Literature relating to the Modified Newtonian Dynamics (MOND)

Paper titles and citations, with links to abstracts and full text available electronically through the NASA Astrophysical Data System (ADS) and the astro-ph e-print archive (arXiv).

By [Number]. The list by subject is no longer maintained.


[1] 1983, ApJ, 270, 365
Milgrom, M.
A modification of the Newtonian dynamics as a possible alternative to the hidden mass hypothesis
ADS

[2] 1983, ApJ, 270, 371
Milgrom, M.
A modification of the Newtonian dynamics - Implications for galaxies
ADS

[3] 1983, ApJ, 270, 384
Milgrom, M.
A MODIFICATION OF THE NEWTONIAN DYNAMICS - IMPLICATIONS FOR GALAXY SYSTEMS
ADS

[4] 1998, ApJ, 496, L89
Milgrom, M.
Galaxy Groups and Modified Dynamics
ADS | arXiv

[5] 1997, ApJ, 478, 7
Milgrom, M.
Large-Scale Filaments: Newtonian versus Modified Dynamics
ADS | arXiv

[6] 1995, ApJ, 455, 439
Milgrom, M.
MOND and the Seven Dwarfs
ADS | arXiv

[7] 1995, MNRAS, 276, 453
Brada, R.; Milgrom, M.
Exact solutions and approximations of MOND fields of disc galaxies
ADS | arXiv

[8] 1994, ApJ, 429, 540
Milgrom, M.
Modified dynamics predictions agree with observations of the HI kinematics in faint dwarf galaxies contrary to the conclusions of Lo, Sargent, and Young
ADS | arXiv

[9] 1993, A&A, 273, L5
Milgrom, M.
CRITICISM OF GERBAL ANALYSIS OF X-RAY CLUSTERS IN THE LIGHT OF MODIFIED DYNAMICS
ADS

[10] 1991, ApJ, 367, 490
Milgrom, M.
Criticism of Lake's analysis of the rotation curves of dwarf spirals
ADS

[11] 1989, ApJ, 338, 121
Milgrom, M.
On stability of galactic disks in the modified dynamics and the distribution of their mean surface brightness
ADS

[12] 1989, A&A, 211, 37
Milgrom, M.
Concerning the preferred surface density of giant molecular clouds in the Galaxy
ADS

[13] 1989, ComAp, 13, 215
Milgrom, M.
ALTERNATIVES TO DARK MATTER
ADS

[14] 1988, ApJ, 334, 130
Milgrom, M.; BRAUN, EREZ
The rotation curve of DDO 154 - A particularly acute test of the modified dynamics
ADS

[15] 1988, ApJ, 333, 689
Milgrom, M.
On the use of galaxy rotation curves to test the modified dynamics
ADS

[16] 1988, ApJ, 332, 86
Milgrom, M.
What shells around NGC 3923 tell us about the modified dynamics
ADS

[17] 1988, A&A, 202, L9
Milgrom, M.
The structure of Lyman-Alpha systems
ADS |

[18] 1987, IAUS 117, 319
Milgrom, M.; Bekenstein, J.
The modified Newtonian dynamics as an alternative to hidden matter
ADS

[19] 1986, ApJ, 306, 9
Milgrom, M.
Can the hidden mass be negative?
ADS

[20] 1986, ApJ, 302, 617
Milgrom, M.
Solutions for the modified Newtonian dynamics field equation
ADS

[21] 1984, ApJ, 287, 571
Milgrom, M.
Isothermal spheres in the modified dynamics
ADS

[22] 1984, ApJ, 286, 7
Bekenstein, J.; Milgrom, M.
Does the missing mass problem signal the breakdown of Newtonian gravity?
ADS

[23] 1998, ApJ, 503, 97
Sanders, R. H.; Verheijen, M. A. W.
Rotation Curves of Ursa Major Galaxies in the Context of Modified Newtonian Dynamics
ADS | arXiv

[24] 1998, MNRAS, 296, 1009
Sanders, R. H.
Cosmology with modified Newtonian dynamics (MOND)
ADS | arXiv

[25] 1997, ApJ, 480, 492
Sanders, R. H.
A Stratified Framework for Scalar-Tensor Theories of Modified Dynamics
ADS | arXiv

[26] 1996, ApJ, 473, 117
Sanders, R. H.
The Published Extended Rotation Curves of Spiral Galaxies: Confrontation with Modified Dynamics
ADS | arXiv

