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EDUCATION

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00:00:00foreign
00:00:22foreign
00:00:28If you are a proton, the wavelength is equal to your
00:00:37particle and battery.
00:00:39That is the
00:00:56को अब है अब है कि� 부 i इसको देखने के लिए हमें
00:01:12foreign
00:01:26foreign
00:01:42Lambda to be right here.
00:01:44Here we go.
00:01:44Here we go.
00:01:46Here we go.
00:01:47H upon lambda E upon V.
00:01:50Here we go.
00:01:51H upon lambda E upon V.
00:01:53Half M.
00:01:54H upon lambda E into V square.
00:01:58If we go.
00:02:00Kinetic energy of electron upon energy of photon.
00:02:04Half M.
00:02:05M value H upon lambda E into V square.
00:02:10V into V square.
00:02:12अचा ये तो cancel हो जाता वैसे.
00:02:14Upon में.
00:02:15H C by lambda.
00:02:17Question में बोला है.
00:02:19तो इसका D by और इसका normal wavelength बराबर है.
00:02:23तो बराबर है तो ये divide divide में कट जाएंगे.
00:02:26अचा ये H और ये H V.
00:02:28कट जाएंगे.
00:02:29क्या बचा V upon 2 upon C.
00:02:31तो ये वाली value हा जाएगी V by 2 C.
00:02:34अचा भी होता है जब दोनों की wavelength save हो.
00:02:41क्या जाएंगे.
00:02:42क्या जाएंगे.
00:02:43क्या जाएंगे.
00:02:44क्या जाएंगे.
00:02:45क्या जाएंगे.
00:02:46क्या जाएंगे.
00:02:47क्या जाएंगे.
00:02:48क्या जाएंगे.
00:02:49क्या जाएंगे.
00:02:50क्या जाएंगे.
00:02:51क्या जाएंगे.
00:02:52क्या जाएंगे.
00:02:53क्या जाएंगे.
00:06:50Next
00:07:08cool digestion is
00:07:20find out relation between
00:07:31de Broglie wavelength of electron
00:07:41find out relation between
00:07:45de Broglie wavelength of electron
00:07:48and wavelength of photon
00:07:52having same kinetic energy
00:08:01if kinetic energy same
00:08:07then wavelength of
00:08:09relation
00:08:10from the previous
00:08:11wavelength same
00:08:12then energies
00:08:13relation
00:08:14here
00:08:15I have two times
00:08:30I don't know.
00:08:41I don't know.
00:08:43What is it?
00:08:45yeah
00:08:51yeah photon ke liye
00:08:54kora photon ke liye energy kaisa nikal time at c by lambda ye kis ka hai photon ka ya
00:09:02yek ye energy joai wu energy kinetic energy ke berabar electron ke liye bat karer electron ke
00:09:09to the particle and the particle
00:09:15to the other and the other is the energy
00:09:19to the other so yeah I say I made the
00:09:23wavelength formula based on my energy
00:09:27wallah and there are 2m kinetic energy
00:09:31yeah I really thought that I think I
00:09:35This is the kinetic energy, similar to photon energy.
00:09:39This is the electron kinetic energy, but according to the question, this is the photon.
00:09:46This is h upon my under root of 2m.
00:09:50This is hc upon my lambda of photon.
00:09:54If I solve this here, this will be square.
00:09:59Here is h square, here is 2m hc, and here is lambda photon.
00:10:08So, here is 1 to 1.
00:10:10So, this is the value.
00:10:11If I compare it to the relation, then I will compare it.
00:10:14I will compare it to the relation.
00:10:16I will compare it to the photon wave length.
00:10:19The electron wave length is square.
00:10:22If this is the answer, it will be the answer.
00:10:25The proportionality is the value.
00:10:27This is the value I am going to give the wave length to the beiden page.
00:10:30In relation to the researchers, this water's decompressed.
00:10:32Forget the bouncy balance.
00:10:33Now, the equation is the same.
00:10:34If the balance is the same, it's in the region.
00:10:36then the energy ratio is related.
00:10:38Okay.
00:11:09is not possible because the potential needs to be a system so it's kinetic energy is total.
00:11:20Next, no, heading is the explanation of bore model.
00:11:31explanation of bore model
00:11:35explanation of bore model
00:11:49I can't listen to me
00:11:51I'm a
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00:13:50time just say again electron first orbit where the n key value one so angular momentum edge upon
00:13:56two pi on a chitish value patay is a very electron fourth orbit room rat so select on
00:14:03angular momentum of fourth orbit like who may remain a kelly a for edge upon two pi on a
00:14:09chaggar for edge upon two pi no one a yannick you will act on fourth orbit clip and aini
00:14:13one go mean is that so you choose to stay with a guy who's up set up us who want to take a time
00:14:18structure only about to go up a leak here or model value now yet to modern physics apart
00:14:23better it is classical physics prani wali physics and this is my time to be aware of it's a
00:14:28play with a guy that can't be a classical physics of the battle to talk about it it's up to
00:14:33what it is so long ago the board model of the battle of the battle is a battle in the battle
00:14:38foreign
00:15:08I will be close part of the wave.
00:15:10If you are going to the electron,
00:15:12then the electron will go there.
00:15:14If I go there,
00:15:16then the electron will go there.
00:15:18But the electron is going through the close path,
00:15:20then the wave will go close path.
00:15:22Then the classical physics,
00:15:24in class 11,
00:15:26stationary wave.
00:15:28Is it the name?
00:15:30Stationary wave,
00:15:32which is a fixed reason,
00:15:34which is light.
00:15:36The sun and the light is here.
00:15:38The sound, which I am saying,
00:15:40I don't know where to go.
00:15:42The intensity of the wave is low,
00:15:44but it cannot stop.
00:15:46The sound and light
00:15:50is a progressive wave.
00:15:56Traveling wave,
00:15:58in class 11,
00:16:00traveling, progressive wave,
00:16:02they cannot stop.
00:16:04Withoutcca helps.
00:16:10When the number was on,
00:16:12there was a Todos,
00:16:14the balloon will be…
00:16:16the waves can be made,
00:16:18it will could change the wave happened.
00:16:20That means,
00:16:22the traction Nossa as well as possibile.
00:16:24It will emerge from the other way,
00:16:26the wave will be запarty,
00:16:28therefore the two transitions will be
00:16:30It is called stationary wave, non-traveling.
00:16:34In the guitar, it is plugged into two points.
00:16:38In the guitar, there will be a wave.
00:16:42What is the fixed reason?
00:16:45It is called stationary wave,
00:16:48stationary or non-traveling.
00:16:51It will not go into the fixed reason.
00:16:54When the electron is here,
00:16:56we know that the wave is in a fixed reason.
00:17:02What we call stationary wave.
00:17:05The electron is in a stationary wave.
00:17:09The electron is in a fixed reason.
00:17:12Now, let's see.
00:17:15The electron is in a debug.
00:17:17How do you explain how to prove or explain?
00:17:21The electron is in an orbit.
00:17:23What does the board say?
00:17:25The electron is in a woods,
00:17:28There is an angular momentum
00:17:34.
00:17:35electron in orbit
00:17:37electron in orbit
00:17:39electron in orbit
00:17:41the perimeter
00:17:43perimeter
00:17:45perimeter
00:17:47the perimeter
00:17:492 pi r
00:17:51the
00:17:53electron
00:17:55the wavelength
00:17:57end times
00:17:59same thing
00:18:01same
00:18:03the next explanation
00:18:05electron in orbit
00:18:07the perimeter
00:18:09if
00:18:11the
00:18:13the
00:18:15the
00:18:17the
00:18:19the
00:18:21the
00:18:23the
00:18:25the
00:18:27the
00:18:29the
00:18:31the
00:18:33the
00:18:35the
00:18:37the
00:18:39the
00:18:41the
00:18:43the
00:18:45the
00:18:47the
00:18:49the
00:18:51the
00:18:53the
00:18:55the
00:18:57the
00:18:59the
00:19:01the
00:19:03the
00:19:05the
00:19:07the
00:19:09the
00:19:11the
00:19:13the
00:19:15the
00:19:17the
00:19:19the
00:19:21the
00:19:23the
00:19:25the
00:19:27the
00:19:29the
00:19:31the
00:19:33the
00:19:35the
00:19:37the
00:19:39the
00:19:41the
00:19:58the
00:19:59the
00:20:00according to
00:20:01electron moving around nuclei in an atom
00:20:31form stationary wave
00:20:42the stationary wave
00:20:45the reason is that the string
00:20:49next point according to him
00:20:54according to him
00:21:01Electrons moves in those orbit, electrons moves in those orbit for which perimeter of
00:21:18orbit, perimeter of orbit is equal to integer multiple of integer multiple of d-brow wavelength
00:21:40of electron in that orbit is equal to integer multiple of d-brow wavelength in that orbit.
00:21:55Yes, this is what I have written in this orbit.
00:22:07Yes, this is what I have written in this orbit.
00:22:17Yes, this is what I have written in this orbit.
00:22:40Yep.
00:22:41I'm sorry.
00:22:42I'm sorry.
00:22:43I can't say that.
00:22:44I mean, can't I?
00:22:47That's good.
00:22:50I'm sorry.
00:22:53I'll just have a question, Boar's Model explained.
00:23:02Let's see.
00:23:05Okay, electron, if they are first orbit, if electron is first orbit, then see, if electron is first orbit, then see, if electron is first orbit, then the perimeter is 2 pi r, n times of electron, so this is 2 pi r, r ki value radius, n ki value 1, and this is 1, and this is 1, and this is 2 pi r.
00:23:26Okay, if it is second orbit, then second orbit, then 2 pi r into 2 times of deep ray wave length, then deep ray wave length is still out, and I will tell you that I will tell you that the chemistry might not be explained, so this is the chemistry.
00:23:47We will see a diagram in some cases.
00:24:03There is a nucleus and a electron.
00:24:07If it is a electron, it is a wave.
00:24:09Now, what is the diagram?
00:24:11Let's listen to this diagram.
00:24:13NCRT has been out here.
00:24:15We can see this.
00:24:23You can see this.
00:24:24Here is.
00:24:33We can see this,
00:24:35yeah
00:24:38model can't be
00:24:40hypothesis like it
00:24:42is not yet
00:24:44I want to be
00:24:46here I say start
00:24:47okay
00:24:49or
00:24:50yeah
00:24:51I can't be okay and
00:24:52yeah
00:24:53yeah
00:24:54I get it
00:24:55I'm
00:24:56I'm
00:24:57I'm
00:24:58I'm
00:24:59I'm
00:25:00I'm
00:25:01I'm
00:25:02I'm
00:25:03lambda yag wavelength at a free asset Allah yeh kithrawa do lambda see a column
00:25:11oh yeah I tell you I say I take a column top 30 meter to buy our kiss kit
00:25:19relevant ever ever are a year third orbit diagram is put it
00:25:26.
00:25:29.
00:25:33.
00:25:38.
00:25:43.
00:25:45.
00:25:46.
00:25:47.
00:25:48.
00:25:50.
00:25:55.
00:25:56to see if we can calculate the lambda into the perimeter number
00:26:01and the orbit number is known as the number.
00:26:15Can you see the left?
00:26:18I'm going to tell you what I'm saying.
00:26:20I'm going to tell you what I'm saying.
00:26:48What is it?
00:27:18What is it?
00:27:48What is it?
00:28:18What is it?
00:28:48What is it?
00:29:18What is it?
00:29:20What is it?
00:29:22What is it?
00:29:32What is it?
00:29:34What is it?
00:29:36What is it?
00:29:38What is it?
00:29:40What is it?
00:29:42What is it?
00:29:44What is it?
00:29:48What is it?
00:29:50What is it?
00:29:52What is it?
00:29:54What is it?
00:29:58What is it?
00:30:00What is it?
00:30:02What is it?
00:30:04What is it?
00:30:06What is it?
00:30:08What is it?
00:30:10What is it?
00:30:12What is it?
00:30:14What is it?
00:30:16What is it?
00:30:18What is it?
00:30:20What is it?
00:30:30What is it?
00:30:31What is it?
00:30:32What is it?
00:30:34parameter parameter parameter parameter key value to create two by are you
00:30:39push a chase key value kiske beraberota and lambda the pair of answer number
00:30:43get it third to answer that I got we bought basic cities belly second
00:30:49next question
00:30:53lambda divert diana
00:30:56three answer three lambda if deeper wavelength of electron in that orbit of hydrogen atom
00:31:12is lambda
00:31:16next question
00:31:21find out de Broglie wavelength of electron in first excited state of hydrogen atom
00:31:49find out de Broglie wavelength of electron in first excited state of hydrogen atom
00:31:59de Broglie
00:32:01de Broglie
00:32:03electron
00:32:05two questions
00:32:07two
00:32:09two
00:32:11three
00:32:13two
00:32:15three
00:32:17two
00:32:19three
00:32:20three
00:32:21three
00:32:22three
00:32:23three
00:32:24three
00:32:26three
00:32:27three
00:32:28two
00:32:29three
00:32:30three
00:32:31two
00:32:32three
00:32:33three
00:32:35two
00:32:37three
00:32:39foreign
00:32:46foreign
00:32:51foreign
00:32:56foreign
00:33:03foreign
00:33:08This is the two difference.
00:33:09you can add a different answer.
00:33:11you can add a different answer.
00:33:13They will not get into it.
00:33:13What did we say?
00:33:15That's true.
00:33:16It's true.
00:33:17This is the orbit of a gorilla.
00:33:20How is the body?
00:33:21We know that the deep ray.
00:33:23The deep ray is the only hypothesis.
00:33:27What is the value of a gorilla?
00:33:29Which one is the first time?
00:33:31This is the right wavelength.
00:33:35If we have the r hypo to the right and the right,
00:33:38R value, we know that R value is 0.529.53.
00:33:47N square by Z action.
00:33:51So, which is hydrogen?
00:33:532.
00:33:552.
00:33:562.
00:33:572.
00:33:584.
00:33:592.
00:34:004.
00:34:0112.
00:34:0212.
00:34:0312.
00:34:0412.
00:34:0512.
00:34:0612.
00:34:0712.
00:34:0812.
00:34:0912.
00:34:1012.
00:34:1112.
00:34:1212.
00:34:1312.
00:34:1412.
00:34:1512.
00:34:1612.
00:34:1712.
00:34:1812.
00:34:1912.
00:34:2012.
00:34:2112.
00:34:2212.
00:34:2312.
00:34:2412.
00:34:2512.
00:34:2612.
00:34:2712.
00:34:2812.
00:34:2912.
00:34:3012.
00:34:3112.
00:34:3212.
00:34:3312.
00:34:3412.
00:34:3512.
00:34:3612.
00:35:07If the de-brow wavelength of electron, if de-brow wavelength of electron,
00:35:16if the electron is the same, the electron,
00:35:23if the electron is the same, the electron is the same.
00:35:29in the first bore orbit
00:35:40in first bore orbit
00:35:47is lambda
00:35:52then find out
00:35:58minimum radial distance between electrons in first and second orbit
00:36:20in first and second orbit
00:36:27in first and third orbit
00:36:34in first and third orbit
00:36:38in first and third orbit
00:36:42in first and third orbit
00:36:49in first and third orbit
00:36:53in first and third orbit
00:36:57in first and third orbit
00:37:04in first and third orbit
00:37:08in first and third orbit
00:37:11in first and third orbit
00:37:15in first and third orbit
00:37:22in first and third orbit
00:37:26in first and third orbit
00:37:28in first and third orbit
00:37:29in first and third orbit
00:37:31in first and third orbit
00:37:35in first and third orbit
00:37:36in first and third orbit
00:37:38in first and third orbit
00:37:42in first and third orbit
00:37:43in first and third orbit
00:37:45in first and third orbit
00:37:49maximum minimum minimum to be honest of your
00:37:52suppose pass me oh yeah well inica
00:37:54the guy here only value to x
00:37:56the carly hey cats key value second
00:37:59value radius message pass value radius
00:38:01ko minus cardo or am i pata
00:38:04are you deep away wala jo part
00:38:05hey it to buy are equals to and lambda
00:38:09so yahaan say i will you get a day and
00:38:12lambda upon make 2 by so yahaan say
00:38:15iso like a liar and to lambda upon me
00:38:18two pi.
00:38:19For the first part,
00:38:20one lambda upon
00:38:21two pi.
00:38:23So, the answer is
00:38:23lambda.
00:38:23So, lambda upon
00:38:25two pi.
00:38:48To know
00:38:51orbit near
00:38:52it's not
00:38:52maybe
00:38:54we have to say
00:38:54the
00:38:56first
00:38:56question,
00:38:57where
00:38:58we have a
00:38:59second
00:38:59problem.
00:39:02What
00:39:07the
00:39:09is
00:39:11the
00:39:12lambda
00:39:13can
00:39:15make
00:39:15the
00:39:15truth
00:39:15say
00:39:16you
00:39:17I will be able to take it.
00:39:20The speed is so small.
00:39:27When you take the amount of data, then you can reduce the amount of data.
00:39:36If it works to group the data, then you can make it two times.
00:39:44so
00:39:46lambda value edge upon me mv
00:39:48if this is half
00:39:50then
00:39:52lambda two times
00:39:54so
00:39:56so
00:39:58here
00:40:00first
00:40:02this
00:40:04wavelength
00:40:062
00:40:08lambda
00:40:102
00:40:12lambda
00:40:14wavelength
00:40:16first
00:40:18orbit
00:40:20is
00:40:22d
00:40:24the
00:40:26wavelength
00:40:28wavelength
00:40:30wavelength
00:40:32wavelength
00:40:34wavelength
00:40:36wavelength
00:40:38wavelength
00:40:39wavelength
00:40:41this
00:40:43wavelength
00:40:45this
00:40:472
00:40:49lambda
00:40:514
00:40:53lambda
00:40:552
00:40:57lambda
00:40:592
00:41:01lambda
00:41:032
00:41:051
00:41:071
00:41:091
00:41:111
00:41:132
00:41:151
00:41:172
00:41:191
00:41:211
00:41:232
00:41:252
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00:41:291
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00:41:331
00:41:351
00:41:371
00:41:392
00:41:411
00:41:432
00:41:451
00:41:472
00:41:491
00:41:512
00:41:532
00:41:551
00:41:572
00:41:591
00:42:012
00:42:031
00:42:052
00:42:071
00:42:092
00:42:111
00:42:132
00:42:151
00:42:172
00:42:192
00:42:211
00:42:232
00:42:251
00:42:272
00:42:291
00:42:312
00:42:331
00:42:352
00:42:371
00:42:392
00:42:411
00:42:432
00:42:451
00:42:472
00:42:491
00:42:512
00:42:531
00:42:552
00:42:572
00:42:591
00:43:012
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00:43:052
00:43:072
00:43:091
00:43:112
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00:43:152
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00:43:192
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00:57:25the formula h upon pv is right here and here the value is the same, if you want to write it,
00:57:31let me write it.
00:57:40This is the matter waves, it is the matter waves.
00:57:50The matter is where it is.
00:57:55?
00:58:11?
00:58:17?
00:58:20?
00:58:22?
00:58:24?
00:58:25?
00:58:25?
00:58:25?
00:58:25?
00:58:25?
00:58:25ydsc experiment
00:58:40ydsc electron
00:58:43ydsc
00:58:52ydsc
00:59:22ydsc
00:59:25ydsc
00:59:26ydsc
00:59:27ydsc
00:59:28ydsc
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00:59:35ydsc
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00:59:38ydsc
00:59:39ydsc
00:59:40ydsc
00:59:41ydsc
00:59:42ydsc
00:59:43ydsc
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00:59:45ydsc
00:59:46ydsc
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00:59:55ydsc
00:59:56ydsc
00:59:57Mr. Zb.
01:00:07Mr. Zb.
01:00:08Mr. Zb Dunktandari
01:00:10चलने के तरीके हैं
01:00:11बईया, कुछ बेकुफorm
01:00:13बन जाते हैं, बच्चे, कुछ नहीं बन पाते हैं,
01:00:15नहीं नहीं, सारे बन जाते हैं
01:00:2542 म से
01:00:26Where are we?
01:00:56Where are we?
01:01:26Where are we?
01:01:56Where are we?
01:01:58Where are we?
01:02:02Where are we?
01:02:04Where are we?
01:02:06Where are we?
01:02:08Where are we?
01:02:10Where are we?
01:02:14Where are we?
01:02:16Where are we?
01:02:18Where are we?
01:02:20Where are we?
01:02:22Where are we?
01:02:24Where are we?
01:02:26Where are we?
01:02:28Where are we?
01:02:30Where are we?
01:02:32Where are we?
01:02:34Where are we?
01:02:36Where are we?
01:02:38Where are we?
01:02:40Where are we?
01:02:42Where are we?
01:02:44Where are we?
01:02:46Where are we?
01:02:48Where are we?
01:02:50Where are we?
01:02:52Where are we?
01:02:54Where are we?
01:02:56Where are we?
01:02:58Where are we?
01:03:00Where are we?
01:03:02Where are we?
01:03:04Where are we?
01:03:06Where are we?
01:03:08Where are we?
01:03:10Where are we?
01:03:12So, it's a very good teacher.
01:03:14Teacher, you can't get a superstar.
01:03:17It's a very good teacher.
01:03:20So, let's go.
01:03:25So, the teacher has become an influence.
01:03:29So, teachers have become an influence.
01:03:32They say,
01:03:34what are they doing?
01:03:36Seriously, I'm saying that.
01:03:38foreign
01:04:08I had a new child never taught me, never taught me, never taught me, because he taught me and taught me.
01:04:17Then three months later, he taught me. Three months later, he taught me.
01:04:21If you can see online, you can see some views, rankings, etc.
01:04:27Now, I have no class for 3 years for 3 years.
01:04:31But, when I was taught and without promotion,
01:04:35there are some teachers who have 15-15 people.
01:04:44If they come in, they have 3-3 cameras with me.
01:04:49They say, whatever I do, I need to record all of them.
01:04:53Then, I will tell you how to do this at night, and then make a reel.
01:04:58For everyone.
01:05:01For everyone.
01:05:04For everyone.
01:05:05For everyone.
01:05:06For everyone.
01:05:07For everyone.
01:05:09For everyone.
01:05:10For everyone.
01:05:11For everyone.
01:05:12For everyone.
01:05:13For everyone.
01:05:14For everyone.
01:05:15For everyone.
01:05:16For everyone.
01:05:17For everyone.
01:05:18For everyone.
01:05:19For everyone.
01:05:20For everyone.
01:05:21For everyone.
01:05:22For everyone.
01:05:23For everyone.
01:05:24For everyone.
01:05:25For everyone.
01:05:26For everyone.
01:05:27For everyone.
01:05:28For everyone.
01:05:29For everyone.
01:05:30For everyone.
01:05:31For everyone.
01:05:32For everyone.
01:05:33For everyone.
01:05:34For everyone.
01:05:35For everyone.
01:05:36For everyone.
01:05:37For everyone.
01:05:38For everyone.
01:05:39For everyone.
01:05:40For everyone.
01:05:41For everyone.
01:05:42For everyone.
01:05:43For everyone.
01:05:44For everyone.
01:05:45For everyone.
01:06:16For everyone.
01:06:17For everyone.
01:06:18For everyone.
01:06:19For everyone.
01:06:20For everyone.
01:06:21For everyone.
01:06:22For everyone.
01:06:23For everyone.
01:06:24For everyone.
01:06:25For everyone.
01:06:26For everyone.
01:06:27For everyone.
01:06:28For everyone.
01:06:29For everyone.
01:06:30For everyone.
01:06:31For everyone.
01:06:32For everyone.
01:06:33For everyone.
01:06:34For everyone.
01:06:35For everyone.
01:06:36For everyone.
01:06:37For everyone.
01:06:38For everyone.
01:06:39For everyone.
01:06:40For everyone.
01:06:41For everyone.
01:06:42For everyone.
01:06:43For everyone.
01:06:44For everyone.
01:06:45For everyone.
01:06:46For everyone.
01:06:47For everyone.
01:06:48For everyone.
01:06:49For everyone.
01:06:50For everyone.
01:06:51For everyone.
01:06:52For everyone.
01:06:53For everyone.
01:06:54For everyone.
01:06:55For everyone.
01:06:56For everyone.
01:06:57For everyone.
01:06:58For everyone.
01:06:59For everyone.
01:07:00For everyone.
01:07:01For everyone.
01:07:02For everyone.
01:07:03For everyone.
01:07:04For everyone.
01:07:05For everyone.
01:07:06For everyone.
01:07:07For everyone.
01:07:08For everyone.
01:07:09For everyone.
01:07:10For everyone.
01:07:11For everyone.
01:07:12For everyone.
01:07:13For everyone.
01:07:14For everyone.
01:07:15For everyone.
01:07:16For everyone.
01:07:17For everyone.
01:07:18For everyone.
01:07:19For everyone.
01:07:20For everyone.
01:07:21For everyone.
01:07:22For everyone.
01:07:23For everyone.
01:07:24For everyone.
01:07:25For everyone.
01:07:26For everyone.
01:07:27For everyone.
01:07:28For everyone.
01:07:29For everyone.
01:07:30For everyone.
01:07:31Did you hear it?
01:07:33Did you hear it?
01:07:35Did you hear it?
01:07:37Radio activity
01:07:57Radio activity
01:07:59Radio community
01:08:01Glaze
01:08:06Radio
01:08:09Radio
01:08:10Radio
01:08:12Radio
01:08:13Radio
01:08:14Radio
01:08:21Radio
01:08:23Radio
01:08:24Radio
01:08:27W颯
01:08:58foreign
01:09:13foreign
01:09:28electron
01:09:30electron
01:09:32and
01:09:34neutron
01:09:36neutron
01:09:38neutron
01:09:40neutron
01:09:42neutron
01:09:44nuclear
01:09:46nuclear
01:09:48the
01:09:50the
01:09:52element
01:09:54nuclei
01:09:56just
01:09:5811
01:10:00an
01:10:02a
01:10:04a
01:10:06a
01:10:08a
01:10:10a
01:10:12a
01:10:14a
01:10:16a
01:10:18a
01:10:22the atomic number of proton. If the number of proton is 10, the number of proton is 10.
01:10:31If the atom is neutral, then the atom is no charge, then the proton is no charge.
01:10:47If the atom is neutral, then the number of proton is no charge.
01:11:04If the atom is neutral, then the number of proton is equal to the number of proton.
01:11:12If the atom is equal to the number of proton, then the number of proton is equal to the number of proton is equal to the number of proton.
01:11:21If the atom is equal to the number of proton, then the number of proton is equal to the number of proton is equal to the number of proton.
01:11:28If the atom is equal to the number of proton, then the number of proton is equal to the number of proton is equal to the number of proton.
01:11:35If the atom is equal to the number of proton, then the number of proton is equal to the number of proton.
01:11:42If the atom is equal to the number of proton, the number of proton is equal to the number of proton, the number of proton is equal to the number of proton.
01:11:54electron का mass 1837 times come
01:11:59अच्छा किसी 1 में 1 plus 1 plus 1 upon
01:12:03में 1837 add करें तो इसको neglect कर सकते हैं
01:12:06इसलिए हम A के अंदर इसको A को नाम दिया जाता है
01:12:10यह A जो होता है यह होता है number of proton and neutron
01:12:16यह क्यों बोला है अभी नहीं समझ में आएगा
01:12:20कुछ लोग रट लेते हैं किया ऐसा होता है
01:12:22एक चीज़ और
01:12:23number of proton and neutron इसको एक और चीज़ बोलाजता है
01:12:28number of nucleons
01:12:31अच्छा nucleus के अंदर जो भी चीज़ें होती हैं
01:12:33उनको nucleons बोलते हैं तो number of nucleons
01:12:36जहां से सुने
01:12:37nucleon कौन कौन से होते हैं
01:12:40proton और neutron
01:12:42proton और neutron का mass लगबग
01:12:44एक चीज़ भी फिलाल के लिए ध्यान रगए
01:12:46एक proton का mass
01:12:49कितना proton का
01:12:52कितना हर बोले पेड़ है
01:12:541.
