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Into Unscientific Chapter 360
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Into Unscientific Chapter 360

  Chapter 360 This chapter actually reveals a truth (on)

  Cold atom research.

   It is not difficult to see from the words that this refers to the work of studying atoms under ultrlow temperature conditions.

  Students who did not fail in high school chemistry should know.

  The temperature of an atom, the most direct reflection is the velocity of the atom.

   That is, the two are positively correlated.

Room temperature.

  Atoms move very fast, sliding around like Yasuo, and the question marks can't keep up with them.

   To study the physical properties of atoms, we need a stable single atom or atomic group that will not run around.

so what.

  When studying atoms, it is necessary to cool down the atoms, that is, to 'freeze' them.

  Usually, the research requires the temperature of the atoms to be around μK.

  However, due to cost issues, it is often not necessary for the entire experimental device to be at a temperature of μK.

  So normal research groups working on cold atoms will use lasers to cool atoms.

   is to cool a small area.

  Some Japanese grocery stores in later generations also like to do this kind of work, but instead of cooling it, they heat it up—the middle part of a piece of fresh beef is roasted, and the other parts are raw, which is called heart-burning beef sashimi.

   Xu Yun doesn't have much prejudice in this way of eating, but it's a challenge to the bottom line of people's IQ if a slice costs more than 50 yuan

  The topic returns to the original place.

  At present, most of the laser cooling principles are Doppler cooling, and the principle is relatively complicated, so I won't go into details here.

  In short, this thing can reduce the temperature of atoms to very low.

  But the final result of cooling down is only to slow down the atoms. Although the atoms have slowed down, they are still scattered disorderly in the cooling area.

  It's like you have delineated a long highway and let the cars in it lose power and stop in place, but if you want to study these cars, you need to gather them together.

  So at this time, another technical method is needed.

   That is the magneto-optical trap.

   Magneto-optical trap is referred to as magneto-optical trap, code-named MOT.

  Among the top 100 microscopic experiments selected by "Nature" magazine in 2019, the magneto-optical trap ranked 58th, which is a very, very delicate experimental design.

  It utilizes the magnetic field and light field to slowly make the particles controllable and gather together.

  The specific method of MOT is to install a pair of anti-Helmholtz coils in the z direction, and then on the xy plane is a magnetic field distributed along the radial direction.

  The magnetic field at the positive center is 0, and Zeeman splitting will occur where the magnetic field is not 0.

  The energy level of Zeeman splitting is ΔE=gμBBz/, and the size of energy level splitting is related to the size of the magnetic field, and the size of the magnetic field is related to the spatial position.

  So in the presence of MOT, the two-level atom will experience a force of Fmot.

  At this time, two opposite beams of circularly polarized light are applied. When the magnetic field is positive, compared with σ+ light, σ- light has a smaller detuning and is closer to the resonance of the atom.

   Therefore, the atoms will move along the σ-light propagation direction to the position where the magnetic field is close to 0.

  The place where the magnetic field is negative is the opposite, and the atoms will eventually be pushed to a place where the magnetic field is close to zero.

finally.

  Atoms will be trapped at the point where the magnetic field is 0.

  This principle is very simple and easy to understand.

  MOT can gather a lot of atoms, about ten million or more at a time, and the atomic density will be relatively high, about 10^9/cm^3.

   It is equivalent to having a forklift that 'pushes' all the cars parked on the highway together.

Of course.

  The experimental object of the traditional MOT is an atom, and all the atoms are added to the experiment—yes, they are all gases. (I don't know if the concept of gaseous metal atoms has been mentioned in the current textbooks, but it should be there in my impression)

  Different from atoms, what Xu Yun and the others need to consider this time are lone point particles.

  The two cannot be considered the same in terms of volume and difficulty, but the isolated point particles are also electrically neutral, so the isolated point particles are very few particles that can be condensed using the MOT principle.

   It's just a thousand words and ten thousand words. After all, this is only a theoretical feasibility.

  Whether the ground state of the isolated particle can be successfully transformed depends on the final practical link.

   "Professor Lu."

