This Gas HEATS up when it should cool down

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  • čas přidán 23. 02. 2024
  • In this video I talk about Joule-Thomson Expansion and how it is being used as a treatment to kill cancer cells
    Simulators I used in this video:
    physics.weber.edu/schroeder/m...
    www.falstad.com/gas/gas.html
    phet.colorado.edu/sims/html/g...
    physics.bu.edu/~duffy/HTML5/P...
    demonstrations.wolfram.com/Jo...
    Read about Argon-Helium Cryoablation:
    radiologykey.com/2-cryoablati....
  • Věda a technologie

Komentáře • 385

  • @TheActionLab
    @TheActionLab  Před 3 měsíci +95

    Who can guess what happens to the outlet temperature of an ideal gas coming out of a valve?

    • @trixy8719
      @trixy8719 Před 3 měsíci +10

      the outlet temperature of an ideal
      gas decreases

    • @TheDroneOperator.
      @TheDroneOperator. Před 3 měsíci +2

      Couldn't this work as a power plant using some sort of refrigeration cycle on a huge scale in the arctic or something?

    • @TheReaverOfDarkness
      @TheReaverOfDarkness Před 3 měsíci +3

      What real gases seem to do is come out at only slightly reduced temperature while it is the liquid in the container which cools drastically.

    • @bokchoiman
      @bokchoiman Před 3 měsíci +1

      What's an "ideal gas"?

    • @cybi124
      @cybi124 Před 3 měsíci

      not me

  • @profdc9501
    @profdc9501 Před 3 měsíci +106

    This is one of the best discussions of the Joule-Thompson effect I've seen. Wonderful!

  • @HawkyStudying
    @HawkyStudying Před 3 měsíci +89

    You are the best sciece CZcamsr, divulgative, you go straight to the point, you don't oversimplify, you don't take yourself too seriously and you always have things to surprise us

    • @cybi124
      @cybi124 Před 3 měsíci +1

      fr

    • @yaykruser
      @yaykruser Před 3 měsíci +8

      I wouldnt say the best, there are others that are very good too!
      Codyslab, Veritassium, Smarter every day, Nile red, braniac etc.

    • @Auroral_Anomaly
      @Auroral_Anomaly Před 3 měsíci +2

      ARE YOU HAVING A STROKE?💀💀

    • @aliens_capam
      @aliens_capam Před 3 měsíci +2

      ​@@yaykruserI don't get why he's compared to them, his style of videos are very different. He shows everything as a practical demonstration, hence "Action Lab" and yes the explanations of it can sometimes fly over my head, the experimental observations always stick with you, and the explanation doesn't leave anything out so it can be used as a teaching tool without overly simplifying it as other CZcamsrs might do.

    • @timelessperspective
      @timelessperspective Před 3 měsíci

      Agreed!

  • @1495978707
    @1495978707 Před 3 měsíci +12

    The Joule Thompson expansion shows specifically how real gases are different from ideal. An ideal gas would not change temperature when undergoing free expansion, but real gases are sticky from van der waals. Except these rare exceptions. To be very explicit: refrigeration without phase change is only possible because of real gas being imperfect.
    Excellent video on thermal physics!

    • @HeyChickens
      @HeyChickens Před 2 měsíci +1

      It would also be possible if expansion were to be done without massive turbulence, by reusing that energy to re-compress the expanded gases from the low pressure side of the system. Then your main losses would just be the extra work needed to compress the same volume of air at a warmer temperature vs at a cooler temperature.

    • @skipper472
      @skipper472 Před měsícem +1

      Refrigeration without phase change is possible even with an ideal gas. Just run the Carnot cycle in reverse...