[27] 1994, ApJ, 429, 480
Bekenstein, J. D.; Sanders, ROBERT H.
Gravitational lenses and unconventional gravity theories
ADS | arXiv

[28] 1994, A&A, 284, L31
Sanders, R. H.
A Faber-Jackson relation for clusters of galaxies: Implications for modified dynamics
ADS

[29] 1994, MNRAS, 266, 360
Sanders, R.H.; Begeman, K.G.
MODIFIED DYNAMICS ( MOND) AS A DARK HALO
ADS

[30] 1991, MNRAS, 249, 523
Begeman, K. G.; Broeils, A. H.; Sanders, R. H.
Extended rotation curves of spiral galaxies - Dark haloes and modified dynamics
ADS

[31] 1990, A&ARv, 2, 1
Sanders, R. H.
Mass discrepancies in galaxies - Dark matter and alternatives
ADS

[32] 1989, MNRAS, 241, 135
Sanders, R. H.
Cosmological implications of phase coupling gravity
ADS

[33] 1988, MNRAS, 235, 105
Sanders, R. H.
Phase coupling gravity and astronomical mass discrepancies
ADS

[34] 1986, MNRAS, 223, 539
Sanders, R. H.
Alternatives to dark matter
ADS

[35] 1986, A&A, 154, 135
Sanders, R. H.
Finite length-scale anti-gravity and observations of mass discrepancies in galaxies
ADS

[36] 1984, A&A, 136, L21
Sanders, R. H.
Anti-gravity and galaxy rotation curves
ADS

[37] 1998, ApJ, 508, 132
DE BLOK, W. J. G.; MCGAUGH, S. S.
Testing Modified Newtonian Dynamics with Low Surface Brightness Galaxies: Rotation Curve Fits
ADS | arXiv

[38] 1998, ApJ, 499, 66
MCGAUGH, STACY S.; DE BLOK, W. J. G.
Testing the Hypothesis of Modified Dynamics with Low Surface Brightness Galaxies and Other Evidence
ADS | arXiv

[39] 1996, A&A, 313, 347
Spares, D.S.L.
Binary galaxies and alternative physics. I. A qualitative application of MOND and Mannheim-Kazanas gravity.
ADS | arXiv

[40] 1992, ApJ, 397, 38
Gerhard, O.E.; Spergel, D.N.
Dwarf spheroidal galaxies and non-Newtonian gravity
ADS

[41] 1998mcdg.proc, 53
Mateo, M.
Strange Dark Matters in Nearby Dwarf Galaxies
ADS | Bonn

[42] 1998, AJ, 116, 2315
Mateo, M.; Olszewski, E.W.; Vogt, S.S.; Keane, M.J.
The Internal Kinematics of the Leo I Dwarf Spheroidal Galaxy: Dark Matter at the Fringe of the Milky Way
ADS | arXiv

[43] 1998, ARA&A, 36, 435
Mateo, M. L.
Dwarf Galaxies of the Local Group
ADS | arXiv

[44] 1991, ApJ, 372, 471
Christodoulou, D.M.
The stability of cold, flattened, self-gravitating disks obeying other than Newtonian force laws
ADS

[45] 1995, Ap&SS, 226, 51
Griv, E.; Zhytnikov, V. V.
Simulations of Stellar Disks in Galaxies with Non-Newtonian Interactions
ADS

[46] 1995, ApJ, 450, 70
Morishima, T.; Saio, H.
The Rotation Curves of the Polar Ring Galaxy NGC 4650A under Modified Newtonian Dynamics
ADS

[47] 1994, MNRAS, 267, 766
Morishima, T.; Saio, H.
VISCOUS EVOLUTION OF SELF-GRAVITATING GALACTIC DISKS UNDER MODIFIED NEWTONIAN DYNAMICS
ADS

[48]ApJl in pres
Rafael Brada and Mordehai Milgrom
The modified dynamics (MOND) predicts an absolute maximum to the acceleration produced by `dark halos'
arXiv

[49] ApJ in press
Rafael Brada and Mordehai Milgrom
Stability of disk galaxies in the modified dynamics
arXiv

[50] Proceedings of the DARK98 meeting in Heidelberg July 1998
Mordehai Milgrom
The Modified Dynamics--A Status Review
arXiv

[51] Submitted to Physics Letters A
Mordehai Milgrom
The Modified Dynamics as a Vacuum Effect
arXiv

