The 400 (number) reference article from the English Wikipedia on 24-Apr-2004
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400 (number)

Four hundred is the natural number following three hundred ninety-nine and preceding four hundred one.

List of numbersIntegers

<< 0 100 200 300 400 500 600 700 800 900 >>

CardinalFour hundred
Ordinal400th
Factorization
Roman numeralCD
Binary110010000
Hexadecimal190

Mathematical Properties

A circle is divided into 400 gradians, which is equal to 360 degrees and 2π radians. (Degrees and radians are the preferred units),

Other fields

Four hundred is also

For the year 400 AD, see 400.

See also: three hundred, five hundred


401 prime number, tetranacci number, sum of seven consecutive primes (43 + 47 + 53 + 59 + 61 + 67 + 71), sum of nine consecutive primes (29 + 31 + 37 + 41 + 43 + 47 + 53 + 59 + 61), Mertens function returns 0. Also, area code for Rhode Island, also HTTP status code for an unauthorized request, also in the name of a retirement plan, 401(k)
402 = 2 × 3 × 67, sphenic number, also HTTP status code for payment required
403 = 13 × 31, Mertens function returns 0. Also, HTTP status code for forbidden, also in the name of a retirement plan, 403(b)
404 = 22 × 101, Mertens function returns 0. Also, HTTP status code for file not found, perhaps the most famous HTTP status code of all time
405 = 34 × 5, Mertens function returns 0
406 = 2 × 7 × 29, sphenic number, triangular number, also area code for Montana
407 = 11 × 37, sum of three consecutive primes (131 + 137 + 139), Mertens function returns 0
408 = 23 × 3 × 17, sum of four consecutive primes (97 + 101 + 103 + 107), sum of eight consecutive primes (37 + 41 + 43 + 47 + 53 + 59 + 61 + 67), Mertens function returns 0, octagonal number
409 prime number
410 = 2 × 5 × 41, sphenic number, sum of six consecutive primes (59 + 61 + 67 + 71 + 73 + 79)
411 = 3 × 137
412 = 22 × 103
413 = 7 × 59, Mertens function returns 0
414 = 2 × 32 × 23, Mertens function returns 0
415 = 5 × 83
416 = 25 × 13
417 = 3 × 139
418 = 2 × 11 × 19, sphenic number, also area code for Quebec
419 prime number, Mertens function returns 0
420 = 22 × 3 × 5 × 7, sum of four consecutive primes (101 + 103 + 107 + 109), Mertens function returns 0
421 prime number, sum of five consecutive primes (73 + 79 + 83 + 89 + 97)
422 = 2 × 211, Mertens function returns 0
423 = 32 × 47, Mertens function returns 0
424 = 23 × 53, sum of ten consecutive primes (23 + 29 + 31 + 37 + 41 + 43 + 47 + 53 + 59 + 61), Mertens function returns 0
425 = 52 × 17, sum of three consecutive primes (137 + 139 + 149), Mertens function returns 0
426 = 2 × 3 × 71, sphenic number
427 = 7 × 61, Mertens function returns 0
428 = 22 × 107
429 = 3 × 11 × 13, sphenic number, Catalan number
430 = 2 × 5 × 43, sphenic number
431 prime number, sum of seven consecutive primes (47 + 53 + 59 + 61 + 67 + 71 + 73)
432 = 24 × 33, sum of four consecutive primes (103 + 107 + 109 + 113)
433 prime number
434 = 2 × 7 × 31, sphenic number, sum of six consecutive primes (61 + 67 + 71 + 73 + 79 + 83)
435 = 3 × 5 × 29, sphenic number, triangular number, hexagonal number
436 = 22 × 109
437 = 19 × 23
438 = 2 × 3 × 73, sphenic number
439 prime number, sum of three consecutive primes (139 + 149 + 151), sum of nine consecutive primes (31 + 37 + 41 + 43 + 47 + 53 + 59 + 61 + 67)
440 = 23 × 5 × 11, the sum of the first seventeen prime numbers, also, in Hertz, the standard frequency to which most orchestras tune the pitch A above middle C. A few orchestras tune slightly flatter or sharper than this.
441 = 32 × 72 = 212
442 = 2 × 13 × 17, sphenic number, sum of eight consecutive primes (41 + 43 + 47 + 53 + 59 + 61 + 67 + 71)
443 prime number, Mertens function sets new low of -9, which stands until 659
444 = 22 × 3 × 37
445 = 5 × 89
446 = 2 × 223
447 = 3 × 149
448 = 26 × 7
449 prime number, sum of five consecutive primes (79 + 83 + 89 + 97 + 101)
450 = 2 × 32 × 52
451 has its own article.
452 = 22 × 113
453 = 3 × 151
454 = 2 × 227
455 = 5 × 7 × 13, sphenic number, tetrahedral number
456 = 23 × 3 × 19, sum of a twin prime (227 + 229), sum of four consecutive primes (107 + 109 + 113 + 127)
457 prime number, sum of three consecutive primes (149 + 151 + 157)
458 = 2 × 229
459 = 33 × 17
460 = 22 × 5 × 23
461 prime number
462 = 2 × 3 × 7 × 11, sum of six consecutive primes (67 + 71 + 73 + 79 + 83 + 89)
463 prime number, sum of seven consecutive primes (53 + 59 + 61 + 67 + 71 + 73 + 79)
464 = 24 × 29
465 = 3 × 5 × 31, sphenic number, triangular number
466 = 2 × 233
467 prime number
468 = 22 × 32 × 13, sum of ten consecutive primes (29 + 31 + 37 + 41 + 43 + 47 + 53 + 59 + 61 + 67)
469 = 7 × 67, centered hexagonal number
470 = 2 × 5 × 47, sphenic number
471 = 3 × 157, sum of three consecutive primes (151 + 157 + 163)
472 = 23 × 59
473 = 11 × 43, sum of five consecutive primes (83 + 89 + 97 + 101 + 103)
474 = 2 × 3 × 79, sphenic number, sum of eight consecutive primes (43 + 47 + 53 + 59 + 61 + 67 + 71 + 73)
475 = 52 × 19
476 = 22 × 7 × 17
477 = 32 × 53
478 = 2 × 239
479 prime number, sum of nine consecutive primes (37 + 41 + 43 + 47 + 53 + 59 + 61 + 67 + 71)
480 = 25 × 3 × 5, sum of a twin prime (239 + 241), sum of four consecutive primes (109 + 113 + 127 + 131)
481 = 13 × 37, octagonal number
482 = 2 × 241
483 = 3 × 7 × 23, sphenic number
484 = 22 × 112 = 222
485 = 5 × 97
486 = 2 × 35, also shorthand for the Intel 80486 microprocessor chip
487 prime number, sum of three consecutive primes (157 + 163 + 167)
488 = 23 × 61
489 = 3 × 163, octahedral number
490 = 2 × 5 × 72
491 prime number
492 = 22 × 3 × 41, sum of six consecutive primes (71 + 73 + 79 + 83 + 89 + 97)
493 = 17 × 29, sum of seven consecutive primes (59 + 61 + 67 + 71 + 73 + 79 + 83)
494 = 2 × 13 × 19, sphenic number
495 = 32 × 5 × 11
496 now has its own article.
497 = 7 × 71, sum of five consecutive primes (89 + 97 + 101 + 103 + 107)
498 = 2 × 3 × 83, sphenic number
499 prime number