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The calculations in the astronomical tables which follow are made by Berlin H. Wright, De Land, Fla.

TIDE TABLES.

(From U. S. Coast Survey.)

To find the time of high water for any place given in the table below apply the correction opposite the place to the times of high water for its respective port given for every day on the twelve calendar pages of this almanac. Add the correction to time of high water when it is plus, and subtract it when it is minus. Example: To find time of high water at Rockland, Me., on January 12, 1913

Time of high water at Boston, January 15.
Correction for Rockland, Me. (see below)...

2 25 a. m. -0 26

1 59 a. m.

Time of high water at Rockland, Me., January 15. Add 6 h. (or, more exactly, one-fourth of the daily difference between two successive tides at the desired date) to this for the succeeding low water or subtract same for preceding low water, and apply 12 h. in the same way for the other high water of the same date.

Corrections to

times of high water at Boston, for: Eastport, Me.

+1 12 City I., L. I. 8., N.Y
-048 College P.,ER.,N.Y.
+0 81/Flushing, E. R.,N.Y.
+2 56 Pot Cove, Ast., N.Y.
+887 B'kwell's I. L., N.Y.

Cor

rec

tion.

8.46

-10 17

8 1

-7 46

-6 15 -67 -259 +0 28 + 0 5 + 0 13 + 0 55 +1 4 + 911 +9 25

1 22

+57 -011

0 18

Cor- Corrections to
Cor- Corrections to
rec-times of high water] rec-times of high water
tion. at New York for: tion. at Charleston for:
-085 Block Island, R. I..-1 2| Dover, Del......
West Quoddy H'd, Me-0 49 Stonington, Conn.... +0 49 Sea Breeze, N. J....
Machiasport, Me....0 40 New London, Conn.. +1 6 New Castle, Del..
Indian Harbor, Me... -0 55 Norwich, Conn...... +1 47 Wilmington, Del..
Mt. Desert Nar., Me.-0 28 Middletown, Conn... +5 1 Gray's F., S. R., Pa.
Bass H.. Mt.D.I.,Me-0 45 Hartford, Conn..... +6 58 Phil., Wash ave..
8.W. H. Mt. D. I.,Me-044 Duck Island, Conn.. +2 23 Trenton, N. J..
Rockland, Me..
-0 26 New Haven, Conn.. +8 5 Rehoboth, Del..
Oceanville, D. I., Me0 86 Stamford, Conn... +8 4 Ocean City, Md..
Bangor, Me.
+8 7 Cape Chas. L., Va..
Boothbay, Me.....
+8 21 Old Point Com., Va.
Bath, Me..
+8 40 Newport News, Va..
Gardiner, Me........
+3 2 Peaersburg, Va..
Augusta, Me........
+1 50 Richmond, Va....
Portland, Me....... 084E. 41st st., N. Y. C. +1 87 Yorktown, Va....
Portsmouth, N. H.. -0 15 E 27th st., N. Y. C. +1 23 Pt. L., P. R., Md.
Isles of ShoBIL.,N.H.-0 20 Brooklyn, N.Y., N.Y. +0 40 Alexandria, P. R., Va
Newburyport, Mass -015B'klyn Bridge, N. Y. +0 20 Wash, N. Y., D. C..
Gloucester, Mass.... -086 E.110th st., N. Y. C. +2 6 Crisfield, C. B., Md.
Salem, Mass.
011 High Bridge, N.Y.C. +221 Cambridge, C.B., Md.
Nahant, Mass.
-0 18 Kingsbridge, N.Y.C. +0 56 Oxford, Md..
Boston Light, Mass. -0 18 Willets Point, N. Y. +8 7 Annapolis, Md.
Plymouth, Mam. -009 Glen C., L.I.8., N.Y. +8 6 Balt., Fells Pt., Md.
Wellfleet, C.C., Mas -0 11 Oyster B.,L.I.8.,N.Y. +8 6 Elkton, Md....
Provincetown, Mass. -01 Nthpt. H.,L.I.S.,N.Y +8 5 Pt. Dep. 8. R., Md.
Siasconset, Nant'k I +0 1 Trum. B., L.I.S.,N.Y +2 11 Virginia Beach, Va..
Nantucket H., Mass. +0 55 Sag Har.,L.I.S.,N.Y.) +2 19 Hatteras Inlet, N.C.
Edgartown, Mass.... +0 44 Montauk, Pt. L.,N.Y.-0 1 Cape Lookout, N. C.
No Mans L'd I.,Mass 46 Bellport, N. Y....... +2 39 Beaufort, N. C....
Viney'd Hav'n, Mass +0 11 Fire Isl'd Inlet, N.Y. +0 56 Carolina Beach, N.C.
Falmouth, Mass.....-1 8 Rockaway Inlet, N.Y.-0 35 Wilmington, N. C...
Tarpaulin Cove, Mass-841 Coney Island, N. Y.-0 42 B'nerman's B., N.C.
Cuttyhunk L., Mass.-4 1 Tottenville, S.I.,N.Y.0 21 White Hall, N. C...
Woods Hole, Mass.. -255 Fort Tom., S.I.,N.Y.-0 23 Georgetown, 8. C...+1 16
Bird Island L., Mass-8 43 Ossining, H.R., N.Y. +1 49 Bluff Pt., W.R., S.C.
New Bedford, Mass.-8 40 Albany H. R., N. Y. +9 88 Port Royal, S. C...
Newport, R. I... -848 Eliz'port, N. B., N.J. +0 10 Beaufort, 8. C.....
Bristol, R. I.......
0 87 Savannah, Ga....
Pawtuxet, R. I......
Providence, R. I........

