1460729460-96b77aee-14d7-4e0b-a3d9-5954eaf20b93

1. A puzzle with combined interlocking members, comprising R interlocking members, of which R 7, each having a square cross-sectional shape of 2 unit lengths\xd72 unit lengths; said interlocking member being composed of two ends and a central portion of 4 unit lengths; said central portion being provided with at least a first surface and a corresponding second surface; said first surface being provided with a first block, a second block, a third block, a fourth block, a fifth block, a sixth block, a seventh block and an eighth block; said the second surface being provided with a ninth block, a tenth block, an eleventh block, a twelfth block, a thirteenth block, a fourteenth block, a fifteenth block and a sixteenth block; so that the interlocking members are available with different shapes, of which 6 interlocking members of R interlocking members can be assembled into at least two configurations.
2. A puzzle with combined interlocking members, comprising R interlocking members, of which R=14, each having a square cross-section shape of 2 unit lengths\xd72 unit lengths; said interlocking member being composed of two ends and a central portion of 4 unit lengths; said central portion being provided with a first surface and a corresponding second surface; said first surface being provided with a first block, a second block, a third block, a fourth block, a fifth block, a sixth block, a seventh block and an eighth block; said second surface being provided with a ninth block, a tenth block, an eleventh block, a twelfth block, a thirteenth block, a fourteenth block, a fifteenth block and a sixteenth block; said 14 interlocking members comprising:
a first interlocking member, of which its first block, second block, third block, fourth block, fifth block, sixth block, seventh block, eighth block, tenth block and eleventh block being removed;
a second interlocking member, of which its first block, third block, fourth block, ninth block, eleventh block and twelfth block being removed;
a third interlocking member, of which its second block, third block, fourth block, seventh block, eighth block, tenth block and eleventh block being removed;
a fourth interlocking member, of which its second block, third block, fourth block, sixth block, seventh block, eleventh block and twelfth block are of removed;
a fifth interlocking member, which is a solid interlocking member;
a sixth interlocking member, of which its first block, second block, third block, fourth block, fifth block, eighth block, tenth block and eleventh block being removed;
a seventh interlocking member, of which its first block, second block, third block, fourth block, ninth block, tenth block, eleventh block and twelfth block being removed;
an eighth interlocking member, of which its second block, third block, fourth block, sixth block, seventh block, tenth block, eleventh block and twelfth block being removed;
a ninth interlocking member, of which its second block, third block, fourth block, eighth block, tenth block and eleventh block being removed;
a tenth interlocking member, of which its second block, third block, sixth block and seventh block being removed;
an eleventh interlocking member, of which its third block, fourth block, eleventh block and twelfth block being removed;
a twelfth interlocking member, of which its fourth block and twelfth block being removed;
a thirteenth interlocking member, of which its second block, third block, sixth block, seventh block, tenth block and eleventh block being removed; and
a fourteenth interlocking member, of which its second block, third block, sixth block, seventh block and tenth block being removed.
3. The puzzle with combined interlocking members as defined in claim 2, further comprises another first interlocking member, totalizing 15 interlocking members.
4. The puzzle with combined interlocking members as defined in claim 2, further comprising:
a fifteenth interlocking member, of which its first block, second block, third block, fourth block, fifth block, sixth block, eighth block, tenth block and eleventh block being removed; and
a sixteenth interlocking member, of which its first block, second block, third block, fourth block, fifth block, seventh block, eighth block, tenth block and eleventh block being removed.
5. The puzzle with combined interlocking members as defined in claim 4, further comprises another 2 first interlocking member, another seventh interlocking member, another eleventh interlocking member and another twelfth interlocking member, totalizing 21 interlocking members.
6. The puzzle with combined interlocking members as defined in claim 5, wherein the first, the second, the third, the fourth, the fifth, the sixth, the seventh, the eighth, the ninth, the tenth, the eleventh, the twelfth, the thirteenth, the fourteenth, the fifteenth and sixteenth interlocking members are referred to as A, B, C, D, E, F, G, H, I, J, K, L, M, N, O, P, respectively; and a final assembled configuration is selected from one of AAABEJ, AAABEK, AAAJKL, AAALLM, AABEFM, AAEFGJ, AAEFGK, AAEFHJ, AAEFHK, AAFJKK, AAFKLM, AAGGLL, ABEFGG, AFGGKL, and FFGGKK.
