N=01:(1,0) | N=02:(2,1) | N=03:(3,2) | N=04:(4,3) | N=05:(5,4) | N=06:(6,5) | N=07:(7,6) | N=08:(8,7) | N=09:(9,8) | N=10:(10,9) |
N=11:(1,10) | N=12:(2,11) | N=13:(3,0) | N=14:(4,1) | N=15:(5,2) | N=16:(6,3) | N=17:(7,4) | N=18:(8,5) | N=19:(9,6) | N=20:(10,7) |
N=21:(1,8) | N=22:(2,9) | N=23:(3,10) | N=24:(4,11) | N=25:(5,0) | N=26:(6,1) | N=27:(7,2) | N=28:(8,3) | N=29:(9,4) | N=30:(10,5) |
N=31:(1,6) | N=32:(2,7) | N=33:(3,8) | N=34:(4,9) | N=35:(5,10) | N=36:(6,11) | N=37:(7,0) | N=38:(8,1) | N=39:(9,2) | N=40:(10,3) |
N=41:(1,4) | N=42:(2,5) | N=43:(3,6) | N=44:(4,7) | N=45:(5,8) | N=46:(6,9) | N=47:(7,10) | N=48:(8,11) | N=49:(9,0) | N=50:(10,1) |
N=51:(1,2) | N=52:(2,3) | N=53:(3,4) | N=54:(4,5) | N=55:(5,6) | N=56:(6,7) | N=57:(7,8) | N=58:(8,9) | N=59:(9,10) | N=60:(10,11) |
G=1 | G=2 | G=3 | G=4 | G=5 | G=6 | G=7 | G=8 | G=9 | G=10 |
A | B | C | D | E | F | G | H | I | J |
GAP | EUT | BIM | DIM | MOO | GAI | GEN | SUN | YAM | QUI |
C=0 | C=1 | C=2 | C=3 | C=4 | C=5 | C=6 | C=7 | C=8 | C=9 | C=10 | C=11 |
A | B | C | D | E | F | G | H | I | J | K | L |
CHI | CHO | YAN | MOU | SEN | CHJ | NGG | MEI | SAN | YAU | SHT | HOI |
A0:GAP-CHI | B1:EUT-CHO | C2:BIM-YAN | D3:DIM-MOU | E4:MOO-SEN | F5:GAI-CHJ | G6:GEN-NGG | H7:SUN-MEI | I8:YAM-SAN | J9:QUI-YAU |
A10:GAP-SHT | B11:EUT-HOI | C0:BIM-CHI | D1:DIM-CHO | E2:MOO-YAN | F3:GAI-MOU | G4:GEN-SEN | H5:SUN-CHJ | I6:YAM-NGG | J7:QUI-MEI |
A8:GAP-SAN | B9:EUT-YAU | C10:BIM-SHT | D11:DIM-HOI | E0:MOO-CHI | F1:GAI-CHO | G2:GEN-YAN | H3:SUN-MOU | I4:YAM-SEN | J5:QUI-CHJ |
A6:GAP-NGG | B7:EUT-MEI | C8:BIM-SAN | D9:DIM-YAU | E10:MOO-SHT | F11:GAI-HOI | G0:GEN-CHI | H1:SUN-CHO | I2:YAM-YAN | J3:QUI-MOU |
A4:GAP-SEN | B5:EUT-CHJ | C6:BIM-NGG | D7:DIM-MEI | E8:MOO-SAN | F9:GAI-YAU | G10:GEN-SHT | H11:SUN-HOI | I0:YAM-CHI | J1:QUI-CHO |
A2:GAP-YAN | B3:EUT-MOU | C4:BIM-SEN | D5:DIM-CHJ | E6:MOO-NGG | F7:GAI-MEI | G8:GEN-SAN | H9:SUN-YAU | I10:YAM-SHT | J11:QUI-HOI |
1A:GAP-CHI | 2B:EUT-CHO | 3C:BIM-YAN | 4D:DIM-MOU | 5E:MOO-SEN | 6F:GAI-CHJ | 7G:GEN-NGG | 8H:SUN-MEI | 9I:YAM-SAN | 10J:QUI-YAU |
1K:GAP-SHT | 2L:EUT-HOI | 3A:BIM-CHI | 4B:DIM-CHO | 5C:MOO-YAN | 6D:GAI-MOU | 7E:GEN-SEN | 8F:SUN-CHJ | 9G:YAM-NGG | 10H:QUI-MEI |
1I:GAP-SAN | 2J:EUT-YAU | 3K:BIM-SHT | 4L:DIM-HOI | 5A:MOO-CHI | 6B:GAI-CHO | 7C:GEN-YAN | 8D:SUN-MOU | 9E:YAM-SEN | 10F:QUI-CHJ |
1G:GAP-NGG | 2H:EUT-MEI | 3I:BIM-SAN | 4J:DIM-YAU | 5K:MOO-SHT | 6L:GAI-HOI | 7A:GEN-CHI | 8B:SUN-CHO | 9C:YAM-YAN | 10D:QUI-MOU |
1E:GAP-SEN | 2F:EUT-CHJ | 3G:BIM-NGG | 4H:DIM-MEI | 5I:MOO-SAN | 6J:GAI-YAU | 7K:GEN-SHT | 8L:SUN-HOI | 9A:YAM-CHI | 10B:QUI-CHO |
1C:GAP-YAN | 2D:EUT-MOU | 3E:BIM-SEN | 4F:DIM-CHJ | 5G:MOO-NGG | 6H:GAI-MEI | 7I:GEN-SAN | 8J:SUN-YAU | 9K:YAM-SHT | 10L:QUI-HOI |
01: AA | 02: BB | 03: CC | 04: DD | 05: EE | 06: FF | 07: GG | 08: HH | 09: II | 10: JJ |
11: AK | 12: BL | 13: CA | 14: DB | 15: EC | 16: FD | 17: GE | 18: HF | 19: IG | 20: JH |
21: AI | 22: BJ | 23: CK | 24: DL | 25: EA | 26: FB | 27: GC | 28: HD | 29: IE | 30: JF |
31: AG | 32: BH | 33: CI | 34: DJ | 35: EK | 36: FL | 37: GA | 38: HB | 39: IC | 40: JD |