[52]Proc. of the 2nd workshop on The dark side of the Universe,
Eds. R. Bernabei and A. Incicchitti Rome 1995 (world Scientific, Singapore 96)
Mordehai Milgrom
Low-surface-density galaxies and the modified dynamics
arXiv

[53] 1994, Ann. Phys. 229, 384-415
Mordehai Milgrom
Dynamics with a non-standard inertia-acceleration relation: an alternative to dark matter
arXiv

[54] ApJL in press
R.H. Sanders
Resolving the virial discrepancy in clusters of galaxies with modified Newtonian dynamics
arXiv

[55] The Bonn/Bochum conference on the Magelanic Clouds and Dwarf Galaxies
F.J. Sánchez-Salcedo and A.M. Hidalgo-Gámez
Does the low-mass galaxy IC 2574 obey MOND?
Bonn

[56] 1992, A&A, 262, 395
Gerbal, D.; Durret, F.; Lachieze-Rey, M.; Lima-Neto, G.
Analysis of X-ray galaxy clusters in the framework of modified Newtonian dynamics
ADS

[57] 1993, A&A, 273, L9
Gerbal, D.; Durret, F.; Lachieze-Rey, M.; Lima-Neto, G.
Answer to Milgrom's criticisms
ADS

[58] 1988, AJ, 95, 1642
THE, LIH SIN; WHITE, SIMON D. M.
Modified Newtonian dynamics and the Coma cluster
ADS

[59] The Evolution of the Universe, edited by G. Borner and S. Gottlober, Dahlem Workshop Report ES~19 (John Wiley & Sons)
Georg G. Raffelt
The Nature of Dark Matter
arXiv

[60] 1998, A&A, 339, 409
MORIONDO, G.; GIOVANARDI, C.; HUNT, L. K.
Near-infrared surface photometry of early-type spiral galaxies. II. M/L ratios and dark halos
ADS | arXiv

[61] 1987, AJ, 93, 816
KENT, STEPHEN M.
Dark matter in spiral galaxies. II - Galaxies with H I rotation curves
ADS

[62] 1989, ApJ, 345, L17
LAKE, GEORGE
Testing modifications of gravity
ADS

[63] 1987, ApJ, 312, 17
HERNQUIST, LARS; QUINN, P. J.
Shell galaxies and alternatives to the dark matter hypothesis
ADS

[64] 1993, AJ, 106, 507
LO, K. Y.; SARGENT, W. L. W.; YOUNG, K.
The H I structure of nine intrinsically faint dwarf galaxies
ADS

[65] 1997, Phys. Rev. E 56, 1148
Mordehai Milgrom
Non-linear conformally invariant generalization of the Poisson equation to D>2 dimensions
arXiv

[66] 1989, Phys. rev. Lett. 81, 2858
John D. Anderson, Philip A. Laing, Eunice L. Lau, Anthony S. Liu, Michael Martin Nieto, Slava G. Turyshev
Indication, from Pioneer 10/11, Galileo, and Ulysses Data, of an Apparent Anomalous, Weak, Long-Range Acceleration
arXiv

[67] Scientific American, December 1998
George Musser
PIONEERING GAS LEAK?
SciAm

[68] 1994, Ap&SS, 219, 135
SIVARAM, C.
Mond, dark matter and the cosmological constant
ADS

[69] 1994, Ap&SS, 215, 185
SIVARAM, C.
Some aspects of MOND and its consequences for cosmology
ADS

[70] 1984, ApJ, 286, 3
FELTEN, J. E.
Milgrom's revision of Newton's laws - Dynamical and cosmological consequences
ADS

[71] 1983, N84-18132
FELTEN, J. E.
Milgrom's revision of cosmic dynamics: Amending Newton's laws or Keplers?
ADS

[72] 1987, IAUS 127, 469
DUPRAZ, C.; COMBES, F.; PRIEUR, J.L.
SHELLS AROUND TUMBLING BARS - THE MASS DISTRIBUTION AROUND NGC3923
ADS

[73] 1992, A&A, 256, 19
BROEILS, A. H.
The mass distribution of the dwarf spiral NGC 1560
ADS

[74] 1995, A&A, 296, 264
QIN, B.; WU, X.P.; ZOU, Z.L.
An attempt to empirically evaluate the gravitational deflection of light in the modified Newtonian dynamics.
ADS

[75] 1987, MNRAS, 227, 677
YOSHII, YUZURU; SAIO, HIDEYUKI
On the velocity fields in elliptical galaxies with dark matter
ADS