7. The puzzle with combined interlocking members as defined in claim 5, wherein the first, the second, the third, the fourth, the fifth, the sixth, the seventh, the eighth, the ninth, the tenth, the eleventh, the twelfth, the thirteenth, the fourteenth, the fifteenth and sixteenth interlocking members are referred to as A, B, C, D, E, F, G, H, I, J, K, L, M, N, O, P, respectively; and a final assembled configuration is selected from one of AABCDE, AACEJO, AACEKO, AADEFN, AADEJP, AADEKP, AADILN, AADLMN, AAGIKL, ABEFGH, ACDEFG, ACDFJK, ADFIKN, ADFKMN, ADIKKP, AEFGHI, AEFHNO, AEGJOP, AEGKOP, AJLMOP, AJKKOP, AKLMOP, GHKLOP, and GIKKOP.
8. The puzzle with combined interlocking members as defined in claim 5, wherein the first, the second, the third, the fourth, the fifth, the sixth, the seventh, the eighth, the ninth, the tenth, the eleventh, the twelfth, the thirteenth, the fourteenth, the fifteenth and sixteenth interlocking members are referred to as A, B, C, D, E, F, G, H, I, J, K, L, M, N, O, P, respectively; and a final assembled configuration is selected from one of AACDEI, AACDJL, AACDKL, ABCEHO, ACDEFH, ACDFKK, ACHKLO, CDEGOP, CDJKOP, CDKKOP, CFGKKO, and DFGKKP.

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 solar cell module comprising:
a plurality of solar cells arranged in a plane direction;
a wavelength conversion layer disposed at a light-receiving side of the solar cells; and
a translucent protection plate disposed at a light-receiving side of the wavelength conversion layer, the protection plate having an inclined reflection surface at an end thereof to reflect light, which travels inside of the protection plate to the end of the protection plate, toward the solar cells.
2. The solar cell module according to claim 1, further comprising a reflection layer disposed on the inclined reflection surface.
3. The solar cell module according to claim 1, wherein the wavelength conversion layer is configured to convert light having a wavelength less than 500 nanometers into light having a wavelength of 500 nanometers or more.
4. The solar cell module according to claim 1, wherein the wavelength conversion layer is provided by a wavelength conversion film.
5. The solar cell module according to claim 1, further comprising:
a translucent sealing member sealing a periphery of the solar cells, wherein
the sealing member includes a sealing layer portion formed along surfaces of the solar cells at the light-receiving side of the solar cells, and
the wavelength conversion layer is disposed along the sealing layer portion of the sealing member.
6. The solar cell module according to claim 1, wherein
the wavelength conversion layer is tightly in contact with surfaces of the solar cells at the light-receiving side of the solar cells, the solar cell module further comprising:
a translucent sealing member sealing a periphery of the solar cells and the wavelength protection layer.
7. The solar cell module according to claim 1, wherein
the wavelength conversion layer is tightly in contact with surfaces of the solar cells at the light-receiving side of the solar cells, and
the protection plate is tightly in contact with a surface of the wavelength conversion layer at the light-receiving side of the wavelength conversion layer.
8. The solar cell module according to claim 1, wherein the wavelength conversion layer contains one of an organic fluorescence material and an inorganic fluorescence material as a material converting a wavelength of light.
9. The solar cell module according to claim 8, wherein
the wavelength conversion layer contains a nano particle that absorbs light having a predetermined wavelength,
the nano particle is dispersed in the wavelength conversion layer, and
the nano particle contains an element as a luminescence center that emits light having a wavelength longer than the predetermined wavelength.
10. The solar cell module according to claim 9, wherein the nano particle is made of at least one of zinc selenide, cadmium selenide, cadmium sulfide, cadmium zinc selenide, and zinc sulfide.
