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" The least common multiple of two or more numbers, is the least number that can be divided by each of them without a remainder. "
Intermediate Arithmetic: For Graded Schools - Page 139
by Samuel Hamilton - 1907 - 286 pages
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Arithmetic Modernised: Or, A Complete System of Arithmetic, Adapted to ...

John Davidson, Robert Scott (writing master) - Arithmetic - 1818 - 190 pages
...common measure of 16 and 24, and so are 4 and 8 ; and the greatest common measure of 16 and 24 is 8. A common multiple of two or more numbers, is a number that may be divided by each of them without a remainder, and the least number that can be so divided, is...
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The American Arithmetic

James Robinson (of Boston.) - 1847 - 304 pages
...and 36. A -multiple of a number is a number that can be measured by it; thus, 9 is a multiple of 3. A common multiple of two or more numbers is a number that can be measured by each of them ; thus, 16 is a common multiple of 2, 4, and 8. The least common multiple...
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Introduction to The National Arithmetic: On the Inductive System Combining ...

Benjamin Greenleaf - Arithmetic - 1849 - 336 pages
...number is a number that can be divided by it without a remainder ; thus 6 is a multiple of 3* ART. 126' A common multiple of two or more numbers is a number that can be divided by each of them withput ti remainder ; thus 12 is a common multiple of 3 and 4. ART. 127. The...
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American Common-school Arithmetic ...

Rufus Putnam - Arithmetic - 1849 - 402 pages
...it. Thus, 12 is a multiple of 6. What other number is a multiple of 6? Why? What other? What other? A Common Multiple of two or more numbers is a number that can be measured by each of them. Thus, 24 is a common multiple of 2, 3, 4, and 6. 1. Find a common multiple...
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Introduction to the National Arithmetic ...

Benjamin Greenleaf - 1851 - 332 pages
...number is a number that can be divided by it without a remainder; thus 6 is a«sultiple of 3. ART. 126* A common multiple of two or more numbers is a number that can be divided by each of them without a remainder ; thus 12 is a common multiple of 3 and 4. ART. 127. The...
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Indroduction to the National Arithmetic ...

Benjamin Greenleaf - 1854 - 342 pages
...number is a number that can be divided by it without a remainder ; thus 6 is a multiple of 3. ART. 126> A common multiple of two or more numbers is a number that can be divided by each of them without a remainder ; thus 12 is a common multiple of 3 and 4. ART. 137. The...
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The National Arithmetic on the Inductive System: Combining the Analytic and ...

Benjamin Greenleaf - Arithmetic - 1857 - 452 pages
...which the whole can be put, each kind by itself, and all the bins be full. LEAST COMMON MULTIPLE. 201. A common multiple of two or more numbers is a number that can be divided by each of them without a remainder; thus, 14 is a common multiple of 2 and 7. The least common...
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Introduction to The National Arithmetic: On the Inductive System : Combining ...

Benjamin Greenleaf - Arithmetic - 1857 - 336 pages
...number is a number that can be divided by it without a remainder ; thus 6 is a multiple of 3. AKT. 126i A common multiple of two or more numbers is a number that can be divided by each of them without a remainder ; thus 12 is a common multiple of 3 and 4. AKT. 127. The...
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The National Arithmetic on the Inductive System: Combining the Analytic and ...

Benjamin Greenleaf - Arithmetic - 1858 - 472 pages
...the whole can be put, each kind by •;ii', and all the bins be full. LEAST COMMON MULTIPLE. 201 • A common multiple of two or more numbers is a number that can be divided by each of them without a remainder ; thus, 14 is a common multiple of 2 and 7. The least common...
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The National Arithmetic on the Inductive System: Combining the Analytic and ...

Benjamin Greenleaf - Arithmetic - 1858 - 458 pages
...which the whole can be put, each kind by itself, and all the bins be full. LEAST COMMON MULTIPLE. 201 1 A common multiple of two or more numbers is a number that can be divided by each of them without a remainder; thus, 14 is a common multiple of 2 and 7. The least common...
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