  • @bengio_10
    @bengio_10 Před 3 měsíci +257

    The gas isn't gasing

    • @giosuezze
      @giosuezze Před 3 měsíci +3

      YOU THINK YOU CAN SMOKE ALL MY GAS AND GET AWAY WITH IT?!? -a hood sage

    • @bengio_10
      @bengio_10 Před 3 měsíci +1

      @@giosuezze maybe

    • @memories1778
      @memories1778 Před 3 měsíci

      ​@@giosuezzeWanna smoke my fart, i haven't pooped for 4 days, u can use it to cook food or use as perfume

    • @mikayahfox1328
      @mikayahfox1328 Před 3 měsíci +1

      Yes

    • @Vikanuck
      @Vikanuck Před 3 měsíci +1

      That’s how we ask for Pepto Bismal at the drug store in Canada 😀

  • @navintrg8422
    @navintrg8422 Před 3 měsíci +38

    Chemical engineer here and this is one of the best explanations i have seen here. But all this can be totally changed when mixture of gases come into picture. I deal with hydrogen and even with above 50 mol% of hydrogen and rest being nitrogen and methane when you expand the gas mixture it cools. Thats different story

    • @patrickbowen9395
      @patrickbowen9395 Před 3 měsíci +2

      What if its only hydrogen and nitrogen? Your comment made my brain shout, " Haber-bosch" and how could this be temp and pressure difference be manipulated in some way to not need "9 gazillion" bars of pressure to produce ammonia.

    • @navintrg8422
      @navintrg8422 Před 3 měsíci +2

      @@patrickbowen9395 still the mixture cools. Newer process of ammonia production has only nitrogen and hydrogen as reactants and they still go to that higher pressure but comparrably lower than conventional ones

    • @ILI.D.
      @ILI.D. Před 2 měsíci +1

      You can tell he's an Engineer by the fact he used lowercase I when addressing himself

  • @xanderclemons6306
    @xanderclemons6306 Před 3 měsíci +20

    Even with arguably complicated topics you always manage to make the explanation clear and simple enough for anyone to understand. I can’t imagine how much work it takes to read the research papers full of technical jargon and “translate” them in a way that makes sense

  • @michaeljordan215
    @michaeljordan215 Před 3 měsíci +16

    The visuals you added in this video is great.

    • @rasimbot
      @rasimbot Před 3 měsíci +2

      Audibles are even better

  • @davezhu7651
    @davezhu7651 Před 3 měsíci +7

    You described Joule-Tomson coefficient better than my Physical Chemistry professor! Absolutely best science youtuber!

  • @AdrianHereToHelp
    @AdrianHereToHelp Před 3 měsíci +3

    This whole time I was thinking about duster cans as a way of applying this information. I'm glad you mentioned them at the end so I didn't come away with a false conclusion!

  • @chalklandingplace
    @chalklandingplace Před 3 měsíci +68

    Wow, it’s so nice seeing your video production continue to improve year after year with your popularity and success! I love seeing this channel grow 😁

    • @Kwint.
      @Kwint. Před 3 měsíci

      Ty babe!

    • @Amkjmi99
      @Amkjmi99 Před 3 měsíci +2

      You love this channel? Name every video on this channel!

    • @NobbsAndVagene
      @NobbsAndVagene Před 3 měsíci +3

      ​@@Amkjmi99 foreach video in videos
      regurgitate video title

    • @bluestraveler2980
      @bluestraveler2980 Před 3 měsíci

      I could not stand the music/sounds, could not watch!

    • @cybi124
      @cybi124 Před 3 měsíci +1

      this channel better than teachers so its good

  • @4RILDIGITAL
    @4RILDIGITAL Před 3 měsíci +1

    Never realized that gas expansion could be so complex and useful in medical procedures. Thanks for the deep dive into the topic, learned a lot.

  • @tomholroyd7519
    @tomholroyd7519 Před 3 měsíci +3

    I love the counterintuitive things. One time at CalTech a student in a lecture about hypersonic airflow said to the prof, "But that's counterintuitive". The professor said, "When it comes to hypersonic flow, you have no intuition."

