Did You Hear About The Wooden Statue That Crashed A Train

Did you hear about the wooden statue that crashed a train

It was a bad conductor

More Posts from Drunkscience4u and Others

8 years ago
For Pedestrians, Windy Conditions Can Be Uncomfortable Or Even Downright Dangerous. And While You Might
For Pedestrians, Windy Conditions Can Be Uncomfortable Or Even Downright Dangerous. And While You Might
For Pedestrians, Windy Conditions Can Be Uncomfortable Or Even Downright Dangerous. And While You Might

For pedestrians, windy conditions can be uncomfortable or even downright dangerous. And while you might expect the buildings of an urban environment to protect people from the wind, that’s not always the case. The image above shows a simulation of ground-level wind conditions in Venice on a breezy day. While many areas, shown in blue and green, have lower wind speeds, there are a few areas, shown in red, where wind speeds are well above the day’s average. This enhancement often occurs in areas where buildings constrict airflow and funnel it together. The buildings create a form of the Venturi effect, where narrowing passages cause local pressure to drop, driving an increase in wind speed. Architects and urban designers are increasingly turning to numerical simulations and CFD to study these effects in urban environments and to search for ways to mitigate problems and keep pedestrians safe. (Image credits: CFD analysis - SimScale; pedestrians - Saltysalt, skolnv)

This post was sponsored by SimScale, the cloud-based simulation platform. SimScale offers a free Community plan for anyone interested in trying CFD, FEA and thermal simulations in their browser. Sign up for a free account here. 

For information on FYFD’s sponsored post policy, click here.


Tags
8 years ago

Everyone should check out drunkscience4u.tumblr.com because it's a mix of science facts and science puns, which is the best combination.

from Drunk Science http://ift.tt/2kY0TL7 via IFTTT


Tags
8 years ago
A Visualisation Of The Recent Rapid Change In Temperature.

A Visualisation of the Recent Rapid Change in Temperature.

(GreenPeace)


Tags
8 years ago

Largest Batch of Earth-size, Habitable Zone Planets

Our Spitzer Space Telescope has revealed the first known system of seven Earth-size planets around a single star. Three of these planets are firmly located in an area called the habitable zone, where liquid water is most likely to exist on a rocky planet.

image

This exoplanet system is called TRAPPIST-1, named for The Transiting Planets and Planetesimals Small Telescope (TRAPPIST) in Chile. In May 2016, researchers using TRAPPIST announced they had discovered three planets in the system.

image

Assisted by several ground-based telescopes, Spitzer confirmed the existence of two of these planets and discovered five additional ones, increasing the number of known planets in the system to seven.

image

This is the FIRST time three terrestrial planets have been found in the habitable zone of a star, and this is the FIRST time we have been able to measure both the masses and the radius for habitable zone Earth-sized planets.

All of these seven planets could have liquid water, key to life as we know it, under the right atmospheric conditions, but the chances are highest with the three in the habitable zone.

image

At about 40 light-years (235 trillion miles) from Earth, the system of planets is relatively close to us, in the constellation Aquarius. Because they are located outside of our solar system, these planets are scientifically known as exoplanets. To clarify, exoplanets are planets outside our solar system that orbit a sun-like star.

image

In this animation, you can see the planets orbiting the star, with the green area representing the famous habitable zone, defined as the range of distance to the star for which an Earth-like planet is the most likely to harbor abundant liquid water on its surface. Planets e, f and g fall in the habitable zone of the star.

Using Spitzer data, the team precisely measured the sizes of the seven planets and developed first estimates of the masses of six of them. The mass of the seventh and farthest exoplanet has not yet been estimated.

image

For comparison…if our sun was the size of a basketball, the TRAPPIST-1 star would be the size of a golf ball.

Based on their densities, all of the TRAPPIST-1 planets are likely to be rocky. Further observations will not only help determine whether they are rich in water, but also possibly reveal whether any could have liquid water on their surfaces.

The sun at the center of this system is classified as an ultra-cool dwarf and is so cool that liquid water could survive on planets orbiting very close to it, closer than is possible on planets in our solar system. All seven of the TRAPPIST-1 planetary orbits are closer to their host star than Mercury is to our sun.

image

 The planets also are very close to each other. How close? Well, if a person was standing on one of the planet’s surface, they could gaze up and potentially see geological features or clouds of neighboring worlds, which would sometimes appear larger than the moon in Earth’s sky.

image

The planets may also be tidally-locked to their star, which means the same side of the planet is always facing the star, therefore each side is either perpetual day or night. This could mean they have weather patterns totally unlike those on Earth, such as strong wind blowing from the day side to the night side, and extreme temperature changes.

image

Because most TRAPPIST-1 planets are likely to be rocky, and they are very close to one another, scientists view the Galilean moons of Jupiter – lo, Europa, Callisto, Ganymede – as good comparisons in our solar system. All of these moons are also tidally locked to Jupiter. The TRAPPIST-1 star is only slightly wider than Jupiter, yet much warmer. 

How Did the Spitzer Space Telescope Detect this System?

Spitzer, an infrared telescope that trails Earth as it orbits the sun, was well-suited for studying TRAPPIST-1 because the star glows brightest in infrared light, whose wavelengths are longer than the eye can see. Spitzer is uniquely positioned in its orbit to observe enough crossing (aka transits) of the planets in front of the host star to reveal the complex architecture of the system. 

image

Every time a planet passes by, or transits, a star, it blocks out some light. Spitzer measured the dips in light and based on how big the dip, you can determine the size of the planet. The timing of the transits tells you how long it takes for the planet to orbit the star.

image

The TRAPPIST-1 system provides one of the best opportunities in the next decade to study the atmospheres around Earth-size planets. Spitzer, Hubble and Kepler will help astronomers plan for follow-up studies using our upcoming James Webb Space Telescope, launching in 2018. With much greater sensitivity, Webb will be able to detect the chemical fingerprints of water, methane, oxygen, ozone and other components of a planet’s atmosphere.

