By Allan Mackintosh
Complicated Teleescope Making suggestions that includes chosen Articles from the Maksutov Circulars relies upon The Massutov Circulars which have been edited over a interval of 21 years by means of Allan waterproof coat and disbursed to Maksutov membership participants. The membership was once initially geared up to make a mass buy of customized molded Maksutov corrector blanks however it quickly grew to become obvious e-newsletter was once had to percentage info on optics and functional glass operating to shut tolerances. eventually, approximately two hundred variants of the Circulars have been dispensed to participants. From this mass of fabric three hundred+ web page books have emerged which describe a variety of matters of curiosity to the individual that has made a telescope and desires to benefit extra approximately this interesting hobby.
The matters coated in
Advanced Telescope Making options, quantity 1, Optics
by bankruptcy are as follows:
Chapter 1. Figuring
Chapter 2. Testers and Testing
Chapter three. Optical Theory
Chapter four. Telescope Designs and Designing
Chapter five. Spectrohelioscopes
Chapter 6. Interferometers
Chapter 7. Calculator courses for Telescope Maker
Read Online or Download Advanced Telescope Making Techniques Volume I PDF
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Additional resources for Advanced Telescope Making Techniques Volume I
For instance, it is usually impossible to fully invert quadrupole spins I > 1/2 by a 180◦ -pulse. The rotational echo adiabatic passage double resonance (REAPDOR) experiment circumvents this problem by applying a prolonged pulse to the I spins that inverts these spins with higher eﬃciency than a 180◦ pulse . The prolonged pulse achieves inversion since during rotation the resonance frequency of the I spins adiabatically passes the frequency of the applied pulse. The PISEMA experiment introduced in the previous section can also be applied under MAS conditions .
A) A. J. de Haas: Verhandl. Deut. Phsik. Ges. 17, 152–170 (1915) (b) A. J. de Haas: Verhandl. Deut. Phsik. Ges. 18, 173–177 (1916) 6. H. Van Vleck: The Theory of Electric and Magnetic Susceptibility (Clarendon, Oxford 1932) pp 94–97 7. B. I. F. R. Zacharias: Phys. Rev. 56, 728–743 (1939) 8. (a) F. W. Hansen, M. Packard: Phys. Rev. M. C. V. Pound: Phys. Rev. 69, 37–38 (1946) 9. A. Abragam, B. Bleaney: Electron Paramagnetic Resonance of Transition Ions (Clarendon, Oxford 1970) 10. M. Purcell: Astrophys.
K. H. Waugh: Phys. Rev. B 52, 6467–6469 (1995) 13. B. Black, B. Majer, A. Pines: Chem. Phys. Lett. 201, 550–554 (1993) 14. L. L. Hahn: Phys. Rev. 133, A1616–A1629 (1964) 15. A. Abragam: Principles of Nuclear Magnetism (Clarendon, Oxford 1961) 16. M. Goldman: Spin Temperature and Nuclear Magnetic Resonance in Solids (Clarendon, Oxford 1970) Distance Measurements in Solid-State NMR and EPR Spectroscopy G. W. de Abstract. Magnetic resonance techniques for the measurement of dipole-dipole couplings between spins are discussed with special emphasis on the underlying concepts and on their relation to site-speciﬁc distance determination in complex materials.