11, 22, 33, 44, 55, 66, 77, 88, 99, 110, 121, 132, 143, 154, 165, 176, 187, 198, 209, 220, 231, 242, 253, 264, 275, 286, 297, 308, 319, 330, 341, 352, 363, 374, 385, 396, 407, 418, 429, 440, 451, 462, 473, 484, 495, 506, 517, 528, 539, 550, 561, 572, 583, 594, 605, 616, 627, 638, 649, 660, 671, 682, 693, 704, 715, 726, 737, 748, 759, 770, 781, 792, 803, 814, 825, 836, 847, 858, 869, 880, 891, 902, 913, 924, 935, 946, 957, 968, 979, and 990!!
Oh, dude, multiples of 4 are like those friends who always show up at your party. They just keep coming. So, to find out how many multiples of 4 are up to 1000, you just divide 1000 by 4, which gives you 250. So, there are 250 multiples of 4 up to 1000. It's like a never-ending party!
Oh honey, multiples of 25 up to 1000? That's easy peasy lemon squeezy. You've got 25, 50, 75, 100, all the way up to 1000. Just keep adding 25 each time and you'll be counting those multiples like a pro.
All multiples of 12, such as 120, 600, 660.
All of its multiples from 3 to 999
To have a whole number square root, the number is a perfect square. Thus the numbers will be the squares of multiples of 11. Thus the first number will be (1×11) × (1×11) = 11² = 121 The next candidate will be (2×11) × (2×11) = 22² = 484 The next possible candidate will be (3×11) × (3×11) = 33² = 1089 which is too large. Thus there are two multiples of 11 less than 1000 whose square roots are whole numbers, namely 121 (11²) and 484 (22²)
Oh, dude, multiples of 4 are like those friends who always show up at your party. They just keep coming. So, to find out how many multiples of 4 are up to 1000, you just divide 1000 by 4, which gives you 250. So, there are 250 multiples of 4 up to 1000. It's like a never-ending party!
Oh honey, multiples of 25 up to 1000? That's easy peasy lemon squeezy. You've got 25, 50, 75, 100, all the way up to 1000. Just keep adding 25 each time and you'll be counting those multiples like a pro.
The multiples of 3 up to 1000 are the numbers that can be expressed as 3 times an integer, starting from 3. This sequence begins with 3, 6, 9, and continues up to 999, which is the largest multiple of 3 within that range. In total, there are 333 multiples of 3 from 1 to 1000, since 1000 divided by 3 equals approximately 333.
All multiples of 12, such as 120, 600, 660.
There are 12 multiples of 77 in that range.
There are 143 such numbers, too many to list.
143
All of its multiples from 3 to 999
Just 77.
5 and 6.
multiples of 11 11,22,33,44,55,,66,77,88,99 multiples of 15 15,30,45,60,75,90
To have a whole number square root, the number is a perfect square. Thus the numbers will be the squares of multiples of 11. Thus the first number will be (1×11) × (1×11) = 11² = 121 The next candidate will be (2×11) × (2×11) = 22² = 484 The next possible candidate will be (3×11) × (3×11) = 33² = 1089 which is too large. Thus there are two multiples of 11 less than 1000 whose square roots are whole numbers, namely 121 (11²) and 484 (22²)