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Basic Mechanisms of Solar Activity
Overview of attention for book
Table of Contents
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Book Overview
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Chapter 1
The Enigma of Solar Activity
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Chapter 2
Differential Rotation and Global-Scale Velocity Fields
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Chapter 3
Differential Rotation and Giant Cell Circulation of the Solar Ca + -Network
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Chapter 4
Rotational Characteristics of Coronal Holes
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Chapter 5
On Differences in Differential Rotation
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Chapter 6
Large-Scale Solar Magnetic Fields
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Chapter 7
Small-Scale Solar Magnetic Fields
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Chapter 8
Investigation of Coronal Rotation by the Spectroscopic Method
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Chapter 9
Fast Variations of the Solar Rotation
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Chapter 10
About the Relation between the Limb Effect of the Redshift on the Sun and the Large-Scale Distribution of Solar Activity
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Chapter 11
Drift of Sunspots in Latitude
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Chapter 12
Velocities Observed in Supergranules
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Chapter 13
Long Term Evolution of Solar Sector Structure
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Chapter 14
Solar Cycle Evolution of the General Magnetic Field
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Chapter 15
Coronal Bright Points
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Chapter 16
Cyclical and Secular Variations of Solar Activity
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Chapter 17
Some Results of the Space Distribution of the Activation Vector of the Filaments in the 11-Year Cycle
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Chapter 18
Sequences of Large Sunspot Groups
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Chapter 19
Characteristic Features of Cyclic Change of Solar Activity after 1610
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Chapter 20
Theory of Convection in a Deep Rotating Spherical Shell, and Its Application to the Sun
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Chapter 21
The Pattern of Convection in the Sun
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Chapter 22
On Theories of Solar Rotation
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Chapter 23
Equilibrium Problem in a Rotating Convection Zone
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Chapter 24
A Boussinesq Model for the Convection Zone and the Solar Angular Velocity
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Chapter 25
Two-Dimensional Stochastic Motions and the Problem of Differential Rotation for Unrestricted Rotational Rates
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Chapter 26
Mean-Field Magnetohydrodynamics of the Solar Convection Zone
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Chapter 27
Mean-Field Magnetohydrodynamics as a Basis of Solar Dynamo Theory
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Chapter 28
Dynamo in the Presence of Differential Rotation
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Chapter 29
On Fast Magnetic Field Reconnection
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Chapter 30
Dynamo Theory and the Solar Cycle
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Chapter 31
Solar Magnetic Fields and Convection
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Chapter 32
A Model of the Solar Cycle Driven by the Dynamo Action of the Global Convection in the Solar Convection Zone
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Chapter 33
On the Distribution of Angular Velocity in the Sun
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Chapter 34
On the Dipole-Like Progressive Wave in the Photosphere
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Chapter 35
Stellar Activity of the Solar Type Observational Aspects
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Chapter 36
Chromospheric Variations in Main Sequence Stars
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Chapter 37
The Internal Structure of the Sun and Solar Type Stars
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Chapter 38
The Sun as a Magnetic Star
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Chapter 39
Chromospheric Activity in F- and G-Stars
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Chapter 40
Absolute Fluxes of K Chromospheric Emission on the H-R Diagram
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Chapter 41
Double-Peaked Flare Events on Red Dwarf Stars and Solar ‘Sympathetic’ Flares
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Chapter 42
Summary of the Final Discussion on August 29
Overall attention for this book and its chapters
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Mentioned by
syllabi
2
institutions with syllabi
Citations
dimensions_citation
51
Dimensions
Readers on
mendeley
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Mendeley
Book overview
1. The Enigma of Solar Activity
2. Differential Rotation and Global-Scale Velocity Fields
3. Differential Rotation and Giant Cell Circulation of the Solar Ca + -Network
4. Rotational Characteristics of Coronal Holes
5. On Differences in Differential Rotation
6. Large-Scale Solar Magnetic Fields
7. Small-Scale Solar Magnetic Fields
8. Investigation of Coronal Rotation by the Spectroscopic Method
9. Fast Variations of the Solar Rotation
10. About the Relation between the Limb Effect of the Redshift on the Sun and the Large-Scale Distribution of Solar Activity
11. Drift of Sunspots in Latitude
12. Velocities Observed in Supergranules
13. Long Term Evolution of Solar Sector Structure
14. Solar Cycle Evolution of the General Magnetic Field
15. Coronal Bright Points
16. Cyclical and Secular Variations of Solar Activity
17. Some Results of the Space Distribution of the Activation Vector of the Filaments in the 11-Year Cycle
18. Sequences of Large Sunspot Groups
19. Characteristic Features of Cyclic Change of Solar Activity after 1610
20. Theory of Convection in a Deep Rotating Spherical Shell, and Its Application to the Sun
21. The Pattern of Convection in the Sun
22. On Theories of Solar Rotation
23. Equilibrium Problem in a Rotating Convection Zone
24. A Boussinesq Model for the Convection Zone and the Solar Angular Velocity
25. Two-Dimensional Stochastic Motions and the Problem of Differential Rotation for Unrestricted Rotational Rates
26. Mean-Field Magnetohydrodynamics of the Solar Convection Zone
27. Mean-Field Magnetohydrodynamics as a Basis of Solar Dynamo Theory
28. Dynamo in the Presence of Differential Rotation
29. On Fast Magnetic Field Reconnection
30. Dynamo Theory and the Solar Cycle
31. Solar Magnetic Fields and Convection
32. A Model of the Solar Cycle Driven by the Dynamo Action of the Global Convection in the Solar Convection Zone
33. On the Distribution of Angular Velocity in the Sun
34. On the Dipole-Like Progressive Wave in the Photosphere
35. Stellar Activity of the Solar Type Observational Aspects
36. Chromospheric Variations in Main Sequence Stars
37. The Internal Structure of the Sun and Solar Type Stars
38. The Sun as a Magnetic Star
39. Chromospheric Activity in F- and G-Stars
40. Absolute Fluxes of K Chromospheric Emission on the H-R Diagram
41. Double-Peaked Flare Events on Red Dwarf Stars and Solar ‘Sympathetic’ Flares
42. Summary of the Final Discussion on August 29
Summary
Syllabi
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So far, Altmetric has seen this research output assigned in
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Institution
Syllabi count
Course subject areas covered
Utrecht University
1
Unknown
Unknown
1
Civil Engineering, Agriculture, Art, Biology, Education, Dentistry, Engineering