  Beside the console, Xu Yun was introducing his experimental ideas to Lu Chaoyang:

   "My idea is this. First, we use evanescent waves inside the beam channel to construct a light field with inhomogeneous light intensity."

   "Then, according to the distribution of the light field, lay the electric field with the same trend."

   "In this way, the evanescent wave at each point produces a difference in dipole force, which will make the particles "bounce" non-stop."

   "Every time we 'bounce', we slightly lower the trapping electric field, and the electrostatic repulsion between atoms will scatter the charged particles, and the outer particles will escape."

   "The lone point particles will be permanently stored in the channel because they have no static mass and no chargeability."

  Xu Yun's proposal is in human language and in layman's terms, compared to the dustpan shaker in reality.

  The particles after the collision of lead ions are equivalent to a mixture mixed with soil, seeds, bugs, and weeds.

   The best way to classify them is to shake the dustpan.

  As long as you design the appropriate hole size, you can always shake out what you need in the end—it's nothing more than the specific strength and hole diameter.

Of course.

  This explanation is just for the convenience of understanding. For people in the industry like Lu Chaoyang, they need to consider far more than simple jitter.

   He was silent for a moment, then looked up at Xu Yun:

   "The idea is generally feasible, but Xiao Xu, I have a question."

   Said that Lu Chaoyang stretched out an index finger on each of his left and right hands, and touched fingertips:

   "Look, the contact between fingertips is like two beams colliding with each other. There is no dispute in this link, but"

   Then Lu Chaoyang stretched out the originally curled thumb of his left hand, and formed an equal sign gesture with the extended index finger, and then touched the surface of the two fingers:

   "But Xiao Xu, have you ever considered that lead ions in the same beam, that is, moving in the same direction, may collide or be excited due to the electric field?"

   "If the internal heavy ions collide, then the subsequent direction is uncontrollable."

  A boy next to him, who was fighting, also nodded in agreement when he heard the words.

  Lu Chaoyang's question is also not difficult to understand.

   It's like being on the frontal battlefield, the two armies are launching missiles at each other, and the trajectories of each other's missiles are aimed at each other.

   But if the missile is in the middle of its flight, there is suddenly an additional force between the sky and the earth from a non-moving direction, and this force is large enough to affect the trajectory of the missile

  In this way, a situation is likely to occur:

  Before touching the enemy missile, the own missile was changed the route first, and an internal collision occurred.

  Although the consequence of this kind of collision is also an explosion, it is obviously of no value—the purpose of launching missiles is to kill and injure the enemy, not just to watch fireworks.

   Hence the case

   really has to be taken into account.

   Otherwise, the whole experiment would be a joke, and Xu Yun's prestige would be greatly affected.

  However, Xu Yun was clearly prepared for this situation. He picked up the pen and quickly wrote down a formula on the paper:

  ψ∝exp( x /x0).

   Then he drew a horizontal line under the formula, and stopped talking.

  Looking at this formula, a trace of astonishment appeared in Lu Chaoyang's eyes:

"This is."

   A few seconds passed.

  He suddenly oopsed and patted himself on the forehead:

   "Oh, look, how did I forget about the delta potential well, OKOK, Xiao Xu, then I'm fine."

  The expression on Xu Yun's face didn't change, but the slightly raised corners of his mouth still faintly revealed his inner self-satisfaction.

   That's right.

  Smart classmates must have seen it.

  The above formula is exactly the wave function of the bound state of a single atom in 1-dimensional space.

  According to this wave function, a situation can be clearly judged:

  When the distance between two atoms is less than twice the atomic radius, the energy of the antisymmetric state is E>0, and the energy of the symmetric state is equal to 0.

  The energy of free electrons is also 0.

  This means that in this case, the symmetric state is already unstable, and electrons can fly to infinity.

   So when two lead ions come close, they naturally disintegrate rather than collide.

   That is, at this time, they cannot be regarded as bosons.

  The energy of decomposition and the energy of collision are completely different in magnitude.

   But then again.

   Lu Chaoyang's misjudgment has nothing to do with his ability, but with the direction involved in the experiment.

  Particle physics experiments do not actually include Bose-Einstein condensed matter, and the two can even be said to be two extremes in a sense.

  If it weren't for the particularity of the isolated particle, Lu Chaoyang would never have been exposed to this aspect at all.

  So it's normal for him to make some mistakes in thinking.

  The more you discern, the clearer you become.

  Afterwards, Xu Yun and Lu Chaoyang discussed some procedural issues, and after they were correct, they began to arrange the experiment.

  The production of cold atoms requires a high-level vacuum, generally around 1x10^-10mbar.

   Fortunately, today is not 1850, so it is not difficult to build such a vacuum environment.

   "Dr. Tang Fei."

  Xu Yun glanced at the roster in his hand, and read a name:

   "I will trouble you to arrange the anti-Helmholtz coil."

   The Tang Fei Xu Yun mentioned was a man in his early thirties, with a pair of gold-rimmed glasses and short hair, looking very capable.

   Tang Fei is the second-oldest member of the entire project team after Lu Chaoyang. He is also a doctoral student trained by the University of Science and Technology, and is now a new backbone of a certain research institute of the University of Science and Technology.

  Actually, with Xu Yun's current status, he would not be able to invite a senior like Tang Fei who has graduated and worked and is not low in ability.

   It just so happens that Tang Fei is currently in the critical period of being promoted as an associate researcher, and needs some exposure and achievements to enrich his resume.

  Thus, through the introduction of Academician Pan, he successfully joined Xu Yun's group, and Xu Yun picked up a loophole.

   And even in the future, even if they are divided into groups, he will follow Xu Yun to carry out projects.

  Received Xu Yun's instructions, Tang Fei quickly straightened his expression:

   "No problem, leave it to me." (It's a fun thing to say, if I didn't correct the typo during the verification, you will see 'marry me'.)

   After Tang Fei left.

  Xu Yun continued to issue instructions:

   "Li Ruo'an, you are responsible for the debugging of the radio frequency field."

"receive!"

   "Dr. Yang Kun, you are in charge of evanescent waves."

"clear!"

   "Senior Zhang Han, you are responsible for observing the wave packet—remember to set the parameter to an odd multiple of 13.2."

"okay!"

   "Sister Ye Zhi, you go to order takeaway, the taste is up to you, no celery and coriander."

   "OK!"

   After the tasks are assigned.

  Xu Yun and Lu Chaoyang waited at the console.

  In order to ensure that the project team can obtain high-efficiency positive feedback after refining the division of labor, many project teams have gradually begun to be equipped with spreaders:

   This thing is about the size of two one-dollar coins, and it has a button and a tamper-resistant switch on it.

  After completing the task, release the anti-mis-touch switch, and press the button again, and a green dot will appear under the corresponding item on the main display, prompting the person in charge to complete the XX block task.

  It is said that the project team of a certain university in Yanjing also used the pangolin voice package, which is magical.

  Xu Yun's research team this time is equipped with a spread system.

Over time.

  The seven light spots in front of Xu Yun gradually changed from red to green.

   About twenty minutes passed.

  All the light spots turned green, and Lu Chaoyang on the side snapped his fingers:

   "OK, Xiao Xu, you can summon Dragon Ball now."

  Xu Yun: "."

   Ignoring the funny comparison around him, Xu Yun took a deep breath and said through the main microphone:

   "Attention all members, the ground state experiment of isolated point particles is about to start now, the countdown is three two. one"

"start!"

   At the moment of speaking and beginning.

  Xu Yun pressed the switch on the main console.

   buzz buzz —

   A beam with an order of magnitude density smaller than the first time rushes out of the beam tube.

   And different from the first time.

   Within 10^-12 seconds, a preset evanescent wave field enveloped them.

  A burst of radiation pressure invisible to the naked eye appears.

at the same time.

   The first wave of lead ions begins to collide.

  Boom—

  The two lead ions exploded instantly like Kennedy's head, and various things flew out of it.

   Then another 10^-12 seconds passed.

  The anti-Helmholtz coil is energized, and a magnetic field with the same strength as the evanescent wave descends.

  A large number of particles began to detune, flying out of orbit one by one.

  The flying particles are guided to hit the target, and finally end in the form of electrons or photons.