[76] Ph.D. Thesis. Thechnical University of Munich, The Max Planck Institute for Physics
Rainer Romatka
Alternatives to ``dark matter'' (in German)

[77] 1994, ApJ, 427, 86
BUOTE, DAVID A.; CANIZARES, CLAUDE R.
Geometrical evidence for dark matter: X-ray constraints on the mass of the elliptical galaxy NGC 720
ADS

[78] General Relativity and Gravitation 27, 4 (1995)
Harald H. Soleng
Dark Matter and Non-Newtonian Gravity from General Relativity Coupled to a Fluid of strings

[79] Nature, N&V 359, 583 (15 Oct 1992)
David Lindley
Messing around with gravity

[80] 1992, ApJ, 397, L71
LIBOFF, RICHARD L.
Generalized Newtonian force law and hidden mass
ADS

[81] Physics Today February 1992
Scott Tremaine
The Dynamical Evidence for Dark Matter

[82] 1988, AJ, 96, 1307
CHRISTODOULOU, DIMITRIS M.; TOHLINE, JOEL E.; STEIMAN-CAMERON, THOMAS Y.
Tilted-ring models of the prolate spiral galaxies NGC 5033 and 5055
ADS

[83] 1986, ApJ, 307, 449
CHRISTODOULOU, D. M.; TOHLINE, J. E.
What warped disks can tell us about galaxy halos and gravity
ADS

[84] Second Canadian Conference on General Relativity and Relativistic Astrophysics, A. Coley, C. Dyer and B. Tupper, eds. (World Scientific, Singapore, 1988)
Jacob D. Bekenstein
The Missing Light Puzzle: a Hint About Gravity?

[85] 1988, Physics Letters B202, 497
Jacob D. Bekenstein
Phase Coupled Gravitation and Gauge Fields

[86]Sixth Marcel Grossman Conference on General Relativity, Kyoto 1991
Jacob D. Bekenstein
New gravitational theories as alternatives to dark matter

[87] Developments in General Relativity, Astrophysics and Quantum Theory: A Jubilee in Honour of Nathan Rosen, eds. F. I. Cooperstock, L. P. Horwitz and J. Rosen, (IOP Publishing, Bristol 1990), p.155.
Jacob D. Bekenstein
Non Newtonian gravitation and causality

[88] Jerusalem Winter School, Jan. 1987.
Eds. J. Bahcall, T. Piran, and S. Weinberg (World Scientific Singapore)
M. Milgrom
Departure from Newton's laws at low accelerations as the explanation of the dark matter problem

[89] La Recherche February 1988
M. Milgrom
La Modification des lois de Newton

[90] Book ???
Wallace and Karen Tucker
Dark Matter

[91]New ideas in astronomy, Arp's festschrift Eds. Bertola Sulentic and Madore Robert H. Sanders
Alternatives to missing mass

[92] Article in The Astronomy and Astrophysics Encyclopedia, S. P. Maran, ed. (Van Nostrand Rheinhold, New York, 1992), p.297.
Jacob D. Bekenstein
Gravitational Theories

[93]Galaxy Dynamics Conference, eds. D. Merritt, J. Sellwood, & M. Valluri (1998) astro-ph/9812327
Stacy S. McGaugh
How galaxies don't form
ADS | arXiv

[94]'98 October conference, After the Dark Ages, eds. Smith & Holt astro-ph/9812328
Stacy S. McGaugh
MOND in the Early Universe
ADS | arXiv

[95] 1999, PASP, 111, 306
Cook, K.H., Mateo, M., Olszewski, E.W., Vogt, S.S., Stubbs, C., Diercks, A.
The Systemic Velocity and Internal Kinematics of the Dwarf Galaxy LGS 3: An Optical Foray beyond the Milky Way
ADS

[96] 1999, preprint
Periwal, V.
Cosmological and astrophysical tests of quantum gravity
arXiv

[97] 1998, ApJ, 499, 41
S. McGaugh & W. de Blok
Testing the Dark Matter Hypothesis with Low Surface Brightness Galaxies and Other Evidence
ADS | arXiv

[98] 1996, Ph.D. thesis, Weizmann Institute of Science
Rafi Brada
Problems in galactic dynamics using the modified dynamics (MOND)
uuencoded, compressed postscript

[99] 1994, in Proc. of the ESO/OHP Workshop, Dwarf Galaxies, eds. G. Meylan \& P. Prugniel (Garching: ESO), 335
Gerhard, O.