41: AE | 42: BF | 43: CG | 44: DH | 45: EI | 46: FJ | 47: GK | 48: HL | 49: IA | 50: JB |
51: AC | 52: BD | 53: CE | 54: DF | 55: EG | 56: FH | 57: GI | 58: HJ | 59: IK | 60: JL |
01:GAP-CHI | 02:EUT-CHO | 03:BIM-YAN | 04:DIM-MOU | 05:MOO-SEN | 06:GAI-CHJ | 07:GEN-NGG | 08:SUN-MEI | 09:YAM-SAN | 10:QUI-YAU |
11:GAP-SHT | 12:EUT-HOI | 13:BIM-CHI | 14:DIM-CHO | 15:MOO-YAN | 16:GAI-MOU | 17:GEN-SEN | 18:SUN-CHJ | 19:YAM-NGG | 20:QUI-MEI |
21:GAP-SAN | 22:EUT-YAU | 23:BIM-SHT | 24:DIM-HOI | 25:MOO-CHI | 26:GAI-CHO | 27:GEN-YAN | 28:SUN-MOU | 29:YAM-SEN | 30:QUI-CHJ |
31:GAP-NGG | 32:EUT-MEI | 33:BIM-SAN | 34:DIM-YAU | 35:MOO-SHT | 36:GAI-HOI | 37:GEN-CHI | 38:SUN-CHO | 39:YAM-YAN | 40:QUI-MOU |
41:GAP-SEN | 42:EUT-CHJ | 43:BIM-NGG | 44:DIM-MEI | 45:MOO-SAN | 46:GAI-YAU | 47:GEN-SHT | 48:SUN-HOI | 49:YAM-CHI | 50:QUI-CHO |
51:GAP-YAN | 52:EUT-MOU | 53:BIM-SEN | 54:DIM-CHJ | 55:MOO-NGG | 56:GAI-MEI | 57:GEN-SAN | 58:SUN-YAU | 59:YAM-SHT | 60:QUI-HOI |
Explanation | In the `Year Code' (U,Z), `U' is called the `Stem' of the `Year Code' and `Z' is called the `Root' of the `Year Code' in numerology. The value of `U' shows the alphabetical order of the letter that it represents. For example, U=10 means `J'. The value of `Z' shows the location (Zone Number) of the root of a year. It equals to the zone number in the space of the universe in numerology. The `Year Code' (YC) can be found from the table of `Sequence Code of Year Co-ordinates' by the `Year Co-ordinates' (U,Z). `U=(Mod 10)' is a special modulated function such that if `U' is greater than 10 then `U' becomes `U-10' and if `U' is less than 1 then `U' becomes `U+10'. Thus, the value range of `U=(Mod 10)' is from 1 to 10. `Z=(Mod 12)' is a modulated function such that the smallest value of it is 0 and the largest value of it is 11. If Z>11 then `Z' becomes `Z-12' and if `Z' is less than 0 then `Z' becomes `Z+12'. Thus, the value range of `Z=(Mod 12)' is from 0 to 11. `YS=(Mod 60)' is a special modulated function such that the smallest value of it is 1 and the largest value of it is 60. If `YS' is greater than 60 then `YS' becomes `YS-60' and if `YS' is less than 1 then `YS' becomes `YS+60'. Thus, the value range of `YS=(Mod 60)' is from 1 to 60. The `Year Set' Formula is used to find the set of sexagesimal years by a `Year Code'. If the `Year Code' (YC) is (U,Z) and `y' is the year after `Joint of February', roughly on 4th of February in Gregorian calendar, the set of sexagesimal years (y) are y=y+60n, where `n' is an integer. If the date is before `Joint of February', the solar year `y' is `y-1'. The Year Set Formula is: YS=U+5[U-Z-1 (Mod 12)]+3 (Mod 60) |
Example | If the `Year Code' (YC) is `E10', find three recent years. `E' stands for the stem of year U=5 because `E' is the fifth letter in alphabetical order. The root of year is Z=10. Apply the `Year Set' Formula. YS=U+5[U-Z-1 (Mod 12)]+3 (Mod 60). YS=5+5[5-10-1 (Mod 12)]+3 (Mod 60). YS=5+5[-6 (Mod 12)]+3 (Mod 60). YS=5+5[12-6]+3 (Mod 60). YS=5+5x6+3 (Mod 60). YS=38 (Mod 60). Hence, YS=38+60n, where `n' is an integer. If n=30, y=38+60x30. y=1838. If n=31, y=38+60x31. y=1898. If n=32, y=38+60x32. y=1958. So, the recent three years are 1838, 1898 and 1958. |
