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" FRACTION is a negative number, and is one more than the number of ciphers between the decimal point and the first significant Jigure. "
A Table of Logarithms: Of Logarithmic Sines, and a Traverse Table - Σελίδα 8
1836 - 177 σελίδες
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Elements of Surveying: With the Necessary Tables

Charles Davies - 1830 - 318 σελίδες
...would be —3. It is, indeed, evident, that the negative characteristic will always be one greater, than the number of ciphers between the decimal point and the first significant place of figures ; therefore, the logarithm of a decimal fraction is found, by considering it as a whole number, and...

Elements of Surveying

Charles Davies - 1830 - 390 σελίδες
...it as aw/ioL number, and then prefixing to its logarithm a negative characteristic, greater by unity than the number of ciphers between the decimal point and the first significant place oj figures. 19. To find, in the tables, a number answering to a given logarithm. Search, in the column...

The Theory and Practice of Surveying: Containing All the Instructions ...

Robert Gibson - 1833 - 436 σελίδες
...would be — 3. It is, indeed, evident, that the negative characteristic will always be one greater than the number of ciphers between the decimal point and the first significant place of figures ; therefore, the logarithm of a decimal fraction is found, by considering it as a whole number, and...

Elements of Geometry and Trigonometry

Adrien Marie Legendre - 1836 - 394 σελίδες
...and then prefixing to the decimal part of its logarithm a negative characteristic, greater by unity than the number of ciphers between the decimal point and the first significant place of figures. Thus, the logarithm of .0412, is 2.614897. PROBLEM. To find from the table, a number answering to a...

Elements of Surveying: With a Description of the Instruments and the ...

Charles Davies - 1839 - 376 σελίδες
...would be — 3. It is, indeed, evident, that the negative characteristic will always be one greater than the number of ciphers between the decimal point and the first significant figure. Therefore, the logarithm of a decimal fraction is found, by considering it as a whole number,...

Elements of Surveying: With a Description of the Instruments and the ...

Charles Davies - 1839 - 376 σελίδες
...would be — 3. It is, indeed, evident, that the negative characteristic will always be one greater than the number of ciphers between the decimal point and the first significant figure. Therefore, the logarithm of a decimal fraction is found, by considering it ' as a whole number,...

Elements of Surveying, and Navigation: With a Description of the Instruments ...

Charles Davies - 1841 - 414 σελίδες
...would be — 3. It is, indeed, evident, that the negative characteristic will always be one greater than the number of ciphers between the decimal point and the first significant figure. Therefore, the logarithm of a decimal fraction is found, by considering it as a whole number,...

Elements of Algebra: Including Sturms' Theorem

Charles Davies - 1845 - 382 σελίδες
...logarithm of its numerator, regarded as a whole number, a negative characteristic greater by unity than the number of ciphers between the decimal point and the first significant figure. To demonstrate this in a general manner, let a denote the numerator of a decimal fraction,...

Elements of Plane and Spherical Trigonometry: With Practical Applications

Benjamin Greenleaf - 1862 - 532 σελίδες
...Ttte characteristic of the logarithm о/1 ANY DECIMAL FRACTION is a negative number, and it one more than the number of ciphers between the decimal point and the first significant figure. For it has been shown (Art 4) that the logarithm of 0.1 is — 1, of 0.01 is — 2, of 0.001...

Elements of Geometry and Trigonometry: With Practical Applications

Benjamin Greenleaf - 1862 - 518 σελίδες
...characteristic of the logarithm O/'ANY DECIMAL FRACTION is a negative number, and is one more tftan the number of ciphers between the decimal point and the first significant figure. For it has been shown (Art. 4) that the logarithm of 0.1 is — 1, of 0.01 is — 2, of 0.001...




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