    • @JustWasted3HoursHere
      @JustWasted3HoursHere Před 3 měsíci +1

      Reminds me of the famous quantum mechanics saying: "If you think you understand quantum mechanics then you don't." [Richard Feynman]

  • @ulrichraymond8372
    @ulrichraymond8372 Před 3 měsíci +4

    Your scientific explanation is superb. Never understood what the concept of enthalpy and learnt something interesting. Absolute gold!

  • @CKILBY-zu7fq
    @CKILBY-zu7fq Před 3 měsíci +2

    I've watched many of your videos, I just want to say BRILLIANT, I don't always like each one of them but. You do a dam good job in your delivery on most everything I've seen. So.. thanks for your diligence and subject matter, I believe I'm learning great things to know. Peace.

  • @benmcreynolds8581
    @benmcreynolds8581 Před 3 měsíci +2

    It really shows the important impact of even the Slightest differences in a given environment. Temperature, density, pressure, charge, etc. Etc.

  • @gnuffe7778
    @gnuffe7778 Před 3 měsíci +1

    Yo i love the editing on this vid. Good job!

  • @29-vibhusingh74
    @29-vibhusingh74 Před 3 měsíci +1

    Idk why but I am getting info about things right after or after sometime I study them in my classes.
    It has happened to me at least 10-12 times. Example my chemistry sir taught the states of matter and explained us ideal gas, real gas you have explained it a little better but as I have studied it so my info has been set in stone thanka

  • @bloom2272
    @bloom2272 Před 3 měsíci +1

    Awesome videos like always BUT i resently went on a marathon watching ur older videos and the ideas and things you tried were so cool it felt like i was kiddo again... Feel free to post any crazy videos thx!

  • @zendhan2517
    @zendhan2517 Před 3 měsíci +2

    this is the type of video i subscribed for. amazing video and always happy to learn something new.

  • @lees3935
    @lees3935 Před 3 měsíci +1

    Wow! Saving this video to watch again to integrate full understanding. Thank you for teaching beyond Charles and Boyles laws.

  • @silvenshadow
    @silvenshadow Před 3 měsíci

    This was really great. Thanks for the amazing content

  • @notarealperson87
    @notarealperson87 Před 3 měsíci +2

    this is probably (no pun intended) your coolest video yet!

  • @arzuozturk6460
    @arzuozturk6460 Před 3 měsíci +5

    the quality of the videos got so good

  • @andrepqumetal
    @andrepqumetal Před 29 dny

    i work for oil and gas industry and we use this a lot (really a lot, arround 120 tons/h). We use some light hidrocarbons (C2/C3) im the cicle compression-cooling-expansion for a few times to reach -100Cº, and the JT effect will help to isolate H2 from C1, 90% of all oil polimers (PP/PVC/ and many others) start to take shape with this.. so almost everything cool you have today make use of this phenomena.
    I knew how it worked , but never been able to fully explain it to new workers. Thanks to this video i am fully capable of

  • @stevebriggs4448
    @stevebriggs4448 Před 3 měsíci

    Thank you, what an excellent video, clearly explaining the science with observations, and giving it a very real and useful practical example, these videos should be used in schools!

  • @MattH-wg7ou
    @MattH-wg7ou Před 3 měsíci +1

    I never knew this was a thing! I like learning new things. Thank you.

  • @Lucius_Chiaraviglio
    @Lucius_Chiaraviglio Před 3 měsíci +1

    Finally a clean explanation of the Joule-Thompson coefficient/effect.

  • @brushmasterspaintingfranchise
    @brushmasterspaintingfranchise Před 3 měsíci +2

    this is one of your harder videos to understand. great jobs explaining

  • @homelanduniversitypress1150
    @homelanduniversitypress1150 Před 2 měsíci +1

    Add longer fade-in / fade-out ramps to the mood music snippets to make it feel less jarring.
    Nice addition.

  • @DavidFMayerPhD
    @DavidFMayerPhD Před 3 měsíci

    excellent explanation of Joule-Thomson effect.

