Here some picture of what most people associatewhen they think of chemistry. They think of scientistsworking on a bench with the different vialsof different chemicals. They might think of a mad scientist. Some of them boiling and changing colors. They might associate chemistrywith chemical equations. Thinking about how differentthings will react together to form other things. They might think about modelsof the different molecules that can be depicted different ways. They might associate it withthe periodic table of elements. And all of these things area big part of chemistry. But I want you to do in this video is appreciate what at itsessence chemistry is all about. And chemistry is one of the sciences that really just helps us understand and make models and makepredictions about our reality. And even something like theperiodic table of elements, which you'll see at the frontof any chemistry classroom, you take it for granted. But this is the product of, frankly, thousands of years of human beings trying to get to an understanding of all of the differentcomplexity in the world. If you look at the world around us, and it doesn't even have to be our planet, it could be the universe around us, you see all these different substances that seem to be different in certain ways. You see things likefire and rock and water. Even in the planets, you see meteorological patterns. In life, you see all of this complexity and all of these different things and it looks like there'sjust like a infinite spectrum of differentness out of there. Of different substances. Even in things like our human brain. The complexity and theelectrochemical interactions. And you could imagine as a species, this is kind of overwhelming. How do you make the sense of all of this? And it was not an easy path, but over thousands of years, we did start to make sense of it. And why it's very lucky for all of us to be born when we are now or to be around when we are now. To be able to learnchemistry where we are now is that we get the answer. And it's a partial answer,which is also exciting, cause we don't want the full answer. But it's a partial answerthat takes us a long way. We realize that theperiodic table of elements, that all of this complexitythat we're seeing before, that at the end of the day, things are made of basic building blocks. Kind of you could imagine the legos that really make up everything. And there aren't aninfinite number of legos. There's actually a finite number of them. We're discovering more all of the time, well not all of the time, now new elements are notdiscovered that frequently, but there's a few of these elements that are disproportionately showing up in a lot of what we see here. These things that seem so different. Well a lot of this is differentcompositions of elements like carbon and oxygen and hydrogen. And even the elementsthemselves are made of things like protons and electrons and neutrons that are just rearranged in different ways to give us these elements that have all of thesedifferent properties. So when you think about chemistry, yes, it might visuallylook something like this. These are obviously much older pictures. But at its essence, it'show do we create models and understand the models that describe a lot of the complexityin the universe around us? And just to put chemistry in, I guess you could say, in context with some of the other sciences, many people would say at the purest level, you would have mathematics. That math, you're studying ideas, which could even be independent, you're seeing logical ideasthat could be even independent of anything that you've everobserved or experienced. And a lot of folks thatsay if we ever communicate with another intelligent species that could be completelydifferent than us, math might be that common language. Because even if we perceivethe world differently and think differently in certain ways, math might be that common language. But on top of math, we start to say, well how is our realityactually structured? At the most basic level, what are the constituents of matter and what are the mathematical properties that describe how they react together? And then, or interact with each other? Then you go one level above that, you get to the topic of thisvideo, which is chemistry. Which is very closely related to physics. When we talk aboutthese chemical equations and we create these molecular structures, the interactions between these atoms, these are quantum mechanical interactions which we do not fully understandat the deepest level yet. But with chemistry, wecan start to make use of the math and they physicsto start to think about how all of these different building blocks can interact to explain allsorts of different phenomena. This chemical equation you see right here, this is combustion. This is hydrogen combusting with oxygen to produce a lot of energy. To produce energy. When we imagine combustion,we think of fire. But what even is fire atits most fundamental level? How do we get, why do we perceive this thing here? And chemistry is super important because on top of that, we build biology. We build biology. And as you'll see as youstudy all of these things, there's points where thesethings start to bleed together. But the biology in, say, a human being, or really in any species, it's based on molecular interactions. Interactions betweenmolecules, between atoms, which, at the end of theday, is all about chemistry. As I speak, the only reasonwhy I'm able to speak is because of really, hard to imagine the numberof chemical interactions happening in me right now to create this soundness. To create this thing that thinks it exists that wants to make avideo about how awesome and amazing chemistry is. And then from biology, you can build out onall of everything else. So sciences like psychologyand economics, which of course, these things also leveragemath and other things. But this gives you kind of a sense of how we build up and how weexplain the reality around us. And not one of these is moreimportant than the other. These are all studyingincredibly fascinating things that as humans beingsfirst became thoughtful about their environment, said, 'Gee, why are we here? 'What is this place? 'Why do we exist? 'How do we exist?' And chemistry builds models for us to understand interactionsat a scale and a speed that we can't directly observe, but nonetheless, we can tostart to make predictions. So that's what's really cool about this. When you study chemistry, you should not view thisas some type of a chore that the school systemis forcing you through. There are people who would'vedone anything 100 years ago to get the answers that arein your chemistry book today or that you can learn fromyour chemistry teacher or that you can learnfrom a Khan Academy video. There are people in theworld in the past and today who'd do anything to beable to understand deeply what this is. That they consider it a privilege to be able to learn at this level. And then to think aboutwhere this could go because none of these fields are complete. We have very partial knowledgeof all of these fields. Arguably, there's an infinitemore that we could learn relative to what we know. But what's exciting is thatwe have such a strong start. We're starting to make sense of it. To really describeeverything in our reality.
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Experiments In Physical Chemistry Pdf
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