[100] 1996, MNRAS, 280, 337
McGaugh, S.S.
The Number, Luminosity, and Mass Density of Spiral Galaxies as a Function of Surface Brightness
ADS | arXiv

[101] 1999, A&A, 345, 36
Sanchez-Salcedo, F.-J. & Hidalgo-Gamez, A.M.
Visiting non-Newtonian MOND gravity in low-mass galaxies
ADS

[102] 1999, MNRAS, in press
Sanders, R.H.
The fundamental plane of elliptical galaxies with modified Newtonian dynamics
arXiv

[103] 1999, ApJ, 523, L99
McGaugh, S.S.
Distinguishing Between CDM and MOND: Predictions for the Microwave Background
ADS | arXiv

[104] 1999, Galaxy Dynamics: from the Early Universe to the Present, eds. F. Combes, G. A. Mamon, and V. Charmandaris
McGaugh, S.S.
Dynamical constraints on theories of disk galaxy formation
ADS | arXiv

[105] 1999, Galaxy Dynamics: from the Early Universe to the Present, eds. F. Combes, G. A. Mamon, and V. Charmandaris
Dalcanton, J., & Bernstein, R.
Galaxy Dynamics from Edge-On Late-type Galaxies
ADS | arXiv

[106] Clustering at High Redshift, 1999, eds. A. Mazure and O. Le Fevre
Peebles, P.J.E.
Summary: Comments on the State of our Subject
arXiv

[107] 1999, PRL, 83, 3990
Edery, A.
The Bright Side of Dark Matter
arXiv

[108] 1999, preprint
Consoli, M.,& Siringo, F.
Newtonian gravity from Higgs condensates
arXiv

[109] 1999, preprint
Bekenstein, J.D., Milgrom, M., & Sanders, R.H.
Comment on "The Bright Side of Dark Matter" by A. Edery
arXiv

[110] 1999, preprint
van den Bosch, F.C., & Dalcanton, J.J.
Semi-Analytical Models for the Formation of Disk Galaxies II. Dark Matter versus Modified Newtonian Dynamics
arXiv | Comments

[111] 1996, in The Galactic Center, ASP, 102, 362
Selman, F.J.
MOND and the Feeding of the Monster: The Conveyor Belt
ADS

[112] 1999, A&A, in press
Selman, F.J.
Mass Segregation in the Universe: Dark Matter or MOND?

[113] 2000, ApJ, 531, L21
Brada, R., & Milgrom, M.
The modified dynamics is conducive to galactic warp formation
arXiv

[114] 28 Jan 2000, Science, 287, 572
Mark Sincell
Heretical Idea Faces Its Sternest Test
Science | Comments

[115] 2000, preprint
M. Consoli
Gravitational forces from Bose-Einstein condensation
arXiv

[116] 2000, ApJ, 523, L99
McGaugh, S.S., Schombert, J.M., Bothun, G.D., & de Blok, W.J.G.
The Baryonic Tully-Fisher Relation
arXiv

[117] 2000, ApJ, in press
Muller, D., & Opher, R.
Orbits in a Neighboring Dwarf Galaxy According to MOND
arXiv

[118] 2000, Mercury, 29(2), 8
McGaugh, S., & Schulman, E.
Modified Newtonian Dynamics
ASP

[119] 2000, ApJ, in press
Milgrom, M.
Dwarf satellite galaxies in the modified dynamics
arXiv

[120] 2000, ApJL, submitted
Milgrom, M.
The shape of "dark matter" halos in disk galaxies according to the modified dynamics
arXiv

[121] 2000, preprint
Blais-Ouellette, S., Amram, P., & Carignan, C.
Accurate Determination of the Mass Distribution in Spiral Galaxies: II. Testing the Shape of Dark Halos
arXiv

[122] 2000, in 15th Florida Workshop in Nonlinear Astronomy and Physics
Kinney, W.H., & Brisudova, M.
An attempt to do without dark matter
arXiv

[123] 2000, in Galaxy Disks and Disk Galaxies
van den Bosch, F.C., & Dalcanton, J.J.
Disk Galaxies as Cosmological Benchmarks: Cold Dark Matter versus Modified Newtonian Dynamics
arXiv

[124] 2000, in Gas & Galaxy Evolution
Sellwood, J.A., & A. Kosowsky, A.
Does Dark Matter Exist?
arXiv

[125] 2000, ApJ, 541, L33
McGaugh, S.S.
BOOMERanG Data Suggest a Purely Baryonic Universe
arXiv | ApJ