11. The solar cell module according to claim 9, wherein the element as the luminescence center is at least one of manganese, europium, ytterbium, terbium, antimony, silver, copper, gold, and aluminum.

1460729452-1845fda4-f606-4dc2-85de-a30d255fc649

1. A system for modulating audio effects of speakers in a sound system, the system comprising:
a selecting module configured for selecting a speaker from the speakers, and turning on the selected speaker;
a playing module configured for playing an audio file stored in a storage device to generate an audio signal, and configured for outputting the audio signal via the selected speaker;
a recording module configured for recording the audio signal as a new audio file via a microphone, configured for tracking a playing start time and a recording start time, and storing the new audio file into a storage device;
a time difference computing module configured for determining a time difference between the playing start time and the recording start time;
a pitch obtaining module configured for determining a pitch of the new audio file;
a modulating module configured for modulating the time difference and the pitch to a desired time difference and a desired pitch for each of the speakers; and
at least one processor executing the selecting module, the playing module, the recording module, the time difference computing module, the pitch obtaining module, and the modulating module.
2. The system as claimed in claim 1, wherein the recording module is further configured for storing the determined time difference and the pitch of the new audio file for each of the speakers into the storage device.
3. A computer-based method for modulating audio effects of speakers in a sound system, the method comprising:
selecting a speaker from the speakers, and turning on the selected speaker;
playing an audio file stored in a storage device to generate an audio signal, and tracking a playing start time of the audio file;
outputting the audio signal via the selected speaker;
recording and storing the audio signal as a new audio file via a microphone, and tracking a recording start time;
determining a time difference between the playing start time and the recording start time;
determining a pitch of the new audio file;
repeating from the selecting step to the computing step, until all time differences and pitches for all of the speakers have been determined; and
modulating the time difference and the pitch for each of the speakers to a desired time difference and a desired audio pitch.
4. The method as claimed in claim 3, further comprising:
storing the new audio file into the storage device.
5. The method as claimed in claim 3, further comprising:
storing the time difference and pitch for each of the speakers into the storage device.
6. A computer-readable medium having stored thereon instructions that, when executed by a computer, causing the computer to perform a method for modulating audio effects of speakers in a sound system, the method comprising:
selecting a speaker from the speakers, and turning on the selected speaker;
playing an original audio file stored in a storage device to generate an audio signal, and tracking a playing start time;
outputting the audio signal via the selected speaker;
recording and storing the audio signal as a new audio file via a microphone, and tracking a recording start time;
determining a time difference between the playing start time and the recording start time;
determining a pitch of the new audio file;
repeating from the selecting step to the computing step, until all time differences and pitches for all of the speakers have been determined; and
modulating the time difference and the pitch for each of the speakers to a desired time difference and a desired audio pitch.
7. The medium as claimed in claim 6, wherein the method further comprising storing the new audio file into the storage device.
8. The medium as claimed in claim 6, wherein the method further comprising storing the time difference and pitch for each of the speakers into the storage device.

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 biological information notifying apparatus comprising:
a biological information obtainment sensor which detects biological information of a human body;
a vibration section which notifies the biological information by transmitting vibrations to the human body; and
a control section which causes the vibration section to vibrate in accordance with the biological information,
wherein the control section obtains a first count number of the biological information per a predetermined time period at a first time point, and obtains a second count number at a second time point which follows the first time point, and
wherein the control section causes the vibration section to vibrate with a first vibration in accordance with the biological information, when a difference obtained by subtracting the first count number from the second count number is larger than a positive first value at the second time point.
2. The biological information notifying apparatus according to claim 1, wherein the control section causes the vibration section to vibrate with a second vibration different from the first vibration in accordance with the biological information, when the difference of the biological information is smaller than a negative second value.
3. The biological information notifying apparatus according to claim 2, wherein the control section causes the vibration section to vibrate with a third vibration different from the first vibration and the second vibration in accordance with the biological information, when the difference of the biological information is in a range equal to or smaller than the positive first value and equal to or larger than the negative second value.