  • @SF-fb6lv
    @SF-fb6lv Před 2 měsíci

    Dang it, I keep learning stuff when I watch your channel!

  • @slengoslengaw8510
    @slengoslengaw8510 Před 3 měsíci +2

    Brilliant video! One thing to improve on would have been to explain inversion temperature which you indirectly mentioned but would have been useful to go into it in a little bit of depth to fully explain the concept here. Thanks

  • @notweewee
    @notweewee Před 3 měsíci

    Awesome, I learnt joule Thompson effect in chemistry, but helium and some other gases were exceptions. Good to see it practically.

  • @darmok3171
    @darmok3171 Před 3 měsíci

    Wow! This is super cool! I had no idea this was a thing!

  • @kevingreig9577
    @kevingreig9577 Před 3 měsíci

    That was great, felt like I learned something today!

  • @rochemist5975
    @rochemist5975 Před 3 měsíci +2

    1. The Video quality improved a lot 💯
    2. I was wondering why H,HeNe heated up instead of being cold (I was too lazy to read all these complex words in the text book for morethan a year ).
    Thank you for making a video on this topic.

  • @simongross3122
    @simongross3122 Před 3 měsíci

    That's fascinating, thank you.

  • @hijmestoffels5171
    @hijmestoffels5171 Před 3 měsíci

    I’ve learned something! Very interesting and well explained.

  • @lake5044
    @lake5044 Před 3 měsíci +1

    I want more of these videos about things I actually have never heard about before, not the usual science facts that are covered by every other science channel over and over.

  • @ishanr8697
    @ishanr8697 Před 2 měsíci

    An excellent story, well told! I have been teaching ideal gas laws to students for over 10 years and this is going to help me teach real gases better. Thanks!

  • @austingirdner92
    @austingirdner92 Před 3 měsíci

    I love how you edit pauses just enough for me to mentally guess and then be like ohh yeah, that makes more sense when you explain shortly after asking a question.

  • @blamokapow137
    @blamokapow137 Před 3 měsíci +2

    Excellent video!

  • @satyasivasubrahmanyam272
    @satyasivasubrahmanyam272 Před 3 měsíci +2

    Every video lets me learn new things Thank you 💖.

  • @whifta
    @whifta Před 3 měsíci +4

    I was guessing Helium in the intro, and I got it right! My physics class is paying off, now I can properly pretend to be smart on the internet!

  • @Purekazu
    @Purekazu Před 3 dny

    Really cool video! It is crazy to learn that this is being used to help eradicate cancer cells too. Thank you for all of your content, it is really great to get a dose of science.

  • @wallyhall
    @wallyhall Před 3 měsíci +10

    It forgot how to gas.

  • @teddp
    @teddp Před 3 měsíci

    Very nice and well explained 👍

  • @B_r_u_c_e
    @B_r_u_c_e Před 3 měsíci

    Excellent. Thank you.

  • @boredlikealways2000
    @boredlikealways2000 Před 3 měsíci

    New editing! New editing?! Nice! Its like a new season of the action lab, thats so cool hah

  • @sturgeondtd9522
    @sturgeondtd9522 Před 3 měsíci

    Never knew about the mechanism for Argon/Helium cryoablation, neat!

  • @ahmadhasan8607
    @ahmadhasan8607 Před 3 měsíci

    Very interesting and useful.

  • @rossmennie4903
    @rossmennie4903 Před 3 měsíci

    Always love your videos! Sometimes I play them at .25 speed. It makes you look like you’re drunk! I’m easily amused!!

  • @alexandru5316
    @alexandru5316 Před 3 měsíci +2

    Very informative!
    Also: Thank you for not using AI generated images for this video! (weird that I have say this, but most channels go the AI content farm route and it's depressing)

  • @tommythetoe
    @tommythetoe Před 3 měsíci

    Thank you. I worked on ships in engine room. The exhaust gas from main engine has temperature sensors all along
    its path. I never understood why the temperature went up at 1 point as it expanded. Got it now

  • @Studentofhvac
    @Studentofhvac Před 3 měsíci

    Thank you for this.