01:12:55एक proton का mass
01:13:021.672
01:13:04into 10 to the power
01:13:06मैं या तो यह लिको
01:13:08minus 27 kg
01:13:09इसकी जगा 1
01:13:11AMU
01:13:12एक proton यह पुरी यूनिट
01:13:15अगर मुझे mass बताना है
01:13:27यह mass
01:13:28इसको MP
01:13:29या तो इसको यह लिके
01:13:301.672
01:13:3210 to the power
01:13:33minus 27 kg
01:13:35अच्छा या फिर
01:13:36AMU के लिए भी एक ग्राम में भी बता सकते हो
01:13:39अगर मैं
01:13:41इसको ग्राम में इसको डिवाइट करूँ
01:13:43अच्छा किसी भी चीज़ को एने से डिवाइड करते हैं
01:13:45तो वो AMU बन जाता है mass
01:13:47तो यहाँ
01:13:48AMU में भी आता है
01:13:50यह वाली चीज़ लग भग
01:13:521 AMU
01:13:56तो प्राटोन और न्यूट्रोन का mass
01:13:59सेम है
01:14:00तो प्राटोन का mass अगर 1 AMU है
01:14:02तो न्यूट्रोन का भी
01:14:031 AMU
01:14:04अगले चेप्टर की त्याहरी चल रही है
01:14:06वह हैं से क्योशन डेफिनेटली आएगा
01:14:08इससे जो क्योशन आएगा वो
01:14:09अलफा बीटा गामा में से आएगा
01:14:10इससे भी आता है
01:14:12अलफा बीटा इसलिए रेडियो अक्टिविटी के बारे में बात कर रहें
01:14:14अगर फॉक हम ऑना समle है तो enf них में यह तो यह बोलो या फिर ग्राम में बोलो ग्राम में कितना जहीं बात
01:14:22सो
01:14:35one so I can tell you about it is common one gram it is with me molecular weight
01:14:45gram my Adam and hydrogen gas can do gram hydrogen gas can molecular weight dog
01:14:52grab a hydrogen gas K molecule can pass it a time molecular weight
01:14:58of mass mass of n a n a n a mass of the n a molecule
01:15:07mass dogra so it got it now go to buy a n a gram it is clear again in a molecule
01:15:13come as to grammar to a car to buy n a or marry the total available at our
01:15:19market that my pologe one by n a am yota so much of it and I got to a view
01:15:26what's up h2 gas come as do am you hydrogen atom can a molecular weight
01:15:35it's not a gram hydrogen atom can you can't get a molecule is a n a
01:15:40n a come as a gram head to a car one by n a one by n a
01:15:45map like am you to hydrogen or this come as same hydrogen
01:15:52hydrogen a proton ito hydrogen one h1 proton question it is the one a
01:15:57view is so hydrogen ball though one h1 you have a proton ball
01:16:01do but a key a mask a point of view
01:16:06if you have a proton gamma as a mass of neutron
01:16:10luck but same for us as a result of the data so let me look for you be one
01:16:15One A.M.U.
01:16:17A.C.E.L.E.K.T.R.N.
01:16:19A.C.E.L.E.K.T.R.N.
01:16:19K.A.S.
01:16:21Are you?
01:16:22It's called.
01:16:22One A.P.N.
01:16:23A.C.E.L.E.K.T.R.N.
01:16:24A.C.E.L.E.S.
01:16:24A.C.E.M.U.
01:16:25B.O.H.T.
01:16:25KAM.
01:16:26So, yeah.
01:16:26A.C.E.L.E.S.
01:16:27A.C.E.L.E.S.
01:16:27A.C.E.L.E.S.
01:16:28A.C.E.L.E.S.
01:16:29A.C.E.L.E.S.
01:16:30So if you have a total mass, then you can have a total mass, then you will remove the value value.
01:16:37So what do I have to do here? Atomic mass number. Atomic mass number is number of nucleons.
01:16:47Number of nucleons means proton and neutron.
01:16:51I will talk about an example.
01:16:54Let me give you an example.
01:17:00Sodium. Sodium is 11 Na 23.
01:17:04What is the value of Z?
01:17:0711. What is the number of proton?
01:17:12Is it neutral?
01:17:14Some people say that it's neutral.
01:17:15If you say that it's neutral, then it's a small thing.