4. The biological information notifying apparatus according to claim 3, wherein the first vibration has an amplitude larger than an amplitude of the second vibration, and
wherein the third vibration has a vibration period shorter than a vibration period of the first vibration and a vibration period of the second vibration.
5. The biological information notifying apparatus according to claim 4, wherein the vibration period of the first vibration is equal to the vibration period of the second vibration, and
wherein the third vibration has an amplitude smaller than the amplitude of the first vibration and larger than the amplitude of the second vibration.
6. The biological information notifying apparatus according to claim 1, wherein the control section does not cause the vibration section to vibrate, when the second count number of the biological information per the predetermined time period is 0.
7. The biological information notifying apparatus according to claim 1, wherein the biological information obtainment sensor and the vibration section are integrally structured.
8. The biological information notifying apparatus according to claim 1, wherein the biological information obtainment sensor and the vibration section are separately structured.
9. A biological information notifying method comprising:
a step of detecting biological information of a human body by a biological information obtainment sensor;
a step of obtaining a first count number of the biological information per a predetermined time period at a first time point, and obtaining a second count number at a second time point which follows the first time point;
a step of causing a vibration section to vibrate with a first vibration in accordance with the biological information, when a difference obtained by subtracting the first count number from the second count number is larger than a positive first value at the second time point; and
a step of notifying the biological information by transmitting the vibration to the human body.
10. The biological information notifying method according to claim 9, wherein the vibration section is caused to vibrate with a second vibration different from the first vibration in accordance with the biological information, when the difference of the biological information is smaller than a negative second value.
11. The biological information notifying method according to claim 10, wherein the vibration section is caused to vibrate with a third vibration different from the first vibration and the second vibration in accordance with the biological information, when the difference of the biological information is in a range equal to or smaller than the positive first value and equal to or larger than the negative second value.
12. The biological information notifying method according to claim 11, wherein the first vibration has an amplitude larger than an amplitude of the second vibration, and
wherein the third vibration has a vibration period shorter than a vibration period of the first vibration and a vibration period of the second vibration.
13. The biological information notifying method according to claim 12, wherein the vibration period of the first vibration is equal to the vibration period of the second vibration, and
wherein the third vibration has an amplitude smaller than the amplitude of the first vibration and larger than the amplitude of the second vibration.
14. The biological information notifying method according to claim 9, wherein the vibration section is not caused to vibrate, when the second count number of the biological information per the predetermined time period is 0.
15. A non-transitory computer-readable storage medium having stored thereon a program that is executable by a computer, the program being executable by the computer to perform functions comprising:
processing for detecting biological information of a human body by a biological information obtainment sensor;
processing for obtaining a first count number of the biological information per a predetermined time period at a first time point, and obtaining a second count number at a second time point which follows the first time point; and
processing for causing a vibration section to vibrate with a first vibration in accordance with the biological information, when a difference obtained by subtracting the first count number from the second count number is larger than a positive first value at the second time point.
16. The non-transitory computer-readable storage medium according to claim 15, wherein the vibration section is caused to vibrate with a second vibration different from the first vibration in accordance with the biological information, when the difference of the biological information is smaller than a negative second value.
17. The non-transitory computer-readable storage medium according to claim 16, wherein the vibration section is caused to vibrate with a third vibration different from the first vibration and the second vibration in accordance with the biological information, when the difference of the biological information is in a range equal to or smaller than the positive first value and equal to or larger than the negative second value.
18. The non-transitory computer-readable storage medium according to claim 17, wherein the first vibration has an amplitude larger than an amplitude of the second vibration, and
wherein the third vibration has a vibration period shorter than a vibration period of the first vibration and a vibration period of the second vibration.
19. The non-transitory computer-readable storage medium according to claim 18, wherein the vibration period of the first vibration is equal to the vibration period of the second vibration, and
wherein the third vibration has an amplitude smaller than the amplitude of the first vibration and larger than the amplitude of the second vibration.
20. The non-transitory computer-readable storage medium according to claim 15, wherein the vibration section is not caused to vibrate, when the second count number of the biological information per the predetermined time period is 0.