3 34 Long Branch, N. J.
8 21 Atlantic City, N. J..-0 28 Warsaw Sound, Ga..
-8 28 Cape May City, N.J.-0 16 St. Andrew S., Ga..

4.59

-356 -323 -288 - 0 50 2.10

2 41 0 0

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TIME CALCULATIONS AND EXPLANATIONS OF SIGNS AND ABBREVIATIONS.

All the calculations except the Moon's Phases, Tides and Seasons are in mean local time. (See table for its conversion into Standard Time.) The Sun's rising and setting is for the upper limb and corrected for refraction. The signs used are as follows: o, conjunction or near approach, at which time a line from the North Star through one will also pass through the other; 8, opposition or 180° from the Sun, at which time the Superior Planets are the brightest; II, quadrature or 90° from the Sun;, Sun; , Earth; , Mercury; 9, Venus; o, Mars; 4, Jupiter; h, Saturn; 8, Uranus; W, Neptune;, Moon generally; 2, Ascending Node; U, Descending" Node.

Per.-Perihelion, or nearest to Sun; applied to Planets.
Aph.-Aphelion, or furthest from Sun; applied to Planets.
Per.-Perigee, or nearest to Earth; applied to the Moon.
So.-Southing, or Meridian Passage.

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EXPLANATION OF THE CALENDAR PAGES.

Time.

All the calculations in The Tribune Almanac are based upon mean or clock time unless otherwise stated. The Sun's rising and setting are for the upper limb, corrected for parallax and refraction. In the case of the Moon no correction is needed, as in the Sun, for "parallax and refraction"; with her they are of an opposite nature and just balance each other. The figures given, therefore, are for the Moon's centre on a true horizon, such as the ocean or a large plain affords.

STANDARD AND LOCAL TIME TABLES.

To obtain standard time take local time and add or subtract the figures given.
Standard Correc

of

Division,

Eastern

tion.

Minutes.

5

+31

Standard Correc

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6

Lynchburg, Va..

Eastern

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+ 43

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9

18

+ 17

0

8

8

15

20

19

14

6

15

10

8

10

4

86

19

+23

+ 2

+13

+ 29

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The following is the table of times, based upon the meridian used by the United States and Canada:

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It is obvious that to express the time of rising and setting of the Sun and Moon in standard time would limit the usefulness of such data to the single point or place for which they were computed, while in mean time they are practically correct for places as widely separated as the width of the continent, as already explained, and persons having the mean time may easily ascertain the correct standard time of any event by making use of the table on this page.