  • @sebastiand152
    @sebastiand152 Před 3 měsíci

    Cool video. One remark: the availalbe helium on earth is practically finite. We should use it accordingly for medicine, science,... and not waste it on bloons at parties and similar stuff.

  • @robinoja
    @robinoja Před 3 měsíci

    Any chance you got the video idea from my recent post in ELI5 about the same topic and cryoablation? If you did, thats awesome! Glad you shared this amazing medical procedure.

  • @mrfinesse
    @mrfinesse Před 3 měsíci

    Learn something everyday..Very nice.

  • @lasagnahog7695
    @lasagnahog7695 Před 3 měsíci

    This one really blew my mind

  • @ChiragIP
    @ChiragIP Před 2 měsíci

    Why wasn't this taught to me in school?! Thank u so much!

  • @cheeseparis1
    @cheeseparis1 Před 3 měsíci +1

    4:09 Slightly attracted to eachother, or repelled, with music from Carmen. Perfectly on point!

  • @zecuse
    @zecuse Před 3 měsíci +1

    0:57 No, it just means you equalized the pressure between the 2 containers. The volume of 9g of air is the combined volume of both containers + tube. With the way you said this, you'd have to vacuum out the air from the smaller container instead of just connecting them with a tube.
    Edit: Quoting what he said: "Since I vacuum the air out of this [pointing at the *larger* ] container, if I just connect the two, then all of the air from this [touching the *smaller* ] container will now *mix between the two* ".
    The pressure in the system he made is equalized between BOTH containers connected by the tube. In order for the LARGER container to get all of the 9g of air, he'd have to use a vacuum device INSIDE the already vacuumed larger container to suck all of the air out of the smaller container to make the smaller container a vacuum now (aka no air).

    • @koharaisevo3666
      @koharaisevo3666 Před 3 měsíci +2

      That's what he said though?
      "since I vacuum the air out of this container if I just connect the two then all the air from this container will now mix between the two and now this will be the volume of nine grams of air"

    • @zecuse
      @zecuse Před 3 měsíci

      @isevo3666 He said "Since I vacuum the air out of this [pointing at the *larger* ] container".
      Next he said "If I just connect the two, then all of the air from this [touching the *smaller* ] container will now mix *between* the two".
      The *larger* container does NOT contain 9g of air given what he said! The way he said and performed all of this describes *equalizing* the air between BOTH containers. That means BOTH containers (+ the tube) contain the 9g of air, NOT that ONLY the larger container has all 9g of air.

  • @YodaWhat
    @YodaWhat Před 3 měsíci +1

    Very interesting, but you don't need an exotic effect like this to cause localized heating and cooling of a spot. It could be done by alternating hot and cold flowing brine, or by electrical resistance heating combined with a cooling fluid, or by periodically reversing the current flow through one junction of a thermocouple. So this innovation in surgery is just a way to get a patent.

  • @RaymondDay
    @RaymondDay Před 3 měsíci

    Wow that was good I always thought that down to the atom the faster the vibrate the hotter they are and that's what makes heat so when you compress them it slows down the vibration and that makes them colder but how you show it I guess that isn't right. Thanks for your video. Good job.

  • @jonahjerryson4913
    @jonahjerryson4913 Před 3 měsíci

    This was so interesting to know.

  • @ronanclark2129
    @ronanclark2129 Před 3 měsíci

    Great topic

  • @klaudiopeqini3500
    @klaudiopeqini3500 Před 3 měsíci

    Amazing! When some people ask why learning physics!

  • @soul-candy-music
    @soul-candy-music Před 3 měsíci

    jesus, you went ham on the SFX this time.

  • @Loknath009
    @Loknath009 Před 3 měsíci

    Really good explained, you have definitely improved over the years.

