! The last two transits of Venus occurred in 2004 and 2012. For many of us, that will likely be the last of our lifetimes! The next transit will be in December, 2117.

Transits of Mercury are much more frequent. The last one was in 2019, and the next one will be in 2032.


Notice how much larger Venus's dark disk looks
against the brightness of the Sun (above),
compared to Mercury's teeny spot (below),












Tie One On Day in the U.S.


(Day before Thanksgiving in the U.S.)







July 3 – Stay Out of the Sun Day

Posted on July 3, 2018

When I was a kid, nothing was more healthy than being outdoors as much as possible, on nice sunny days.

Or so they said!



And it was super healthy to camp out and sit around a campfire...

...and to drink water straight from babbling mountain streams...

All of that stuff was seen as nature, and natural - and therefore healthy.

But just because something is natural, that doesn't mean it's healthy. Mosquitoes carrying malaria are natural, and definitely not healthy. Even if water in streams looks pure, it can be contaminated with bacteria, viruses, parasites, or other pollutants and should be filtered or boiled or treated. Campfire smoke (or any wood smoke from cooking) can cause lung damage and cancer.

And that brings us to the sun. You probably do NOT live under a rock, and so you probably know that skin cancer is a very real threat, especially to light-skinned people but even to dark-skinned people. About 9,500 people in the U.S. alone are diagnosed with skin cancer....EVERY DAY! Luckily, most of these are not deadly melanomas, but about 9,000 people in the U.S. die from skin cancer each year. So...yeah, it's important to:



(1) Stay out of the sun.

(2) UV radiation gets to us even on cloudy days, so use protection even then!

(3) Use sun lotion, hats, sunglasses, long sleeves, and other cover ups to reduce exposure.

(4) Use trees, parasols, tents, canopies, tarps, patio roofs, and beach or patio umbrellas to reduce exposure.


Stay Out of the Sun Day is not just about fear and what NOT to do - it can be so nice and relaxing and cool to have out-of-doors time in the shade:






Also on this date: