1460940388-a5220e46-cb4e-4ca1-a523-f98e7b21c3b4

1. A method of playing a card game comprising:
a) providing a physical deck of playing cards comprising at least a standard fifty-two card deck with at least one additional bonus hand card;
b) displaying an initial first hand of at least five cards all face up;
c) if the initial first hand contains a bonus hand card, displaying an initial second hand having the same four cards face up other than the bonus hand card as the initial first hand plus one additional face down card;
d) selecting none, one or more of the face up cards from the initial first hand as cards to be held, discarding the unselected cards and the bonus hand card and displaying replacement cards for the discarded cards resulting in a final first hand;
e) if the initial second hand has been displayed, selecting none, one or more of the face up cards from the second hand as cards to be held, discarding the unselected cards and the additional face down card and displaying face up replacement cards for the discarded cards resulting in a final second hand;
f) determining the poker hand ranking of the resulting cards of the final first hand and the final second hand.
2. The method of claim 1 further including the steps of:
a) a player making a wager;
b) paying the player a pre-established amount based on the amount of the wager if the resulting cards of the final first hand comprise a predetermined poker hand ranking; and
c) paying the player a pre-established amount based on the amount of the wager if the resulting cards of the final second hand comprise a predetermined poker hand ranking.
3. The method of claim 1 in which the same cards are held in both the initial first hand and the initial second hand.
4. The method of claim 1 in which the same or different cards are held in both the initial first hand and the initial second hand.
5. A method of playing a card game comprising:
a) providing a physical deck of playing cards comprising at least a standard fifty-two card deck with at least one additional bonus hand card;
b) displaying an initial first hand of at least five cards all face up;
c) if the initial first hand contains a bonus hand card, displaying an additional card into the first hand; and displaying an initial second hand having the same five cards face up other than the bonus hand card as the initial first hand;
d) selecting none, one or more of the face up cards from the initial first hand as cards to be held, discarding the unselected cards and displaying replacement cards for the discarded cards resulting in a final first hand;
e) if the initial second hand has been displayed, selecting none, one or more of the face up cards from the second hand as cards to be held, discarding the unselected cards and displaying face up replacement cards for the discarded cards resulting in a final second hand;
f) determining the poker hand ranking of the resulting cards of the final first hand and the final second hand.
6. The method of claim 5 further including the steps of:
a) a player making a wager;
b) paying the player a pre-established amount based on the amount of the wager if the resulting cards of the final first hand comprise a predetermined poker hand ranking; and
c) paying the player a pre-established amount based on the amount of the wager if the resulting cards of the final second hand comprise a predetermined poker hand ranking.
7. The method of claim 5 in which the same cards are held in both the initial first hand and the initial second hand.
8. The method of claim 5 in which the same or different cards are held in both the initial first hand and the initial second hand.
9. A method of playing a card game comprising:
a) providing a physical deck of playing cards comprising at least a standard fifty-two card deck;
b) displaying an initial first hand of at least five cards all face up;
c) if the initial first hand contains a predetermined arrangement of one or more cards, displaying an initial second hand having the same cards face up as are displayed in the initial first hand;
d) selecting none, one or more of the face up cards from the initial first hand as cards to be held, discarding the unselected cards and displaying replacement cards for the discarded cards resulting in a final first hand;
e) if the initial second hand has been displayed, selecting none, one or more of the face up cards from the second hand as cards to be held, discarding the unselected cards and displaying face up replacement cards for the discarded cards resulting in a final second hand;
f) determining the poker hand ranking of the resulting cards of the final first hand and the final second hand.
10. The method of claim 9 further including the steps of:
a) a player making a wager;
b) paying the player a pre-established amount based on the amount of the wager if the resulting cards of the final first hand comprise a predetermined poker hand ranking; and
c) paying the player a pre-established amount based on the amount of the wager if the resulting cards of the final second hand comprise a predetermined poker hand ranking.
11. The method of claim 9 in which the same cards are held in both the initial first hand and the initial second hand.
12. The method of claim 9 in which the same or different cards are held in both the initial first hand and the initial second hand.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A method for gain regulation of a gamma ray detector in a downhole tool, a structure of the downhole tool comprises at least one element, the method comprising:
generating neutrons with the downhole tool;
acquiring an energy spectrum of gamma rays induced by the neutrons, the energy spectrum comprising a plurality of gamma ray lines characteristic of the at least one element of the structure of the downhole tool;
selecting a first peak in the energy spectrum corresponding to at least a first gamma ray line having a characteristic energy; and
estimating a gain of the gamma-ray detector based on a position of the first peak in the acquired energy spectrum.
2. The method according to claim 1, wherein the energy spectrum spans a time window during which the gamma-rays induced are attributable to at least one of 1) inelastic gamma-rays, 2) capture gamma-rays and 3) activation gamma-rays.
3. The method according to claim 1, wherein the energy spectrum comprises a net inelastic spectrum due to subtraction of at least a portion of the energy spectrum attributable to at least one of capture gamma-rays and activation background.
4. The method according to claim 1, wherein the element of the downhole tool structure comprises material selected from a group consisting of enriched Boron-10 atoms, Iron atoms, Chromium atoms, Manganese atoms, Nickel atoms, Titanium atoms, Cobalt atoms, Aluminum atoms, and any combination thereof.
