This video prioritizes the "vibe" of learning over scientific rigor, turning complex physics into mere background noise for relaxation. It perfectly captures a modern trend where the aesthetic of knowledge is valued more than the actual mastery of the subject.
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ASMR I Tried Explaining PhysicsAjouté :
Hello everyone. Hello. Hello. Welcome back to another ASMR video of mine. This one is very impromptu, I think is the word. The lighting is terrible.
I'm trying to use my lamb to the best, but I'm in a weird position because I my setup won't work. I'm too zoomed in on my normal setup. But someone have two comments. One for both donations and then donations super chats something like that. Um physics ASMR today so I have to upload it today because I saw it after which is the day of Okay. So I have a few basic things that I want to go over. I want to preface I have never done physics in my life. I have watched the Oen movie three times.
So I've seen Einstein. Okay. I have I am terrible at math as well. So, I didn't even do math in my last year of school. I was that bad at it. So, okay. I have markers and markers and I have some notes. They're going to be on my phone. Okay. Don't come at me. I'm not a physicist. Okay. But some of the things I wanted to go over, I have some answers to. So, I'm not I'm guessing I'm not going to use it in equations because I don't know how to put it into equations, but I think just talking about some of the ideas.
So, this is obviously like not in my normal video schedule.
It's not it's not going to be like a proper 40inut go through some stuff. Do I have to write backwards?
You guys can see that right? Oh my god.
Do I have to run backwards?
Oh my god, I have to run backwards.
Okay, I can I can totally write backwards.
Okay, let's let's get into it. Okay, so the first thing we have to discuss is E= MC² which was made equals and I'm running backwards, dude.
My hand.
How do I do a do backwards? How do I do a do backwards = m which is which is every two seconds which is the most famous equation in physics. Okay, I have some notes. I have some notes here.
I wrote that way just mass time the speed of light.
So energy So energy equals mass times symbol speed.
Okay, that is E= MC².
The main idea is that mass and energy are connected. Okay, even tiny mass of matter can contain huge amounts of energy. And I've written a note here saying draw an atom. I don't know what an atom looks like. Just going to do a circle.
Okay.
Nucleus in there probably, right?
I guess just remember matter and energy are related. And that's all I have to say. I'm not I mean I can't do an equation on I don't know how to do it.
So, we're going to move on. Let's clean it off here.
It's so warm in here. I just hit the gym as well. I saw the comment at the gym.
Okay, we have our segment two.
I'm going to I know that S is written wrong equation. Holy my handwriting is bad, guys. Okay, equation.
This is a bit more of a inepth one.
Okay, so I have a few notes here.
Wait, where's the equation MC?
Which is Q= M C= MC²? Is it Q= MC?
this triangle T. Okay, I'm going to go down even further. even further. So Q it means heat energy.
Q= heat energy. Okay, making sense so far, guys.
I'm learning this for the first time.
And then the M, the M stands for mass.
I don't even know what this is.
M equals mass.
Maybe I can s I could try to do an equation.
I can't figure out an equation. M equals mass and C C.
Go down here. Go down here.
is material.
I'm just going to write Material material constant.
M is material constant. So Q is heat energy. M is material constant.
M and C are material constant.
M is mass. M is mass. C is material constant. Okay. Okay.
And delta t just means the change in temperature. So something easy we can do with this.
Didn't even know that thing was called a delta. Something easy we can do with this is draw this.
This is a thermometer. Okay.
That is what it is. So it explains how much heat energy is needed to change temperature. That's what the equation is.
Okay, guys. We're moving on. We are very, you know, we're learning right now.
We're learning. I don't know how many subjects we have to do, but okay. Our next segment is C CC R that is our new segment and CCR is conduction, convection and radiation.
This one is very very simple. I use it all the time and you do too. Okay, don't worry about it. It'll make sense.
Okay.
Okay. We have I should write that I should write that down.
I should write that down. Okay, conduction.
Convection.
Convection.
Convection running backwards. Look at that.
Convection and radiation.
I'm trying to remember the from how quantum mechanics exist, but it can impossible, but it does. I don't know.
Okay, I didn't just put marker on my t-shirt.
Okay, conduction. Let's start off with conduction. Okay, conduction first. Conduction is Let's use a very simple diagram here.
What is this? I don't even know what I just read, but okay. This is a frying pan.
That is the heat. You know, you got a heat below it. Campfire, gas cooker, whatever. Conduction is the heat from that going to that that conducts the heat. Yeah. Conducting the heat. And when the goes onto the pan.
The food gets hot.
The frying pan heat conducts heat from the frying pan to the food and it burns and cooks. That is conduction. Heat moves through contact.
That is what conduction is. Okay. Okay.
Simple.
Okay. Convection.
Convection is let's let's use this will be This will be a lake. This is a lake.
This is hot air.
This is cold air.
Hot air moves up and cold air. Cold air.
Cold water moves down. Hot air. Hot water moves up. Cold water moves down.
