Long-Term Datasets for the Understanding of Solar and Stellar Magnetic Cycles (Iau S340)
Herausgeber: Banerjee, Dipankar; Solanki, Sami; Kusano, Kanya; Jiang, Jie
Long-Term Datasets for the Understanding of Solar and Stellar Magnetic Cycles (Iau S340)
Herausgeber: Banerjee, Dipankar; Solanki, Sami; Kusano, Kanya; Jiang, Jie
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IAU Symposium 340 addresses the latest discoveries from long-term datasets for the understanding of solar and stellar magnetic cycles.
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IAU Symposium 340 addresses the latest discoveries from long-term datasets for the understanding of solar and stellar magnetic cycles.
Produktdetails
- Produktdetails
- Verlag: Cambridge University Press
- Seitenzahl: 352
- Erscheinungstermin: 24. Januar 2019
- Englisch
- Abmessung: 160mm x 279mm x 15mm
- Gewicht: 680g
- ISBN-13: 9781108471091
- ISBN-10: 1108471099
- Artikelnr.: 53848779
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: Cambridge University Press
- Seitenzahl: 352
- Erscheinungstermin: 24. Januar 2019
- Englisch
- Abmessung: 160mm x 279mm x 15mm
- Gewicht: 680g
- ISBN-13: 9781108471091
- ISBN-10: 1108471099
- Artikelnr.: 53848779
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
1. Helio/asteroseismology long-term data: solar/stellar interior velocity
fields: status, divergence, and challenges; 2. Long-term magnetic field
measurements in the Sun and stars; 3. Sunspot number datasets: Status,
divergences, and unification; 4. Solar total irradiance and spectral
irradiance long-term data: status, divergences, and challenges; 5. Solar
cycle database of solar activity: variations in solar eruptions; 6.
Long-term monitoring of stellar activity: lessons for the solar cycle; 7.
The variable solar wind and the heliosphere; 8. Solar behavior over
centuries using radioisotopes; 9. Physical causes of the solar/stellar
cycle irregularities; 10. From past to future: predicting upcoming solar
cycle 25.
fields: status, divergence, and challenges; 2. Long-term magnetic field
measurements in the Sun and stars; 3. Sunspot number datasets: Status,
divergences, and unification; 4. Solar total irradiance and spectral
irradiance long-term data: status, divergences, and challenges; 5. Solar
cycle database of solar activity: variations in solar eruptions; 6.
Long-term monitoring of stellar activity: lessons for the solar cycle; 7.
The variable solar wind and the heliosphere; 8. Solar behavior over
centuries using radioisotopes; 9. Physical causes of the solar/stellar
cycle irregularities; 10. From past to future: predicting upcoming solar
cycle 25.
1. Helio/asteroseismology long-term data: solar/stellar interior velocity
fields: status, divergence, and challenges; 2. Long-term magnetic field
measurements in the Sun and stars; 3. Sunspot number datasets: Status,
divergences, and unification; 4. Solar total irradiance and spectral
irradiance long-term data: status, divergences, and challenges; 5. Solar
cycle database of solar activity: variations in solar eruptions; 6.
Long-term monitoring of stellar activity: lessons for the solar cycle; 7.
The variable solar wind and the heliosphere; 8. Solar behavior over
centuries using radioisotopes; 9. Physical causes of the solar/stellar
cycle irregularities; 10. From past to future: predicting upcoming solar
cycle 25.
fields: status, divergence, and challenges; 2. Long-term magnetic field
measurements in the Sun and stars; 3. Sunspot number datasets: Status,
divergences, and unification; 4. Solar total irradiance and spectral
irradiance long-term data: status, divergences, and challenges; 5. Solar
cycle database of solar activity: variations in solar eruptions; 6.
Long-term monitoring of stellar activity: lessons for the solar cycle; 7.
The variable solar wind and the heliosphere; 8. Solar behavior over
centuries using radioisotopes; 9. Physical causes of the solar/stellar
cycle irregularities; 10. From past to future: predicting upcoming solar
cycle 25.







