Nome |
# |
Physics: The Ultimate Adventure, file e384c42e-d234-d4b2-e053-9f05fe0a1d67
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747
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A relativistic positioning system exploiting pulsating sources for navigation across the Solar System and beyond, file e384c42e-1157-d4b2-e053-9f05fe0a1d67
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665
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Measuring gravito-magnetic effects by multi ring-laser gyroscope, file e384c42e-1025-d4b2-e053-9f05fe0a1d67
|
570
|
Pulsars as celestial beacons to detect the motion of the Earth, file e384c42e-1420-d4b2-e053-9f05fe0a1d67
|
480
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A ring lasers array for fundamental physics, file e384c42e-385c-d4b2-e053-9f05fe0a1d67
|
467
|
From elastic continua to space-time, file e384c42e-0b54-d4b2-e053-9f05fe0a1d67
|
440
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Sagnac effect and pure geometry, file e384c42e-3b0b-d4b2-e053-9f05fe0a1d67
|
417
|
Experimental determination of gravitomagnetic
effects by means of ring lasers, file e384c42e-23d8-d4b2-e053-9f05fe0a1d67
|
396
|
Massive gravitational waves from the Cosmic Defect theory, file e384c42e-0b59-d4b2-e053-9f05fe0a1d67
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395
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Cosmological constraints for the Cosmic Defect theory, file e384c42e-0bd1-d4b2-e053-9f05fe0a1d67
|
380
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Science and the Future: Introduction, file e384c42e-346b-d4b2-e053-9f05fe0a1d67
|
358
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A STRAINED SPACE-TIME TO EXPLAIN THE LARGE SCALEPROPERTIES OF THE UNIVERSE, file e384c42e-0a7c-d4b2-e053-9f05fe0a1d67
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356
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Post-Keplerian parameter to test gravitomagnetic effects in binary pulsar systems, file e384c42d-f671-d4b2-e053-9f05fe0a1d67
|
348
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The Strained State Cosmology, file e384c42e-0d2b-d4b2-e053-9f05fe0a1d67
|
319
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Lensing in an elastically strained space-time, file e384c42e-0b48-d4b2-e053-9f05fe0a1d67
|
318
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Dark energy as an elastic strain fluid, file e384c42e-249f-d4b2-e053-9f05fe0a1d67
|
318
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Spherical symmetry in a dark energy permeated space-time, file e384c42e-1e69-d4b2-e053-9f05fe0a1d67
|
317
|
Light and/or atomic beams to detect ultraweak gravitational effects, file e384c42e-327d-d4b2-e053-9f05fe0a1d67
|
302
|
MEASURING GRAVITOMAGNETIC EFFECTS BY MEANS OF RING LASERS, file e384c42e-2cb7-d4b2-e053-9f05fe0a1d67
|
286
|
Introduzione alle comunità energetiche – quadro normativo di riferimento,
misure di attuazione e incentivi, file e384c432-b004-d4b2-e053-9f05fe0a1d67
|
285
|
External Metrology System for the Stabilization of Large Ring-Lasers, file e384c42e-e943-d4b2-e053-9f05fe0a1d67
|
268
|
A relativistic navigation system for space, file e384c42e-0efe-d4b2-e053-9f05fe0a1d67
|
267
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The strained state cosmology, file e384c42d-e556-d4b2-e053-9f05fe0a1d67
|
252
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LAGRANGE: An experiment for testing general relativity in the inner solar system, file e384c42f-b5a6-d4b2-e053-9f05fe0a1d67
|
250
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Light as a probe of the structure of space-time, file e384c42e-f728-d4b2-e053-9f05fe0a1d67
|
248
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A network of heterodyne laser interferometers for monitoring
and control of large ring-lasers, file e384c42e-faed-d4b2-e053-9f05fe0a1d67
|
238
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Testing General Relativity, file e384c42d-e55a-d4b2-e053-9f05fe0a1d67
|
233
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Time delay in binary systems, file e384c42d-f672-d4b2-e053-9f05fe0a1d67
|
225
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Quantum time delay in the gravitational field of a rotating mass, file e384c42f-884b-d4b2-e053-9f05fe0a1d67
|
223
|
A strained space-time, file e384c42e-0b47-d4b2-e053-9f05fe0a1d67
|
222
|
Experimental determination of gravitomagnetic
effects by means of ring lasers, file e384c42e-23d7-d4b2-e053-9f05fe0a1d67
|
191
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Sarà ancora la luce a sfidare la relatività, file e384c42e-ca69-d4b2-e053-9f05fe0a1d67
|
173
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GINGER - A terrestrial experiment to verify the Lense-Thirring effect or possible deviations from General Relativity, file e384c42e-43a3-d4b2-e053-9f05fe0a1d67
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161
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Testing general relativity by means of ring lasers, file e384c42f-61fd-d4b2-e053-9f05fe0a1d67
|
159
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G-Gran Sasso: an experiment for the terrestrial measurement of the Lense-Thirring effect by means of ring lasers, file e384c42e-29f3-d4b2-e053-9f05fe0a1d67
|
147
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A note on the Sagnac effect and current terrestrial experiments, file e384c42e-334e-d4b2-e053-9f05fe0a1d67
|
142
|
Measuring general relativity effects in a terrestrial lab
by means of laser gyroscopes, file e384c42e-333d-d4b2-e053-9f05fe0a1d67
