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" Find the greatest square in the first- period on the left, and place its root on the right after the manner of a quotient in division. Subtract the square of the root from the first period, and to the remainder bring down the second period for a dividend. "
Elements of Algebra: Including Sturms' Theorem - Page 206
1848 - 368 pages
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Staniford's Practical Arithmetic ...: Adapted Principally to Federal Currency

Daniel Staniford - Arithmetic - 1818 - 332 pages
...requires. 2. Find the first figure in the root, and subtract its power from the given number, and lo the remainder bring down the first figure of the next period and call it the dividend. 3. Involve the root already found to the power next inferior to that which is given,...
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An Introduction to Algebra Upon the Inductive Method of Instruction

Warren Colburn - Algebra - 1825 - 400 pages
...left hand period, and write the root in the place of a quotient* Subtract the power from the period. To the remainder bring down the first figure of the next period for a dividend. Multiply the second power of the root already found, by three to form a divisor. See...
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The American Tutor's Assistant, Improved: Or, A Compendious System of ...

Zachariah Jess - Arithmetic - 1827 - 226 pages
...from the number of periods in the given number, as are represented by the last figure brought down. 8. To the remainder, bring down the first figure of the next period, for a new dividend. 9. Find a new divisor, as betöre, and thus proceed to the end, EXAMPLES. 1. What...
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The Mercantile Arithmetic, Adapted to the Commerce of the United States, in ...

Michael Walsh - Arithmetic - 1828 - 318 pages
...that number from as many points of the given power as is brought down, beginning at the lowest place, and to the remainder bring down the first figure of the next point for a new dividend. 7. Find a new divisor, and proceed in all respects as before. *.•' * EXAMPLES....
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An Introduction to Algebra Upon the Inductive Method of Instruction

Warren Colburn - Algebra - 1828 - 330 pages
...left hand period, and write the root in the place of a quotient. Subtract the power from the period. To the remainder bring down the first figure of the next period for a dividend. Multiply the second power of the root already found by three, to form a divisor. See...
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Elements of Algebra

William Smyth - Algebra - 1830 - 278 pages
...left hand period, and write the root in the place of a quotient. Subtract the power from the period. To the remainder bring down the first figure of the next period for a dividend. Multiply the square of the root already found by three to form a divisor. See how many...
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Conkling's Arithmetic: The Young Arithmetician's Guide to a Knowledge of ...

Thomas Conkling (W.) - Arithmetic - 1831 - 302 pages
...power, (always,) from as many periods of the given number, as you have found figures in the root. 8. To the remainder, bring down the first figure of the next period, for a new dividend. 9. Find a new divisor, as before, and, in like manner,proceed, till the whole is...
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Mercantile Arith

Michael Walsh - 1831 - 348 pages
...that number from as many points of the given power as are brought down, beginning at the lowest place, and to the remainder bring down the first figure of the next point for a new dividend. 7. Find a now divisor, and proceed in all respects as before. EXAMPLES. 1....
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The Youth's Assistant in Theorhetic [sic] and Practical Arithmetic: Designed ...

Zadock Thompson - Arithmetic - 1832 - 182 pages
...units according to the required root. Find the first figure of the root by trial, subtract its power from the first period, and to the remainder bring down the first figure in the next period, and call these the dividend. Involve the root already found to the next inferior...
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The Youth's Assistant in Theoretic and Practical Arithmetic: Designed for ...

Zadock Thompson - Arithmetic - 1832 - 186 pages
...units according to the required root. Find the first figure of the root by trial, subtract its power from the first period, and to the remainder bring down the first figure in the next period, and call these the dividend. Involve the root already found to the next inferior...
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