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Other articles from this issue  Ionospheric

Radio Wave Propagation for Telecommunication Applications / by Herve Sizun
Placering: Langagervej 2 Kælder
Opstilling: 621.371 (Siz)
Status: På hylden
Stregkode: 531000000965

Ionospheric radio
Davies, Kenneth;Institution of Electrical Engineers 1990
Placering: Langagervej 2 Kælder
Opstilling: 621.371 (Dav)
Status: På hylden
Stregkode: 530002670691
Type: BOG

Radio Propagation and Adaptive Antennas for Wireless Communication Links : Terrestrial, Atmospheric and Ionospheric
Nathan Blaunstein;Christos G Christodoulou
Placering: Langagervej 2 Stuen
Opstilling: 621.396.67 (Bla)
Status: På hylden
Stregkode: 531000004353
Type: BOG
Status: Alm. Lån

Magnetic Sensors - Principles and Applications
Edited by Dr Kevin Kuang

Magnetic Bearings and Bearingless Drives
Material Type: Bog
    Opstilling: 621.8 (Mag)    
    Stregkode: 530009879195
    Reol:D8. Opstilling: 621.8 (Mag)


Sensors, actuators, and their interfaces : a multidisciplinary introduction 

 

Til http://www.sciencedirect.com:
Ionospher
radio wave
radio wave propagation - den er go’

http://iopscience.iop.org/article/10.3367/UFNr.2016.07.037868/pdf
Auroral lights created by high-power radiowaves in the ionospheric E region

 

Sensors and Actuators A: Physical
Volume 85, Issues 1–3, 25 August 2000, Pages 361-364
Sensors and Actuators A: Physical
Ultra low noise induction magnetometer for variable temperature operation
Author links open overlay panel R.J.Prance T.D.Clark H.Prance

Sensors and Actuators A: Physical

Volume 85, Issues 1–3, 25 August 2000, Pages 361-364
Sensors and Actuators A: Physical

Ultra low noise induction magnetometer for variable temperature operation

Author links open overlay pane R.J.Pranc T.D.Clar H.Prance

*** 171201 ***

Hall-effect sensors : theory and applications / by Edward Ramsden
Ramsden, Ed
2006

Anovel method of zero offset reduction in hall effect sensors with applications to magnetic field measurement
Liu, Cheng ; Liu, Ji-Gou ; Zhang, Quan
Journal of Physics: Conference Series, 2015, Vol.588(1), p.012022 (6pp) [Peer-reviewed tidsskrift]
supply can be controlled within 0.2%. This method can be applied to all Hall Effect sensors with analog output and other similar sensors, which are

The development of magnetic field measurement system for drift-tube linac quadrupole
Zhou, Jianxin ; Kang, Wen ; Yin, Baogui ; Peng, Quanling ; Li, Li ; Liu, Huachang ; Gong, Keyun ; Li, Bo ; Chen, Qiang ; Li, Shuai ; Liu, Yiqin
Nuclear Inst. and Methods in Physics Research, A, 21 June 2015, Vol.786, pp.142-146 [Peer-reviewed tidsskrift]
. Fig. 6 shows the measurement results of magnetic field... new DTLQ magnetic field measurement system. 2.3 C... requirements of DTLQ magnetic field

Magnetic Field Measurement with Heisenberg Limit Based on Solid Spin NOON State
Zhou, Lei-Ming ; Dong, Yang ; Sun, Fang-Wen;Zhou, Lei-Ming (correspondence author)
Chinese Physics Letters, June 2015, Vol.32(6), pp.067601-1-067601-5 [Peer-reviewed tidsskrift]

Magnetic energy distribution in the four‐dimensional frequency and wave vector domain in the solar wind
Narita, Y. ; Sahraoui, F. ; Goldstein, M. L. ; Glassmeier, K. ‐H.
Journal of Geophysical Research: Space Physics, April 2010, Vol.115(A4), pp.n/a-n/a [Peer-reviewed tidsskrift]

Measurement of the electron density and magnetic field of the solar wind using millisecond pulsars
You, X. P ; Coles, W. A ; Hobbs, G. B ; Manchester, R. N
Monthly Notices of the Royal Astronomical Society, 2012, Vol. 422(2), pp.1160-1165 [Peer-reviewed tidsskrift]
the magnetic field of the solar wind... estimate the magnetic field in the quiet solar wind... The magnetic field of the solar

Solar wind magnetic field bending of jovian dust trajectories
Zook, H ; Grun, E ; Baguhl, M ; Hamilton, D
Science, Nov 29, 1996, Vol.274(5292), pp.1501-1503 [Peer-reviewed tidsskrift]
solar wind magnetic field as a giant mass-and-velocity... acceleration due to gravitational and solar wind magnetic field... were strongly affected by solar wind magnetic

Hall-Effect Sensors: Theory and Application Af Edward Ramsden

*** 170202 ***

P. Ripka, Magnetic Sensors and Magnetometers, Artech, Boston, London, 2001
Primdahl F 1979 The fluxgate magnetometer J. Phys. E: Sci. Instrum. 12 241

Acuña M H 2002 Space-based magnetometers Rev. Sci. Instrum. 73 3717

Auster H U et al 1995 Concept and frst results of a digital
fluxgate magnetometer Meas. Sci. Technol. 6 477–81

Pedersen E B et al 1999 Digital fluxgate magnetometer for the
Astrid-2 satellite Meas. Sci. Technol. 10 N124–9

Piil-Henriksen J et al 1996 Digital detection and feedback
magnetometer Meas. Sci. Technol. 7 897–903

Cerman A et al 2005 Digitalisation of highly precise fluxgate
magnetometers Sensors Actuators A 121 421–9

Primdahl F and Jensen P A 1982 Compact spherical coil for
fluxgate magnetometer vector feedback J. Phys. E: Sci.
Instrum. 15 221–6

Sensor pick-up coils

Intense geomagnetic storms are usually defined when the
storm Dst index gets values of r100 nT (Gonzalez et al., 1994),
whereas storms with the Dst index r250 nT have been called
superintense storms (e.g. Gonzalez et al., 2002; Echer et al., 2008).
When the Dst index gets to extreme values, such as r400 nT,
due to the large intensity of the ring current and to the rarity of
such Dst excursions, the storms of this type could be called
extreme storms.

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