[126] 2001, Fundamentals of Cosmic Physics, in press
Battaner, E., & Florido, E.
The rotation curve of spiral galaxies and its cosmological implications
arXiv

[127] 2001, ARA&A, 39
Sofue, Y., & Rubin, V.
Rotation Curves of Spiral Galaxies
arXiv

[127] 2001, International Journal of Modern Physics A, in press
McGaugh, S.S.
Galaxy Dynamics and the Second Peak: Cold Dark Matter?
arXiv

[128] 2001, preprint
Sanders, R.H.
The formation of cosmic structure with modified Newtonian dynamics
arXiv

[129] 2001, AJ, in press
Gerhard, O., Kronawitter, A., Saglia, R.P., & Bender, R.
Dynamical family properties and dark halo scaling relations of giant elliptical galaxies
arXiv

[130] 2001, in Galaxy Disks and Disk Galaxies
Gerhard, O.
Structure and Mass Distribution of the Milky Way Bulge and Disk
arXiv

[131] 2001, in IDM 2000: Third International Workshop on the Identification of Dark Matter
Evans, N.W.
No Need for Dark Matter in Galaxies?
arXiv

[132] 2001, KAIST-TH 2001/04
S. Baek, P. Ko, Hong Seok Lee
Muon anomalous magnetic moment, $B\to X_s \gamma$ and dark matter detection in the string models with dilaton domination
arXiv

[133] 2001, PASA, in press
Mortlock, D.J., Turner, E.L.
Gravitational lensing and modified Newtonian dynamics
arXiv

[134] 2001
Scott, D., White, M., Cohn, J.D., & Pierpaoli, E.
Cosmological Difficulties with Modified Newtonian Dynamics (or: La Fin du MOND?)
arXiv

[135] 2001
Aguirre, A., Schaye, J., Quataert, E.
Problems for MOND in Clusters and the Ly-alpha Forest
arXiv

[136] Astronomy, August 2001, 26
Steve Nadis
Out of Sight, Out of MOND

[137] 2001, IAS workshop
Galaxies and the Dark Matter Problem
proceedings

[138] 2001
Kaplinghat, M., & Turner, M.S.
How Cold Dark Matter Theory Explains Milgrom's Law
arXiv

[140] 2001, MNRAS, in press
Mortlock, D.J., & Turner, E.L.
Empirical constraints on alternative gravity theories from gravitational lensing
arXiv

[141] 2001, MNRAS, in press
Mortlock, D.J., & Turner, E.L.
Gravitational lensing in modified Newtonian dynamics
arXiv

[142] 2001, Physics Letters B, submitted
Mendes, S.O., & Opher, R.
Sub-mm gravity: confronting the modified dynamics with higher-dimensional theories
arXiv

[143] 2001, MNRAS, submitted
Lokas, E.L.
Velocity dispersions of dwarf spheroidal galaxies: dark matter versus MOND
arXiv

[144] 2001, MNRAS, in press
Nusser, A.
Modified Newtonian Dynamics of Large Scale Structure
arXiv

[145] 2001, in The Dynamics, Structure and History of Galaxies
Sellwood, J.A., & Kosowsky, A.
Distinguishing Dark Matter from Modified Gravity
arXiv

[146] 2001 (rebuts [138])
Milgrom, M.
Does MOND follow from the CDM paradigm?
arXiv

[147] 2001, Astronomy Now
McGaugh, S.S.
Gravity For All Scales?
HTML

[148] 2000, Future Frame
McGaugh, S.S.
A Few Steps Back On The Decision Tree
FF | HTML

[149] 2002, General Relativity and Gravtitation, 34
Roscoe, D.F.
A proposed theoretical basis for a MOND cosmology: I. The inertial frame
arXiv

[150] 2002, MNRAS, in press
Lokas, E.W.,
Dark matter distribution in dwarf spheroidal galaxies
arXiv

[151] 2001, in The Dark Universe, ed. M. Livio
Sanders, R.H.
Modified Newtonian dynamics and its implications
arXiv

[152] 2001
e Costa, S.S., & Opher, R.
Generalizing the MOND description of rotation curves
arXiv

[153] 2002
Milgrom, M.
MOND mass-to-light ratios for galaxy groups
arXiv

[154] 2001, for Particles and Astrophysics--Standard Models and Beyond
Milgrom, M.
MOND--a pedagogical review
arXiv

[155] 2001, J.Phys. A35 (2002) 1437-1454
Milgrom, M.
Forces in Nonlinear Media
arXiv | JphysA