|
137
|
Crescita insostenibile, file e384c42e-3487-d4b2-e053-9f05fe0a1d67
|
123
|
Fourdimensional Elasticity and General Relativity, file e384c42d-f283-d4b2-e053-9f05fe0a1d67
|
121
|
Relativistic space-time positioning: principles and
strategies., file e384c42e-2249-d4b2-e053-9f05fe0a1d67
|
120
|
Il Futuro Impossibile. Vincoli e crescita economica, file e384c42e-3645-d4b2-e053-9f05fe0a1d67
|
116
|
The strained state cosmology, file e384c42e-8c96-d4b2-e053-9f05fe0a1d67
|
114
|
The GINGER Project, file e384c42f-16b0-d4b2-e053-9f05fe0a1d67
|
114
|
Ecologia. Che cosa dice la scienza, file e384c434-4c8f-d4b2-e053-9f05fe0a1d67
|
42
|
Detecting the gravito-magnetic field of the dark halo of the Milky Way - the LaDaHaD mission concept, file e384c434-2277-d4b2-e053-9f05fe0a1d67
|
41
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Statistical Data Analysis for Energy Communities, file e384c432-6155-d4b2-e053-9f05fe0a1d67
|
40
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Growth and inequalities in a physicist's view, file e384c431-f2d2-d4b2-e053-9f05fe0a1d67
|
37
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How to use the Sun–Earth Lagrange points for fundamental physics and navigation, file e384c431-bb86-d4b2-e053-9f05fe0a1d67
|
36
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Fisica e metafisica delle comunità energetiche, file e384c432-8bf8-d4b2-e053-9f05fe0a1d67
|
32
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From Kerr to Heisenberg, file e384c433-0b1c-d4b2-e053-9f05fe0a1d67
|
24
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Test of gravitomagnetism with satellites around the Earth, file e384c431-c115-d4b2-e053-9f05fe0a1d67
|
22
|
Lagrange ci offre un test per Einstein, file e384c42f-4b7d-d4b2-e053-9f05fe0a1d67
|
16
|
Mobilità e qualità della vita, file e384c431-589c-d4b2-e053-9f05fe0a1d67
|
16
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Test of gravitomagnetism with satellites around the Earth, file e384c430-d318-d4b2-e053-9f05fe0a1d67
|
11
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Looking for a new test of general relativity in the solar system, file e384c431-ba33-d4b2-e053-9f05fe0a1d67
|
10
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An effective-gravity perspective on the Sun–Jupiter–comet three-body system, file e384c432-4079-d4b2-e053-9f05fe0a1d67
|
10
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How to use the Sun–Earth Lagrange points for fundamental physics and navigation, file e384c430-6eda-d4b2-e053-9f05fe0a1d67
|
9
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Detecting the Angular Momentum of the Galactic Dark Halo, file e384c430-c97b-d4b2-e053-9f05fe0a1d67
|
9
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RELATIVISTIC POSITIONING AND SAGNAC-LIKE MEASUREMENTS FOR FUNDAMENTAL PHYSICS IN SPACE, file e384c432-1a53-d4b2-e053-9f05fe0a1d67
|
9
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A Physicist's Journey between Science and Faith: Friends or Foes?, file 7e8eb719-4c47-4728-9b9f-ef1ce3679fe1
|
6
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RELATIVISTIC POSITIONING AND SAGNAC-LIKE MEASUREMENTS FOR FUNDAMENTAL PHYSICS IN SPACE, file e384c431-f615-d4b2-e053-9f05fe0a1d67
|
6
|
Angular momentum effects in Michelson - Morley type experiments, file f56b7490-9cbf-4a21-bd16-3b76509692f8
|
6
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Looking for a new test of general relativity in the solar system, file e384c430-38d2-d4b2-e053-9f05fe0a1d67
|
5
|
Dark angular momentum of the galaxy, file e384c430-3c94-d4b2-e053-9f05fe0a1d67
|
5
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The Turın-Lyon Hıgh-Speed Raıl: A Technıcal Assessment, file e384c42f-e94a-d4b2-e053-9f05fe0a1d67
|
4
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Spherical symmetry in a dark energy permeated spacetime, file e384c430-c5e1-d4b2-e053-9f05fe0a1d67
|
4
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A darkless space-time, file e384c42d-f54b-d4b2-e053-9f05fe0a1d67
|
3
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Fitting the Luminosity Data from Type Ia Supernovae in the Frame of the Cosmic Defect Theory, file e384c42e-0298-d4b2-e053-9f05fe0a1d67
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3
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Perché NO TAV, file e384c430-6edb-d4b2-e053-9f05fe0a1d67
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3
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Lunar Relativistic Positioning System (LRPS) for human exploration, file e384c42e-f9ce-d4b2-e053-9f05fe0a1d67
|
2
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Railway related impacts: The Turin-Lyon high-speed rail case, file e384c42f-4cee-d4b2-e053-9f05fe0a1d67
|
2
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HUELIANG YU SHOUZHI, file e384c430-0b87-d4b2-e053-9f05fe0a1d67
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2
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MAPPING CARTESIAN COORDINATES INTO EMISSION COORDINATES: SOME TOY MODELS, file da46f8a9-1267-4fca-9716-92194676b4cb
|
1
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La navicella GAIA sfida anche Einstein, file e384c42e-3420-d4b2-e053-9f05fe0a1d67
|
1
|
An effective-gravity perspective on the Sun–Jupiter–comet three-body system, file e384c432-7ddb-d4b2-e053-9f05fe0a1d67
|
1
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Geometric definition of emission coordinates, file e384c434-7e46-d4b2-e053-9f05fe0a1d67
|
1
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Totale |
12.827 |