5. The method according to claim 1, further comprising:
calculating a derivative around the first peak, and
determining the position of the first peak based on where the derivative has a predefined value.
6. The method according to claim 5, wherein the first peak comprises a compound of a plurality of gamma ray lines spaced closely such that a distance between any two peak positions is smaller than a predetermined number of standard deviations.
7. The method according to claim 5, wherein the first peak is detectable in a varying background in the energy spectrum.
8. The method according to claim 5, wherein the derivative is a first order derivative, a second order derivative, or a higher order derivative.
9. The method according to claim 8, further comprising estimating a resolution of the detector based on the second order derivative.
10. The method according to claim 1, further comprising regulating the gain of the detector.
11. The method according to claim 1, further comprising:
identifying a second peak in the energy spectrum that corresponds to at least one second gamma ray line having a second characteristic energy; and
estimating an offset and a gain for the gamma-ray energy spectrum measured by the detector based on positions of the first and second peaks along the measured energy spectrum.
12. The method according to claim 11, further comprising:
identifying a third peak in the energy spectrum that corresponds to at least one third gamma ray line having a third characteristic energy; and
estimating linearity, offset and gain of energy conversion for the detector based on positions of the first, second and third peaks along the measured energy spectrum.
13. A system, comprising:
a tool comprising:
a tool structure comprising at least one element;
a neutron source that generates neutrons;
a gamma-ray detector that measures an energy spectrum of gamma rays induced by the neutrons, the energy spectrum comprising a plurality of gamma ray lines characteristic of the at least one element of the tool structure; and
a processor that receives the energy spectrum from the gamma-ray detector, selects a first peak in the energy spectrum corresponding to at least a first gamma ray line having a characteristic energy, and estimates a gain of the gamma-ray detector based on a position of the first peak along the measured energy spectrum.
14. The system according to claim 13, wherein the at least one element of the tool structure comprises material selected from a group consisting of Boron-10 atoms, Iron atoms, Chromium atoms, Manganese atoms, Nickel atoms, Titanium atoms, Cobalt atoms, Aluminum atoms, and any combination thereof.
15. The system according to claim 13, wherein the processor determines the position of the first peak by calculating a derivative around the first peak, and determining the position of the first peak based on where the derivative has a predetermined value.
16. The system according to claim 15, wherein the derivative comprises one of a first order derivative, a second order derivative, and a higher order derivative.
17. The system according to claim 13, further comprising a controller that regulates the gain of the detector based on a difference between the estimated gain and a pre-defined threshold.
18. The system according to claim 13, wherein the tool structure comprises at least one of: a tool chassis, a mud channel, a collar, a shielding material, and a housing, and the element of the tool structure comprises material selected from a group consisting of Boron atoms, Iron atoms, Chromium atoms, Manganese atoms, Nickel atoms, Titanium atoms, Cobalt atoms, Aluminum atoms, and any combination thereof.
19. A method comprising:
generating neutrons;
acquiring an energy spectrum of gamma rays induced by the neutrons identifying a first peak in the energy spectrum of gamma rays;
analyzing the first peak for relationship to a characteristic energy level associated with an elemental composition in or proximate to a gamma-ray detector;
estimating a position of the first peak along the energy spectrum; and
calibrating a gain of the gamma-ray detector based on the estimated position of the first peak.
20. The method according to claim 19, wherein estimating the position of the first peak comprises:
calculating a derivative around the first peak, and
determining the position of the first peak as a function of where the derivative is equal or substantially equal to zero.
21. The method according to claim 20, wherein the derivative comprises one of a first order derivative, a second order derivative, and a higher order derivative.
22. The method according to claim 20, wherein the first peak comprises a compound of a plurality of gamma ray lines spaced closely such that a distance between any two peak positions is smaller than a predetermined number of standard deviations.
23. The method according to claim 22, wherein the first peak comprises a compound of gamma ray lines having energy levels at approximately 0.48 MeV and 0.511 MeV, and the elemental composition in or proximate to the gamma-ray detector comprises a boron shield disposed about the gamma ray detector.
24. The method according to claim 20, wherein the first peak is detectable in a varying background in the energy spectrum.
25. The method according to claim 19, wherein analyzing the first peak comprises comparing the first peak to a characteristic energy level associated with an elemental composition comprising material selected from a group consisting of Boron atoms, Iron atoms, Chromium atoms, Manganese atoms, Nickel atoms, Titanium atoms, Cobalt atoms, Aluminum atoms, and any combination thereof.
26. The method according to claim 19, further comprising performing pre-processing to subtract a background portion of the measured energy spectrum.
27. The method according to claim 19, further comprising mathematically transforming the energy spectrum prior to analyzing the first peak to reduce an error in the estimated gain due to changes in a background portion of the measured energy spectrum.
The method according to claim 19, further comprising repeating analyzing, estimating and calibrating at intervals in a range between one second and 60 seconds when a count rate associated with the first peak is at least a pre-determined rate.
28. The method according to claim 19, further comprising changing the gain to minimize a difference of the estimated position of the first peak and a predefined position of the first peak.