[156] 2001, ApJL, submitted
Kleyna, J.T., Wilkinson, M.I., Evans, N.W., Gilmore, G.
First Clear Signature of an Extended Dark Matter Halo in the Draco Dwarf Spheroidal
arXiv

[157] 2002, ARA&A, in press
Sanders, R.H., & McGaugh, S.S.
Modified Newtonian Dynamics as an Alternative to Dark Matter
ARAA.ps.gz | arXiv

[158] 2002, New Astronomy Reviews, submitted
Combes, F.
Properties of Dark Matter Haloes
arXiv

[159] 2002, New Astronomy Reviews, submitted
Hoekstra, H., Yee, H., Gladders, M.
Current status of weak gravitational lensing
arXiv

[160] 2002, New Astronomy Reviews, in press
Milgrom, M.
MOND--theoretical aspects
arXiv

[161] 2002, Acta physica Polonica B32, 362
Stachniewicz, S., & Kutschera, M.
The first compact objects in the MOND model
arXiv

[162] 2002 (August) Scientific American, 287(2), 42
Milgrom, M.
Does Dark Matter Really Exist?

[163] 2002, in New Horizons in Globular Cluster Astronomy
Scarpa, R., Marconi, G., & Gilmozzi, R.
A Test of Newton's Law of Gravity in the Weak Acceleration Regime
arXiv

[164] 2002, ApJ, in press
Cote, P., Djorgovski, S.G., Meylan G., Castro, S., McCarthy, J.K.
Palomar 13: An Unusual Stellar System in the Galactic Halo
arXiv

[165] 2002, ApJ, 577, 183>br> Buote, D.A., Jeltema, T.E., Canizares, C.R., & Garmire, G.P.
Chandra Evidence of a Flattened, Triaxial Dark Matter Halo in the Elliptical Galaxy NGC 720
arXiv | ApJ

[166] 2002, in: The Evolution of Galaxies. III-From simple Approaches to Self-Consistent Models, G. Hensler, G. Stasinska, S. Harfst, P. Kroupa, Chr. Theis (eds.) Kluwer
Fuchs, B.
Massive Disks in Low Surface Brightness Galaxies
arXiv

[167] 2002, MNRAS, submitted
Sanders, R.H.
Clusters of galaxies with modified Newtonian dynamics
arXiv

[168] 2003, UFIFT-HEP-03-02
Soussa, M.E., & Woodard, R.P.
A Nonlocal Metric Formulation of MOND
arXiv

[169] 2003 Jan 25, New Scientist, p.34-37
Marcus Chown
Breaking the Law

[170] 2003, in "Structure Evolution and Cosmology"
Scarpa, R.
MOND and the fundamental plane of elliptical galaxies
arXiv

[171] 2003, in New Horizons in Globular Cluster Astronomy
McLaughlin, D.E., & Meylan, G.
Velocity Dispersion in the Halo of omega Centauri: No need for MOND given the present data
arXiv

[172] The Guardian
Marcus Chown
Ditching dark matter
The Guardian On-line

[173] in American Scientist, Jan-Feb 2003 Sceince Observer
Dark Matter Heretic
Amreican Scientist

[174] 2003, ApJ submitted
Prada, F. et al.
Observing the dark matter density profile of isolated galaxies
arXiv

[175] 2003, A&A, in press
Scarpa, R., Marconi, G., & Gilmozzi, R.
Using globular clusters to test gravity in the weak acceleration regime
arXiv

[176] 2003
Soussa, M.E. & Woodard, R.P.
A generic problem with purely metric formulations of MOND
arXiv