Explanation | In the `Year Code' (U,Z), `U' is called the `Stem' of the `Year Code' and `Z' is called the `Root' of the `Year Code' in `Prediction Technology and Forensic Mathematics' (PT&FM). The value of `U' shows the alphabetical order of the letter that it represents. For example, U=10 means `J'. In `Prediction Technology and Forensic Mathematics' (PT&FM), the value of `Z' shows the location (Zone Number) of the root of a year. It equals to the zone in the space of the universe. The `Year Code' (YC) can be found from the table of `Sequence Code of Year Co-ordinates' by the `Year Co-ordinates' (U,Z). `U=(Mod 10)' is a special modulated function such that if `U' is greater than 10 then `U' becomes `U-10' and if `U' is less than 1 then `U' becomes `U+10'. Thus, the value range of `U=(Mod 10)' is from 1 to 10. `Z=(Mod 12)' is a modulated function such that the smallest value of it is 0 and the largest value of it is 11. If Z>11 then `Z' becomes `Z-12' and if `Z' is less than 0 then `Z' becomes `Z+12'. Thus, the value range of `Z=(Mod 12)' is from 0 to 11. The `Stem Year Set Formula' is used to find the set of decade years by the `Year Code' of a `Stem'. They are named `Stem Year Set'. `Stem Year Set' are years in Gregorian calendar of modulous 10 such that the elements in the set have same `Stem' but different counting numbers in Gregorian calendar of a solar year. So, this type of solar years in Gregorian calendar belongs to the elements in a special set. If the `Year Code' (YC) is (U,Z) and `y' is the year after `Joint of Year', roughly on 4th of February in Gregorian calendar, the set of decade years (y) are y=y+10n, where `n' is an integer. If the time is before `Joint of Year' in B.C., it is regarded as previous year. That is, the year is `y+1'. If the time is before `Joint of Year' in A.D., it is regarded as previous year. That is, the year is `y-1'. The Stem Year Set Formula for `y' in B.C. is: y=8-U+10n. The Stem Year Set Formula for `y' in A.D. is: y=3+U+10n. |
Example | Given that the Stem (U) of A.D.2012 is `I'. find the two years most close to A.D.2012, having same `Stem' as A.D.2012. Since the alphabetical order of `I' is 9, U=9. Substitute U=9 in the formula, y=3+U+10n. y=3+9+10n. y=12+10n. Since the year numbers of `y1' and `y2' must be one is smaller than `12+10n' and one is greater than `12+10n', divide 2012 by 10 to find the approximated value of `y1' and `y2'. The quotient is the approximated value of `n'. Therefore, y1=12+10x199. y1=2002. y2=12+10x201. y2=2022. Hence, the years most closely to A.D.2012 of `Stem I' is A.D.2002 and A.D.2022. Generalizing it, if A.D.2012 is the year of bad luck to a particular person, it means that `Stem I' is a bad year to that person. Other years with `Stem I' can be found out by `Stem Year Set Formula'. So, besides A.D.2012, A.D.2022, A.D.2032, A.D.2042, A.D.2052, A.D.2062 and so on are bad year to that person. |