   Except for only a few electrically neutral elementary particles:

  Neutrino, Gluon, Photon, Higgs, Z boson.

  These five kinds of particles are either impossible to capture, or it is very difficult to capture, and they will voluntarily leave the channel.

   In addition to the basic particles.

   There are only some other electrically neutral composite particles left, and there are very few types.

   For example, a neutron composed of a +23 up quark and two 13 down quarks.

   Another example is X-ray particles.

  The essence of X-ray particles is actually photons, so you can ignore them.

  Neutrons can be absorbed by boron-containing polyethylene - this is low-level radiation capture, and nuclear fission will not occur

   When a series of operations are completed.

Inside the    channel there remains another uncharged composite particle.

   It's called .

  Λ hyperon.

  Code

  4685.

  (end of this chapter)

Chapter end

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Chapter 734
Chapter 733
Chapter 731
Chapter 730
Chapter 729
Chapter 728
Chapter 727
Chapter 726
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Chapter 718
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Chapter 699
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Chapter 680
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Chapter 665
Chapter 664
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Chapter 662
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Chapter 660
Chapter 659
Chapter 658
Chapter 657
Chapter 656
Chapter 655
Chapter 654
Chapter 653
Chapter 652
Chapter 651
Chapter 650
Chapter 649
Chapter 648
Chapter 647
Chapter 646
Chapter 645
Chapter 643
Chapter 642
Chapter 641
Chapter 640
Chapter 639
Chapter 638
Chapter 637
Chapter 636
Chapter 635
Chapter 634
Chapter 633
Chapter 632
Chapter 631
Chapter 630
Chapter 629
Chapter 628
Chapter 627
Chapter 625
Chapter 624
Chapter 623
Chapter 622
Chapter 621
Chapter 620
Chapter 619
Chapter 618
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Chapter 615
Chapter 614
Chapter 613
Chapter 612
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Chapter 610
Chapter 609
Chapter 608
Chapter 607
Chapter 606
Chapter 605
Chapter 604
Chapter 603
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Chapter 601
Chapter 600
Chapter 599
Chapter 598
Chapter 597
Chapter 596
Chapter 595
Chapter 594
Chapter 593
Chapter 592
Chapter 591
Chapter 590
Chapter 589
Chapter 588
Chapter 587
Chapter 586
Chapter 585
Chapter 584
Chapter 583
Chapter 582
Chapter 581
Chapter 580
Chapter 579
Chapter 578
Chapter 577
Chapter 576
Chapter 575
Chapter 574
Chapter 573
Chapter 572
Chapter 571
Chapter 570
Chapter 569
Chapter 568
Chapter 567
Chapter 566
Chapter 565
Chapter 564
Chapter 563
Chapter 562
Chapter 561
Chapter 560
Chapter 559
Chapter 558
Chapter 557
Chapter 556
Chapter 555
Chapter 554
Chapter 553
Chapter 552
Chapter 551
Chapter 550
Chapter 549
Chapter 548
Chapter 547
Chapter 546
Chapter 545
Chapter 544
Chapter 543
Chapter 542
Chapter 541
Chapter 540
Chapter 539
Chapter 538
Chapter 537
Chapter 536
Chapter 535
Chapter 534
Chapter 533
Chapter 532
Chapter 531