  • @shribalajiv2806
    @shribalajiv2806 Před 2 měsíci

    If possible can you try an experiment that I came up with. The things you need are an empty room, a light source and you inside the room. What I have in mind is that , when the light source is turned on you are able to see the walls of the room because they reflect light from the light source. But what if we make the surface of the walls so imperfect that in whatever direction light may hit the wall it does not get reflected to atleast a single point in the room. Which means if you observe the room from that point, even if there is a light source in that room, you would not be able to see anything like the wall and the ceiling in the room.

  • @mtart5595
    @mtart5595 Před 3 měsíci

    What a good video :)

  • @marcfruchtman9473
    @marcfruchtman9473 Před 3 měsíci

    Very Interesting...

  • @giuseppelanna
    @giuseppelanna Před 2 měsíci

    If you can’t experimentally tell the difference between two sentences and both work for predicting things, you can consider whatever you want as “truth”. That is what physical models are. They don’t care about what “is” or not true, they only care about propositions that help us predict things.

  • @godorhell8405
    @godorhell8405 Před 3 měsíci

    I love this channel

  • @mrmotl1
    @mrmotl1 Před 2 měsíci

    Actually all matter has a definite volume, but that volume is always defined in relation to the environment it's in. Now the magnified effect of the environment is going to be greater on gas as opposed to solid, but the pressure in the surrounding environment is always going to be what defines that volume.
    If you change the temperature of any gas, liquid, or solid it will expand or contract accordingly. Thus changing its volume.

  • @mo3azmagdy
    @mo3azmagdy Před 3 měsíci

    Could you try performing the communicating vessels experiment inside the vacuum chamber as what keeps them aligned is the atmospheric pressure so this experiment would prove it and you could try involving other phenomena and properties related to that experiment

  • @lorenwilson8128
    @lorenwilson8128 Před 3 měsíci

    All gasses cool as they expand at lower temperatures and heat when they expand at high temperatures. The temperature where the gas switches from cooling to heating is called its Joule-Thomson inversion temperature. For hydrogen and helium, they are already above their J-T inversion temperature at room temperature so they heat up while all other gasses cool. The JT inversion temperature for nitrogen is 621 K or 348°C.

    • @carultch
      @carultch Před 3 měsíci

      Only if they expand isenthalpically, instead of isentropically.

  • @bowieinc
    @bowieinc Před 3 měsíci +1

    I just had a cryogenic nerve ablation where they shot nitrous at nerves to create ice balls around nerve and ablate outer part of nerve, cutting off pain signal.

  • @sikhswim
    @sikhswim Před 3 měsíci

    You could basically build a high school chemistry and physics curriculum with all of these videos!

  • @Mike__B
    @Mike__B Před 3 měsíci

    Now that was very interesting, I couldn't process why a gas would cool, my only thought was that in some way under certain pressures the gas may have more degrees of freedom, more places to store energy other than through movement (kinetic energy), and by releasing to the air you lower the degrees of freedom hence transferring that energy to kinetic energy.

  • @catman8965
    @catman8965 Před 3 měsíci

    INTERESTING 😊

  • @abhinavabcd
    @abhinavabcd Před 3 měsíci

    Thanks!

  • @calholli
    @calholli Před 3 měsíci

    Physics is so dynamically complex. lol.. I love it

  • @196cupcake
    @196cupcake Před 3 měsíci

    My only note is that it might have been good to mention early on that temperature is a measure of the energy of the molecules giggling around.

  • @bdg77
    @bdg77 Před 3 měsíci

    I learned something!

  • @davidcroft95
    @davidcroft95 Před 3 měsíci

    Great video! My question is: why I have a physics degree and never heard about this effect???

  • @robertheinrich2994
    @robertheinrich2994 Před 3 měsíci

    I wish professors could have explained that part of chemistry (physikalische chemie) in this manner to me back when I studied chemistry 20 years ago.