Explanation | In the `Year Code' (U,Z), `U' is called the `Stem' of the `Year Code' and `Z' is called the `Root' of the `Year Code' in `Prediction Technology and Forensic Mathematics' (PT&FM). The value of `U' shows the alphabetical order of the letter that it represents. For example, U=10 means `J'. In `Prediction Technology and Forensic Mathematics' (PT&FM), the value of `Z' shows the location (Zone Number) of the root of a year. It equals to the zone in the space of the universe. The `Year Code' (YC) can be found from the table of `Sequence Code of Year Co-ordinates' by the `Year Co-ordinates' (U,Z). `U=(Mod 10)' is a special modulated function such that if `U' is greater than 10 then `U' becomes `U-10' and if `U' is less than 1 then `U' becomes `U+10'. Thus, the value range of `U=(Mod 10)' is from 1 to 10. `Z=(Mod 12)' is a modulated function such that the smallest value of it is 0 and the largest value of it is 11. If Z>11 then `Z' becomes `Z-12' and if `Z' is less than 0 then `Z' becomes `Z+12'. Thus, the value range of `Z=(Mod 12)' is from 0 to 11. The `Root Year Set Formula' is used to find the set of duodecimal years by the `Year Code' of a `Root'. They are named `Root Year Set'. `Root Year Set' are years in Gregorian calendar of modulous 12 such that the elements in the set have same `Root' but different counting numbers in Gregorian calendar of a solar year. So, this type of solar years in Gregorian calendar belongs to the elements in a special set. If the `Year Code' (YC) is (U,Z) and `y' is the year after `Joint of Year', roughly on 4th of February in Gregorian calendar, the set of duodecimal years (y) are y=y+12n, where `n' is an integer. If the time is before `Joint of Year' in B.C., it is regarded as previous year. That is, the year is `y+1'. If the time is before `Joint of Year' in A.D., it is regarded as previous year. That is, the year is `y-1'. The Root Year Set Formula for `y' in B.C. is: y=9-Z+12n. The Root Year Set Formula for `y' in A.D. is: y=4+Z+12n. |
Example | Given that the Root (Z) of A.D.2021 is `1'. find the two years most close to A.D.2021, having same `Root' as A.D.2021. Since the value of `Root 1' is 1, Z=1. Substitute Z=1 in the formula, y=4+Z+12n. y=4+1+12n. y=5+12n. Since the year numbers of `y1' and `y2' must be one is smaller than `5+12n' and one is greater than `5+12n', divide 2012 by 12 to find the approximated value of `y1' and `y2'. The quotient is the approximated value of `n'. Therefore, y1=5+12x167. y1=2009. y2=5+12x169. y2=2033. Hence, the years most closely to A.D.2021 of `Root 1' is A.D.2009 and A.D.2033. Generalizing it, if a person was born in A.D.2018 and it is experienced that A.D.2021 is the year of bad luck to that person, it means that `Root 1' is a bad year to that person. Other years with `Root 1' can be found out by `Root Year Set Formula'. So, besides A.D.2021, A.D.2033, A.D.2045, A.D.2057, A.D.2069 and so on are bad year to that person. |