Chapter 530
Chapter 529
Chapter 528
Chapter 527
Chapter 526
Chapter 525
Chapter 524
Chapter 523
Chapter 522
Chapter 521
Chapter 520
Chapter 519
Chapter 518
Chapter 517
Chapter 516
Chapter 515
Chapter 514
Chapter 513
Chapter 512
Chapter 511
Chapter 510
Chapter 509
Chapter 508
Chapter 507
Chapter 506
Chapter 505
Chapter 504
Chapter 503
Chapter 502
Chapter 501
Chapter 500
Chapter 499
Chapter 498
Chapter 497
Chapter 496
Chapter 495
Chapter 494
Chapter 493
Chapter 492
Chapter 491
Chapter 490
Chapter 489
Chapter 488
Chapter 487
Chapter 486
Chapter 483
Chapter 482
Chapter 481
Chapter 480
Chapter 479
Chapter 478
Chapter 477
Chapter 476
Chapter 475
Chapter 474
Chapter 473
Chapter 472
Chapter 471
Chapter 470
Chapter 469
Chapter 468
Chapter 467
Chapter 466
Chapter 465
Chapter 464
Chapter 463
Chapter 462
Chapter 461
Chapter 460
Chapter 459
Chapter 458
Chapter 457
Chapter 456
Chapter 455
Chapter 454
Chapter 453
Chapter 452
Chapter 451
Chapter 449
Chapter 448
Chapter 447
Chapter 446
Chapter 445
Chapter 444
Chapter 443
Chapter 442
Chapter 441
Chapter 440
Chapter 439
Chapter 438
Chapter 437
Chapter 436
Chapter 435
Chapter 434
Chapter 433
Chapter 432
Chapter 431
Chapter 429
Chapter 428
Chapter 427
Chapter 426
Chapter 425
Chapter 424
Chapter 423
Chapter 422
Chapter 421
Chapter 420
Chapter 419
Chapter 418
Chapter 417
Chapter 416
Chapter 415
Chapter 414
Chapter 413
Chapter 412
Chapter 411
Chapter 410
Chapter 409
Chapter 408
Chapter 407
Chapter 406
Chapter 405
Chapter 404
Chapter 403
Chapter 402
Chapter 401
Chapter 400
Chapter 399
Chapter 395
Chapter 394
Chapter 393
Chapter 392
Chapter 391
Chapter 390
Chapter 389
Chapter 388
Chapter 387
Chapter 386
Chapter 385
Chapter 384
Chapter 383
Chapter 382
Chapter 381
Chapter 380
Chapter 379
Chapter 378
Chapter 377
Chapter 376
Chapter 375
Chapter 374
Chapter 373
Chapter 372
Chapter 371
Chapter 370
Chapter 369
Chapter 368
Chapter 367
Chapter 366
Chapter 365
Chapter 364
Chapter 363
Chapter 362
Chapter 361
Chapter 360
Chapter 359
Chapter 358
Chapter 357
Chapter 356
Chapter 355
Chapter 354
Chapter 353
Chapter 352
Chapter 351
Chapter 350
Chapter 349
Chapter 348
Chapter 347
Chapter 346
Chapter 345
Chapter 344
Chapter 343
Chapter 342
Chapter 341
Chapter 340
Chapter 339
Chapter 338
Chapter 337
Chapter 336
Chapter 335
Chapter 334
Chapter 333
Chapter 332
Chapter 331
Chapter 330
Chapter 329
Chapter 328
Chapter 327
Chapter 326
Chapter 324
Chapter 322
Chapter 321
Chapter 320
Chapter 319
Chapter 318
Chapter 317
Chapter 316
Chapter 315
Chapter 314
Chapter 313
Chapter 312
Chapter 311
Chapter 310
Chapter 309
Chapter 308
Chapter 307
Chapter 306
Chapter 305
Chapter 304
Chapter 303
Chapter 302
Chapter 301
Chapter 300
Chapter 299
Chapter 298
Chapter 297
Chapter 296
Chapter 295
Chapter 294
Chapter 293
Chapter 292
Chapter 291
Chapter 290
Chapter 289
Chapter 288
Chapter 287
Chapter 286
Chapter 285
Chapter 284
Chapter 283
Chapter 282
Chapter 281
Chapter 280
Chapter 279
Chapter 278
Chapter 277
Chapter 276
Chapter 275
Chapter 274
Chapter 273
Chapter 272
Chapter 271
Chapter 270
Chapter 269
Chapter 268
Chapter 267
Chapter 266
Chapter 265
Chapter 264
Chapter 263
Chapter 262
Chapter 261