01:17:18It's a little bit of work.
01:17:20The number of proton and electron are the same.
01:17:22The number of proton and electron are the same.
01:17:24The number of proton and electron is the same.
01:17:26The number of proton and electron is the same.
01:17:28What is the value of E?
01:17:37What is the number of proton?
01:17:38The number of proton.
01:17:39The number of proton is the same.
01:17:40The number of proton is the same.
01:17:41The number of proton is the same.
01:17:42The number of proton is the same.
01:17:43The number of proton is the same.
01:17:44The number of proton is the same.
01:17:45The number of proton is the same.
01:17:46The number of proton is the same.
01:17:47The number of proton is the same.
01:17:48The number of proton is the same.
01:17:49The number of proton is the same.
01:17:50The number of proton is the same.
01:17:51The number of proton is the same.
01:17:52The number of proton is the same.
01:17:53The number of proton is the same.
01:17:54The number of proton is the same.
01:17:55The number of proton is the same.
01:17:56The number of proton is the same.
01:17:57The number of proton is the same.
01:17:58The number of proton is the same.
01:17:59plus neutron twenty three
01:18:02hey I tell you
01:18:03can't hear
01:18:04so and
01:18:05can't hear
01:18:06by
01:18:07are you
01:18:08looking at
01:18:08you can't
01:18:09remember
01:18:10you are
01:18:11you're
01:18:11up to go
01:18:12make
01:18:12which is
01:18:12what
01:18:12I don't
01:18:13just
01:18:13I mean
01:18:13I have
01:18:14people
01:18:14so
01:18:14that
01:18:14I
01:18:14think
01:18:15you are
01:18:16looking
01:18:16a
01:18:16to
01:18:17it
01:18:17number
01:18:17it
01:18:18like
01:18:18number
01:18:18again
01:18:19twenty
01:18:20three
01:18:20twenty
01:18:21three
01:18:21twenty
01:18:21three
01:18:21one
01:18:21one
01:18:21one
01:18:22and
01:18:22or
01:18:23barra
01:18:23you know
01:18:24so
01:18:24first
01:18:24atomic
01:18:25mass
01:18:25number
01:18:26key
01:18:26hola
01:18:26it
01:18:28atomic
01:18:28number
01:18:29world
01:18:29that
01:18:29number
01:18:30world
01:18:30it
01:18:30in
01:18:30a
01:18:30a
01:18:32a
01:18:33a
01:18:34kya
01:18:34kya
01:18:34r
01:18:35a
01:18:35proton
01:18:35a
01:18:36a
01:18:36proton
01:18:37a
01:18:37mass
01:18:37a
01:18:38m
01:18:40you
01:18:40to
01:18:40get up
01:18:41a
01:18:41m
01:18:42you
01:18:42barra
01:18:44a
01:18:44new
01:18:44ton
01:18:45goto
01:18:45you
01:18:45a
01:18:45barra
01:18:46gara
01:18:47m
01:18:47you
01:18:47plus
01:18:47barra
01:18:48m
01:18:48you
01:18:49say
01:18:49sam
01:18:50you
01:18:50to
01:18:50joe
01:18:50a
01:18:50who
01:18:51number
01:18:52b
01:18:52i
01:18:52or
01:18:53ut
01:18:53na
01:18:53i
01:18:53m
01:18:54you
01:18:54b
01:18:54are
01:18:55k
01:18:55a
01:18:55par
01:18:56you
01:18:56twenty
01:18:56three
01:18:56l
01:18:56an
01:18:57a
01:18:57number
01:18:57So, the number is 23, and the mass is 23 AMU, because the number is 1 proton and neutron,
01:19:04the mass is 1 AMU, 1 AMU is 1 AMU.
01:19:06So, the number is 23, and the mass is 23 AMU.
01:19:15ELP-3, was it?
01:19:18ELP-3 is the exercise.
01:19:21Okay, this is our first exercise.
01:19:24Nuclear physics, which is the photoelectric effect, can be done by one, two, three, four.
01:19:30These are two chapters, matter wave and photoelectric.
01:19:34It can be done by two.
01:19:36The next part is nuclear physics.
01:19:54What is the word?
01:19:56Is itscheination?
01:19:58Does it make sense to test?
01:19:59It means yes.
01:20:00I literally kinds of tenía seder.
01:20:02The fullactivated fields belong to these PARA as you can enjoy.
01:20:04Yeah, I didn't mind the vehicle isn't any toys, true anduen.
01:20:06I'm a première agent busier than it is heavily chilled, and wondered why it gives you suficiente.
01:20:09After all, you can smell them and bleed.
01:20:11If you can smell bananas, happen the velocities like after.
01:20:14Close your chest up, and walk through it.
01:20:16Don't get your ass.

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