Think of boiling water. Boiling water rises. Okay.
fluid sinks in a lake such as that convection is the moving of heat. Okay, boiling water, warm air is warmer than it is. It's colder down below like that.
Convection very simple as well.
Radiation is very simple for us.
What is that? One guess. One guess. No, it's not a saw blade. It's the sun.
That's right. Sun is so radiation is sun doesn't need sun or this. It doesn't need to touch us directly. The sun's heat moves through waves and those waves are radiation waves of heat traveling through waves. how it reaches us. Conduction is touching when something touches. Convection is moving and radiation is waves.
Okay, it's going around.
Okay, what's our last one? Last one.
Second last one. They said EDC, but I didn't really know what else to do. I'll try to do them all, but maybe I'll do some more. The last one that I have not to compare is circuits.
So, what we're going to do, this is the one I least know about.
Probably one diagram that battery moving shy diagram, but we're here.
Wow. I hope the lamp hasn't been in there the whole time. It's whatever.
Okay, so voltage, current, and resistance.
You can think of electricity like water flowing through pipes. Voltage pushes current flows like water and resistance slows things down.
Bals equals resistance but I don't know which one's resistance but whatever we're doing this as a bulb energy moves through wires from battery hits the bulb the bulb has some resistance and keeps back around all the time.
That's all I have not. Okay, let me get a few more. Okay, I have five more that we're going to do. The first one. Oh, yeah. What a classic.
We've also swapped to a red, which I realized I shouldn't be doing. The black is there. Okay, we're gonna swap back to black. Okay, give me a second. Give me one second. Give me one second. Okay, back to back. Back to black. Newton's Newton's law motion laws of motion.
If I had um some bands here, I would flex them and show you guys the real law of motion.
Newton's law of motion. So basically, he has three laws, right? I'm not going to write it down. It's going to take forever. But first law is objects keep doing what they are doing. Okay? And second law is force changes motion. And third law is every action has an equal opposite reaction. So what does this mean? Let's use f= m a.
So force equals mass.
Force equals mass times acceleration. Okay. Times acceleration or force.
More acceleration.
Okay.
Like a box. Like you pushing a box.
You're putting force onto that box and that equals mass moving and then acceleration. Same as a car. Something like that. Okay.
Next we have an incredibly basic incredibly basic one again. Okay.
We have gravity which we all know and love.
Gravity there is a there is an equation for gravity actually f G. Okay. So, this is gravity is the force pulling objects down towards Earth. We all know that gravity is gravity such as an apple's head.
That is a force of gravity.
Mass gravity equals down. I don't know what what to go into that. That's pretty basic. Okay. And then third last one is again I don't know if I should be doing equations with this.
Waves of sound. Waves and sound.
And I messed up this. That's an S. Okay.
Waves and sand.
So drawing a wave shape. Okay, I know talk about wavelength.
Wavelength sound travels in waves. You know me speaking into this microphone that is a wave.
Anything I say that's a sound wave. Okay.
Different frequencies, different pitches, different sounds made all different pitches and sounds.
That's all I have to say about this guys. I This is all I had very extensive. I didn't have much time. Of course, this is making it on the day.
Maybe we can run through a physics equation or two.
Okay. And then the second one is momentum.
That is like terrible momentum. Okay. Momentum.
Trust me. That's correctly. Momentum is motion. Motion with mass and mass times velocity.
Okay. such as a a bowling ball moving down towards the pins. Okay, that is momentum motion with mass. Okay, heavier equals faster momentum usually such as rolling car down a hill usually weighs about one to two tons. So that will gain more acceleration and more momentum because of the mass. But it's hard to get going.
Our last one is last one is energy types. Now I did this one in school.
These are going crazy.
I don't know why I do energy types. I've never written so bad in my life. We have kinetic energy.
We're going to go just what is that?
Just K for kinetic and P for potential energy. Okay. So, we're using K equals God, I remember doing this.
Okay.
So roller coaster, let's just part of this. Let's explain the basics.
So say roller coaster at the top of the roller coaster is potential energy because it's not moving. But if it moves kinetic energy because nothing is like pushing it, you know what I mean? When it's falling down, electricity is like making it go. It's gravity. So that's just kinetic energy.
You probably explained that wrong.
Everything is potential energy to an extent and when it becomes kinetic energy. Okay, that is our last one we have to talk about. Wow. I have no idea what I'm talking about. Okay, guys. So, let me see if I can find an equation. If not, there'll be an outro here. Okay, I'm not going to lie. I tried to look up a bunch of equations and oh my god, these are just nothing I want to do. They're just so intense. Um, not intense, but there's just so much more writing and my camera's running out of battery and I need to edit this video and get it uploaded because I'm already really late. So, I won't be doing any I hope this video has helped you all actually before the test requested but I hope a lot of you other people I hope a lot of you other people had a laugh out of it and had a relax out of it. Definitely a video out of the ordinary but I hope you enjoyed and I'll see you all next time.
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