Chapter 260
Chapter 259
Chapter 258
Chapter 257
Chapter 256
Chapter 255
Chapter 254
Chapter 253
Chapter 252
Chapter 251
Chapter 250
Chapter 249
Chapter 248
Chapter 247
Chapter 246
Chapter 245
Chapter 244
Chapter 243
Chapter 242
Chapter 241
Chapter 240
Chapter 239
Chapter 238
Chapter 237
Chapter 236
Chapter 235
Chapter 234
Chapter 233
Chapter 232
Chapter 231
Chapter 230
Chapter 229
Chapter 228
Chapter 227
Chapter 226
Chapter 225
Chapter 224
Chapter 223
Chapter 222
Chapter 221
Chapter 220
Chapter 219
Chapter 218
Chapter 217
Chapter 216
Chapter 215
Chapter 214
Chapter 213
Chapter 212
Chapter 211
Chapter 210
Chapter 209
Chapter 208
Chapter 207
Chapter 206
Chapter 205
Chapter 204
Chapter 203
Chapter 202
Chapter 201
Chapter 200
Chapter 199
Chapter 198
Chapter 197
Chapter 196
Chapter 195
Chapter 194
Chapter 193
Chapter 192
Chapter 191
Chapter 190
Chapter 189
Chapter 188
Chapter 187
Chapter 186
Chapter 185
Chapter 184
Chapter 183
Chapter 182
Chapter 181
Chapter 180
Chapter 179
Chapter 178
Chapter 177
Chapter 176
Chapter 175
Chapter 174
Chapter 173
Chapter 172
Chapter 171
Chapter 170
Chapter 169
Chapter 168
Chapter 167
Chapter 166
Chapter 165
Chapter 164
Chapter 163
Chapter 162
Chapter 161
Chapter 160
Chapter 159
Chapter 158
Chapter 157
Chapter 156
Chapter 155
Chapter 154
Chapter 153
Chapter 152
Chapter 151
Chapter 150
Chapter 149
Chapter 148
Chapter 147
Chapter 146
Chapter 145
Chapter 144
Chapter 143
Chapter 142
Chapter 141
Chapter 140
Chapter 139
Chapter 138
Chapter 137
Chapter 136
Chapter 135
Chapter 134
Chapter 133
Chapter 132
Chapter 131
Chapter 130
Chapter 129
Chapter 128
Chapter 127
Chapter 126
Chapter 125
Chapter 124
Chapter 123
Chapter 122
Chapter 121
Chapter 120
Chapter 119
Chapter 118
Chapter 117
Chapter 116
Chapter 115
Chapter 114
Chapter 113
Chapter 112
Chapter 111
Chapter 110
Chapter 109
Chapter 108
Chapter 107
Chapter 106
Chapter 105
Chapter 104
Chapter 103
Chapter 102
Chapter 101
Chapter 100
Chapter 99
Chapter 98
Chapter 97
Chapter 96
Chapter 95
Chapter 94
Chapter 93
Chapter 92
Chapter 91
Chapter 90
Chapter 89
Chapter 88
Chapter 87
Chapter 86
Chapter 85
Chapter 84
Chapter 83
Chapter 82
Chapter 81
Chapter 80
Chapter 79
Chapter 78
Chapter 77
Chapter 76
Chapter 75
Chapter 74
Chapter 73
Chapter 72
Chapter 71
Chapter 70
Chapter 69
Chapter 68
Chapter 67
Chapter 66
Chapter 65
Chapter 64
Chapter 63
Chapter 62
Chapter 61
Chapter 60
Chapter 59
Chapter 58
Chapter 57
Chapter 56
Chapter 55
Chapter 54
Chapter 53
Chapter 52
Chapter 51
Chapter 50
Chapter 49
Chapter 48
Chapter 47
Chapter 46
Chapter 45
Chapter 44
Chapter 43
Chapter 42
Chapter 41
Chapter 40
Chapter 39
Chapter 38
Chapter 37
Chapter 36
Chapter 35
Chapter 34
Chapter 33
Chapter 32
Chapter 31
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Chapter 29
Chapter 28
Chapter 27
Chapter 26
Chapter 25
Chapter 24
Chapter 23
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Chapter 20
Chapter 19
Chapter 18
Chapter 17
Chapter 16
Chapter 15
Chapter 14
Chapter 13
Chapter 12
Chapter 11
Chapter 10
Chapter 9
Chapter 8
Chapter 7
Chapter 6
Chapter 5
Chapter 4
Chapter 3
Chapter 2
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