  • @WerWeiss
    @WerWeiss Před 3 měsíci

    Does the Joule-Thompson Coeficient correlate with the speed of sound in the compressed gas?

  • @galaxybidhan1034
    @galaxybidhan1034 Před 3 měsíci

    Will the system under compression, entropy increases or decreases?
    Entropy is a measurement of randomness. Randomness can be anything among atoms from being different in atom's orientation or spin. Calling out a combination. If this is so then combination depends on temperature provoke by compression and expansion.

  • @corl4147
    @corl4147 Před 3 měsíci

    hey @TheActionLab, is this potential energy also responsible as to why supersonic flow speeds up in a (converging-)diverging nozzle?

  • @markberardi109
    @markberardi109 Před 3 měsíci

    Thanks for a great video...however I have some questions: @4.44 you say the "attractive forces are huge compared to the molecules".....if either nitrogen or helium is under placed under pressure in a confined volume, would it be true to say repulsive forces will exist between the gas molecules, causing them to want to move apart once released? Or put another way: when a gas is pressurized, on average, repulsive forces outweigh whatever attractive forces there might be. My second question: is the heating of helium local (at the throttle point), or does the entire system heat up (the bottle, the throttle and the discharged volume)?

  • @Xylomain
    @Xylomain Před 3 měsíci

    I swear the blue helium in a box with yellow text was full on 3D to me. The blue helium was clearly a distance behind the yellow text. IIRC this is because colors focus slightly different on the back of your eye due to different wavelengths going through the same lense.

  • @rajmaurya6552
    @rajmaurya6552 Před 2 měsíci

    Please make a detailed video on demonstration and explanation of the super cool phenomenon called "Sonoluminescence

  • @pawelkorbel9443
    @pawelkorbel9443 Před 3 měsíci +1

    I think it should have been better explained by radiation of photons/heat than kinetic energy of atoms. Surely those are related phenomena but we or thermometers mostly feel temperature of radiation and not kinetic energy of atoms. Most matter radiates heat through infrared spectrum.
    Anyway, I like your shows, thanks for good work. Cheers

    • @hantrio4327
      @hantrio4327 Před 3 měsíci

      Thermometers are not heated by infrared radiation

    • @pawelkorbel9443
      @pawelkorbel9443 Před 3 měsíci

      No? Put them in direct sunlight. @@hantrio4327

    • @pawelkorbel9443
      @pawelkorbel9443 Před 3 měsíci

      There is another cooling mechanism too, apparat from those 3 gases mentioned. When gas is released from the compressor, the pressure drops, the atoms fly apart, There is few times less of them per cubic centimeter. This will cause temperature drop regardless is they fly a bit slower or not. Temperature of the gas will be lower per cm3, therefore felt by people or thermometer, but temperature/speed of single atoms could be the same as in the compressor.

  • @AKG58Z
    @AKG58Z Před 2 měsíci

    This just made it more complex for me

  • @ericlambert453
    @ericlambert453 Před 2 měsíci

    Bummer this could t have worked for my mom’s case or anyone like here. Primary peritoneal carcinoma. Crude (very) explanation: the cancer took over the liquid around her ovaries so it was like trying to target liquid. It’s definitely a layman’s term expiration of the dumbed down version that was given to me but y get what y get. Hopefully this is extremely effective and safe and starts to become used commonly

  • @galaxybidhan1034
    @galaxybidhan1034 Před 3 měsíci

    Can temperature change be defined by flow of gas from the high pressure to low presssure. Applying fluid mechanics. Where pressure is great velocity is low. With this prespective, when molecules from valve opens and starts to spread. So, pressure is low outside and high inside the valve,shouldn't the velocity of any gas increase after opening the valve?

  • @TheIMGmedia
    @TheIMGmedia Před 3 měsíci

    Yeaaaa… this may have been the least fascinating video I’ve seen from this channel. Which is STILL interesting.

  • @dahmc59
    @dahmc59 Před 2 měsíci

    awesome