At 40 light-years away, humans won’t be visiting this system in person anytime soon…that said…this poster can help us imagine what it would be like: 

image

Make sure to follow us on Tumblr for your regular dose of space: http://nasa.tumblr.com


Tags
8 years ago

Please donate at https://ko-fi.com/A153ETF.

Facebook | Instagram


Tags
7 years ago
It's Been A While, Right?? Well, It's Been An Interesting Year. We're In The Process Of Uploading All

It's been a while, right?? Well, it's been an interesting year. We're in the process of uploading all the episodes to vimeo. The first trailer is up. Go check it out again! Episodes are up weekly starting February 5. If you really want to help us out, please donate to http://ift.tt/2lqvuCQ #drunkscience #vimeo #webseries #science http://ift.tt/2FNIWrk


Tags
8 years ago

nsfw (not safe for water)

alkali metals


Tags
8 years ago
Hey Guys, We Made A Flyer That You Can Print Out And Post In Your Places Of Choice! Http://ift.tt/2jNXMm3

Hey guys, we made a flyer that you can print out and post in your places of choice! http://ift.tt/2jNXMm3


Tags
8 years ago

Please subscribe, like, comment, and donate! Stay tuned for Bloopers from this episode on April 22, 2017. This was the last episode of this season. Keep an eye out on the facebook page for more information on Season 2. Please comment below for any experiments or simple science you'd like us to explain while drunk! Starring: Candice Lola Directed by Rebecca Berger Produced by Rebecca Berger and Candice Lola Written by Candice Lola Editing, Color, Sound Design by Rebecca Berger Animation by Rachael K McDonald Links: Music: http://ift.tt/1JICaNj and http://ift.tt/2lquxdO http://ift.tt/2lINlQJ http://ift.tt/2lqtjzr http://ift.tt/2lIL08B http://ift.tt/2lqvuCQ (Donations are always welcome!) http://ift.tt/2lITyw7 http://ift.tt/2lqvQJO


Tags
Loading...
End of content
No more pages to load
  • kiteparty
    kiteparty liked this · 1 year ago
  • ladywithalamp
    ladywithalamp liked this · 4 years ago
  • why-are-you-even-here-tho
    why-are-you-even-here-tho liked this · 5 years ago
  • aquasworldismusicsworld
    aquasworldismusicsworld liked this · 7 years ago
  • nameofthegame5
    nameofthegame5 liked this · 7 years ago
  • lian-nyan
    lian-nyan liked this · 8 years ago
  • ships-ahoy
    ships-ahoy liked this · 8 years ago
  • serenadethatsoup
    serenadethatsoup liked this · 8 years ago
  • science-over-sleep
    science-over-sleep reblogged this · 8 years ago
  • coffeemewk
    coffeemewk reblogged this · 8 years ago
  • eliotino
    eliotino liked this · 8 years ago
  • sujulover1997
    sujulover1997 liked this · 8 years ago
  • eatinglessbecomingmore
    eatinglessbecomingmore reblogged this · 8 years ago
  • shonnovan-mc-o-lang
    shonnovan-mc-o-lang reblogged this · 8 years ago
  • itslik3anavalanch3
    itslik3anavalanch3 reblogged this · 8 years ago
  • itslik3anavalanch3
    itslik3anavalanch3 liked this · 8 years ago
  • belgaer
    belgaer liked this · 8 years ago
  • drunkscience4u
    drunkscience4u reblogged this · 8 years ago
  • brobato
    brobato liked this · 8 years ago
  • gabbiesonlychild-blog
    gabbiesonlychild-blog liked this · 8 years ago
  • makdelirouswitch
    makdelirouswitch liked this · 8 years ago
  • paul-lynde
    paul-lynde liked this · 8 years ago
  • ask-sugarbaby-otabek-blog
    ask-sugarbaby-otabek-blog liked this · 8 years ago
  • whycantijustbegoodenough
    whycantijustbegoodenough liked this · 8 years ago
  • baconhunterartblog
    baconhunterartblog liked this · 8 years ago
  • donkeyswithsocks
    donkeyswithsocks liked this · 8 years ago
  • thatoneguycalledsteve
    thatoneguycalledsteve liked this · 8 years ago
  • psycho-sofa
    psycho-sofa liked this · 8 years ago
  • j3rika
    j3rika liked this · 8 years ago
  • aaa-wyvern-called-zesty
    aaa-wyvern-called-zesty reblogged this · 8 years ago
  • nvqlevel6answers-blog
    nvqlevel6answers-blog liked this · 8 years ago
  • theprovocateur-blog1
    theprovocateur-blog1 liked this · 8 years ago
  • interstellerjay
    interstellerjay liked this · 8 years ago
  • candidle
    candidle reblogged this · 8 years ago
  • thepal-adin
    thepal-adin reblogged this · 8 years ago
  • thepal-adin
    thepal-adin liked this · 8 years ago
  • csec-studyblr-blog
    csec-studyblr-blog liked this · 8 years ago
  • mi-toons
    mi-toons liked this · 8 years ago
drunkscience4u - Drunk Science
Drunk Science

The official page of Drunk Science! An enthusiastic host performs simple experiments and then humorously explains the science behind the result, all while visibly drunk.

126 posts

Explore Tumblr Blog
Search Through Tumblr Tags