The number of cigarettes manufactured in the United States in 1910 was 8,644,637,090.

The calculations in each of the geographical divisions of each calendar page will apply with sufficient accuracy to all places in the contiguous North American zones indicated by the headings of the divisions. This statement is based on the fact that in the same latitude, or in the same line running due east and west, the Sun and Moon rise and set at almost the same moment of local or mean time, the difference in extremes being so slight as to be of no importance for ordinary purposes, except in the case of the Moon's rising, southing and setting, when 6m. for Pacific Coast points and 3m. for Mississippi River Valley region, including Chicago, etc., must be added, or 2m. for each hour of longitude.

Map of the Standard Time Belts.

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ATLANTIC OCEAN

The heavy dotted lines show the arbitrary divisions of time in the United States. The plus and minus marks on either side of the meridian lines show whether it is necessary to add to or subtract from the standard time of points east or west of these lines to arrive at actual, or mean local, time. See table on page 30.

STANDARD TIME.

For the convenience of the railroads and business in general a standard of time was established by mutual agreement in 1888, and it is by this method of calculation that trains are now run and local time is regulated. In accordance with this system the United States extending from 65° to 125° west longitude is divided into four time sections, as shown on the map. Inside of each of these sections standard time is uniform, and the time of each section differs from that next to it by exactly one hour. If the standard time correction for any place not enumerated in the table be desired proceed as follows: Locate the place, as any one can approximately on this map, and then subdivide the hour space in which the place is until the distance in time (60m. one space) from that meridian within whose bounds the place is located is apparent. Then add or subtract the result to mean time as the sign at the top of the map indicates. Example: What will be the standard time of sunrise July 1 at Penn Yan, N. Y.? The map does not give the lines of latitude and longitude, but most people can locate their own place in its respective State on the map with sufficient correctness. By this means I locate Penn Yan at about one eighth of the distance between the 75th and 90th meridians and within the Eastern time zone. will give 8m. to be added, or 4 34.

ERAS OF TIME.

The Gregorian year 1913 corresponds to the following eras:

From July 4 the 138th year of the independence of the United States.
The year 1331 of the Mahometan era, beginning December 22, 1912.

1332 begins November 30, 1913.

The year 8022 of the Greek Church, beginning January 14.

This

The year

The year 5673-'74 (nearly) of the Jewish era. Year 5674 begins at sunset October 1.

The year 2573 of the Japanese era, beginning February 18.

The year 6626 of the Julian Period,

The year 7421-22 of the Byzantine era, the year 7422 beginning September 1. The 1st day of January is the 2,419,769th day since the commencement of the Julian Period.

The third largest city in Italy is Rome, which in 1909 had a population of 575.000.

752 B. C.

..July 15,

432 B. C.

DATES OF BEGINNINGS OF ERAS AND OTHER PERIODS.

Name.
Began.
Grecian, mundane.. Sept. 1, 5598 B. C.
Constantinople, civil..Sept. 1, 5508 B. C.
Alexandrian
.Aug. 29, 5502 B. C.
Antioch, mundane...Sept. 1, 5492 B. C.
Julian Period.. .....Jan. 1, 4713 B. C.
Mundane, Usher.......Oct., 4004 B. C.
Mundane, Jewish......Oct. 1. 3761 B. C.
Abraham
..Oct. 1, 2015 B. C.
Olympiads
.July 1, 776 B. C.

Foundation of Rome. April 24,
Methonic Cycle.

Spanish Era.
Actian
Augustan

Usual Christian.
Destruction of

Jerusalem

Era of the Macca-
bees

Name.

-Began.

Julian Year, acc. to

Usher

..Oct. 19,

46 B. C.

.Jan. 1,

38 B. C.

. Jan. 1,

30 B. C.

. Feb. 14,

27 B. C.

...Jan. 1,

1 A. D.

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287 A. D.

