1. A method for spectrometry for the investigation of samples, where the sample contains at least two elements, characterised by the combination of a number of steps, namely that a sample with unknown concentrations of the elements is placed in a first step into a spectrometer and the intensities I1, I2, . . . , In of the sample for the various component elements are measured while the concentrations of the sample are determined, or\u2014alternatively\u2014that a sample with known concentrations of the substances C1, C2, . . . , Cn is placed into the spectrometer and the intensities of the sample are determined, in that the fictive theoretical intensity values, the I100%-values, for the component elements are calculated in a second step with the aid of the determined concentrations and the measured intensities I1, I2, . . . , In, or with the aid of the determined intensities and the known concentrations C1, C2, . . . Cn, in that new I100%-values for the corresponding said elements are calculated in a third step with the aid of standards with known concentrations, the intensities of which standards are measured, in that the fictive theoretical I100%-values, for the case in which the concentrations have been determined, are adjusted in a fourth step with the aid of the calculated fictive I100%-values multiplied by the ratio for the concentration determined to the concentration of the standard and multiplied by the ratio for the known intensity of the standard to the measured intensity, and, for the case in which the intensities have been determined, the calculated fictive I100%-value multiplied by the ratio of the known concentration to the concentration of the standard and multiplied by the ratio for the intensity of the standard to the determined intensity, and in that a sample with unknown concentrations of the said elements is placed in a fifth step into the spectrometer and the intensities of the various elements are read off.
2. A method according to claim 1, characterised in that the calculation takes place according to the second step through the use of a correlation between the concentration of an element and the intensity that the said concentration gives rise to in the spectrometer that is used.
3. A method according to claim 2, characterised in that the calculation in the said second step, in which the said known concentrations C1, C2, . . . , Cn for the component elements are related to the measured intensities I1, I2, . . . , In such that a fictive intensity for a 100% pure element for each of the elements is calculated, takes place using algorithms described in the article \u201cApplication of J. E. Fernandez algorithms in the evaluation of X-ray intensities measured on fused glass discs for a set of international standards and a proposed calibration procedure\u201d, J Malmqvist; X-RAY SPECTROMETRY; X-Ray Spectrom 2001; 30:83-92.
4. A method according to claim 1, characterised in that in the case in which further samples containing the same elements as a sample that has been examined are to be examined, the said fifth step is repeated without the said first, second and third steps being repeated.
5. A method according to claim 2, characterised in that in the case in which further samples containing the same elements as a sample that has been examined are to be examined, the said fifth step is repeated without the said first, second and third steps being repeated.
6. A method according to claim 3, characterised in that in the case in which further samples containing the same elements as a sample that has been examined are to be examined, the said fifth step is repeated without the said first, second and third steps being repeated.
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 bendable printed board comprising:
a main body on which a slit is formed;
a first end connected to a moving body which is movable in at least a first direction, where the first direction is perpendicular to a direction in which the slit extends; and
a second end connected to a fixed body with a slack formed on the main body so as to provide movability to the moving body,
wherein the slit is formed on at least a part of the slack of the main body and extends along the slack.
2. The printed board of claim 1,
wherein the slit is an open-slit.
3. The printed board of claim 1,
wherein the printed board is arranged to turn back on the slack.
4. The printed board of claim 1,
wherein the moving body is movable in the first direction and a second direction which is perpendicular to the first direction.
5. The printed board of claim 1,
wherein the main body includes a folding on the slack, where the folding extends in a direction across the slit.
6. A bendable printed board comprising:
a main body on which at least one slit is formed;
a first end connected to a moving body which is movable in at least a first direction, where the first direction is perpendicular to a direction in which the at least one slit extends; and
a second end connected to a fixed body with a slack formed on the main body so as to provide movability to the moving body; and
a plurality of wirings formed on the main body and connected between the first end and the second end,
wherein the at least one slit is arranged at at least a part of the slack between the plurality of wirings.
7. The printed board of claim 6,
wherein the slit is an open-slit.
8. The printed board of claim 6,
wherein the printed board is arranged to turn back on the slack.
9. The printed board of claim 6,
wherein the moving body is movable in the first direction and a second direction which is perpendicular to the first direction.
10. The printed board of claim 6,
wherein the main body includes a folding on the slack, where the folding extends in a direction across the slit.
11. A moving apparatus comprising:
a moving body which is movable in at least a first direction; and
a bendable printed board comprising:
a main body on which a slit is formed;
a first end connected to the moving body; and
a second end connected to a fixed body with a slack formed on the main body so as to provide movability to the moving body,
wherein the slit is formed on at least a part of the slack of the main body and extends along the slack, and
the first direction is perpendicular to a direction in which the slit extends.
12. The moving apparatus of claim 11,
wherein the slit is an open-slit.
13. The moving apparatus of claim 11,
wherein the slack is bent at an angle of 90 degrees or more.
14. The moving apparatus of claim 11,
wherein the printed board is arranged to turn back on the slack.
15. The moving apparatus of claim 1,
wherein the moving body is movable in the first direction and a second direction which is perpendicular to the first direction.
16. The moving apparatus of claim 1,
wherein the main body includes a folding on the slack, where the folding extends in a direction across the slit.
17. A moving apparatus comprising:
a moving body which is movable in at least a first direction; and
a bendable printed board comprising:
a main body on which at least one slit is formed;
a first end connected to the moving body which is movable in at least a first direction, where the first direction is perpendicular to a direction in which the at least one slit extends;
a second end connected to a fixed body with a slack formed on the main body so as to provide movability to the moving body; and
a plurality of wirings formed on the main body and connected between the first end and the second end,
wherein the at least one slit arranged at at least a part of the slack between the plurality of wirings.
18. The moving apparatus of claim 17,
wherein the slit is an open-slit.
19. The moving apparatus of claim 17,
wherein the slack is bent at an angle of 90 degrees or more.
20. The moving apparatus of claim 17,
wherein the printed board is arranged to turn back on the slack.
21. The moving apparatus of claim 17,
wherein the moving body is movable in the first direction and a second direction which is perpendicular to the first direction.
22. The moving apparatus of claim 17,
wherein the main body includes a folding on the slack, extending in a direction across the slit.