Macedonian, Seleucidæ,

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295 A. D.

Sept. 1,

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552 A. D.

Tyrian

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Sidonian

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Mahometan Hegira... July 16,
Persian of Yezdegird..June 16,

622 A. D.

632 A. D.

Cæsarian, of Antioch. Sept. 1,

48 B. C.

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Explanatory Note.-The Dominical Letter or letters (two for Leap Year), or Sunday Letters, indicates the day of the year on which the first Sunday occurs, the first seven letters of the alphabet being used. Thus for 1911 the Dominical Letter was A, the first letter of the alphabet, and hence the first day of the year will be the first Sunday of the year. In Leap Years two letters are used, the first being for January and February and the latter, being the preceding letter, answers for the last ten months in order to maintain the cycle. The Golden Number is that number of a cycle of 19 years, which shows how many years have passed since New Moon fell on January 1, for in nearly 19 years the Solar and Lunar years nearly come together. The chief use of this cycle is in fixing the date of Easter, and in this same connection is used the Epact. The Solar Cycle is the number of years that have elapsed since the days of the week fell on the same days of the year, or when there will be, therefore, a recurrence of the Dominical or Sunday Letter. This would be the case every seven years but for Leap Year; hence, four times seven is the cycle, or 28 years. It is the remainder found by adding 9 to the year and dividing the sum by 28. The Roman Indiction is a cycle of 15 years and is of no utility except to chronologers. It is the remainder found by adding 3 to the year and dividing by 15. The Julian Period is a cycle of 7980 years, and is the product of the three cycles-Golden Number (19), Solar Cycle (28) and Roman Indiction (15) and hence shows the time when these three cycles will coincide, or begin at the same time. The first of this cycle will be completed in the year 2267. It is the year +4713. The Dionysian Period is a cycle of 532 years, and is also called the Great Paschal Cycle, being the product of a complete Solar and Lunar Cycle (28x19). It is the remainder found by adding 457 to the year and dividing by 532, and with the Julian Period is chiefly used by chronologers. The Jewish Lunar Cycle is always three less than the Golden Number, and is used by the Jews in fixing the time of their festivals.

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The fishery products of Nova Scotia in 1910 were valued at about $11,000,000. From 1870 to 1909 these fisheries yielded $278,000,000.

FIXING THE DATE OF EASTER.

Faster, according to the traditional regulation of the Council of Nice, must be determined according to the following conditions: 1, Easter must be celebrated on a Sunday; 2, this Sunday must follow the fourteenth day of the paschal moon, so that if the fourteenth day of the paschal moon falls on a Sunday, then Easter must be celebrated on the Sunday following; 3, the paschal moon is that of which the fourteenth day falls on or next follows the day of the vernal equinox; 4, the equinox is fixed invariably in the calendar on March 21. This regulation is to be construed according to the tabular full moon as determined from the epact, and not by the true full moon, which, in general, occurs one or two days earlier.

EMBER DAYS.

Wednesday, Friday and Saturday after: First Sunday in Lent, February 12, 14 and 15; March 1 and 2; Pentecost, May 14, 16 and 17; September 14-September 17, 19 and 20; December 13-December 17, 19 and 20.

GREEK CHURCH OR RUSSIAN CALENDAR, A. D. 1913; A. M. 8022.

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The difference between old and new style will continue to be thirteen days until February 29, 2100.

*Observed in Russia only.

CHINESE CALENDAR.

The year 1913 would have corresponded nearly with the Chinese year 4610, or the fiftieth year of the seventy-sixth cycle of sixty years. The new republican government of China has decided, however, to put the Gregorian calendar in force from January 1, 1913.

JEWISH OR HEBREW CALENDAR. Year 5673-74, A. M.
The Jewish year 5673 is the 11th of the 299th cycle of 19 years.

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Cuba's exports of sugar cane and its products were valued in 1910 at $101,500,000— 70.28 per cent of the total exports.

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