[177] 2003
Winn, J.N., Hall, P.B. & Schechter, P.L.
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[340] 2007, The Messenger, 128, 41
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[341] 2007
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[344] 2007
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[345] 2007
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[346] 2007
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[347] 2007
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[350] 2007
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[355] 2007
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[358] 2007, JCAP, in press
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[365] 2008, for International School of Physics Enrico Fermi on Atom Optics and Space Physics
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[366] 2008, Review for Modern Physics Letters A
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[367] 2008
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[371] International Journal of Modern Physics D, Volume 16, Issue 12a, pp. 2035-2053 (2007)
Testing Strong MOND Behavior in the Solar System
Magueijo, Joao, Bekenstein, Jacob
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[372] 2008
A possible solution to the Dark Matter, Dark Energy, and Pioneer Anomaly problems via a VSL approach
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[373] 2008, MNRAS Letters, in press
Neutrinos as galactic dark matter in the Ursa Major galaxy group?
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[374] 2008, MNRAS, submitted
MOND and the More Fundamental Plane
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[375] 2008, A&A, 480, 313
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[376] 2008, MNRAS, in press
Milky Way potentials in CDM and MOND. Is the Large Magellanic Cloud on a bound orbit?
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[377] 2007
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[378] 2007, Science, 317, 607
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[379] 2007, JBIS, submitted
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[380] 2007
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[381] 2008
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[382] 2008, A&A, in press
Evolution of spiral galaxies in modified gravity: II- Gas dynamics
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[383] 2008
N-MODY: a code for collisionless N-body simulations in modified Newtonian dynamics
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[384] 2008, ApJ, in press
Milky Way Mass Models and MOND
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[385] 2008
Dark Fluid: Towards a unification of empirical theories of galaxy rotation, Inflation and Dark Energy
HongSheng Zhao, Baojiu Li
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[386] 2008
An analytic model for non-spherical lenses in covariant MOND
HuanYuan Shan, Martin Feix, Benoit Famaey, HongSheng Zhao
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[387] 2008, MNRAS, in press
Dwarf Spheroidals in MOND
Garry W. Angus
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[388] 2008
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[389] 2008
Model of Dark Matter and Dark Energy Based on Gravitational Polarization
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[390] 2008 Phys. Rev. D, 77, 084010
On the growth of structure in theories with a dynamical preferred frame
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[391] 2008
MOND and the Universal Rotation Curve: similar phenomenologies
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[392] 2008
Proper Time in Rotation Curves: the MOND CDM Connection
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[393] 2008
Are sterile neutrinos consistent with clusters, the CMB, and MOND?
Angus, G.W.
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[394] 2008
Reinterpreting MOND: coupling of Einsteinian gravity and spin of cosmic neutrinos?
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[395] 2008
An analytic model for non-spherical lenses in covariant MOND
HuanYuan Shan, Martin Feix, Benoit Famaey, HongSheng Zhao
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[396] 2008
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[397] 2008
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[398] 2008
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[399] 2008
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[400] Phys.Lett.B668:453-456,2008
Modified Newton's gravity in Finsler Space as a possible alternative to dark matter hypothesis
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[401] Phys.Rev.D78:035015,2008
The Dark Matter Constraints on the Left-Right Symmetric Model with Z_2 Symmetry
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[402] A&A 488 (2008) 873-877
MOND vs. Newtonian dynamics in early-type galaxies. The case of NGC 4649 (M60)
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[403] 2008, MNRAS, in press
Cosmological Structure Formation under MOND: a new numerical solver for Poisson's equation
Claudio Llinares, Alexander Knebe, HongSheng Zhao
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[404] 2008
The Redshift Evolution of the Tully-Fisher Relation as a Test of Modified Gravity
Christopher Limbach, Dimitrios Psaltis, Feryal Ozel
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[405] Phys.Rev.D78:044043,2008
Dark Matter, Modified Gravity and the Mass of the Neutrino
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[406] 2008
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[407] 2008
Gaseous drag on a gravitational perturber in Modified Newtonian Dynamics and the structure of the wake
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[408] 2008
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[409] 2008
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De-Chang Dai, Reijiro Matsuo, Glenn Starkman
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[410] 2008
Reconciling MOND and dark matter?
Jean-Philippe Bruneton, Stefano Liberati, Lorenzo Sindoni, Benoit Famaey
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[411] 2008
N-body simulations in modified Newtonian dynamics
Carlo Nipoti, Pasquale Londrillo, Luca Ciotti
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[412] 2008
The MOND limit from space-time scale invariance
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[413] 2008, MNRAS, in press
The relation between stellar mass and weak lensing signal around galaxies: Implications for MOND
Lanlan Tian, Henk Hoekstra, Hongsheng Zhao
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[414] 2008
Mapping the galactic gravitational potential with peculiar acceleration
Claudia Quercellini, Luca Amendola, Amedeo Balbi
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[415] 2008
An ecological approach to problems of Dark Energy, Dark Matter, MOND and Neutrinos
HongSheng Zhao
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[416] 2008
Necessity of Dark Matter in Modified Newtonian Dynamics within Galactic Scales? - Testing the Covariant MOND in Elliptical Lenses
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[417] 2008
Phenomenology of the Modified Newtonian Dynamics and the Concordance Cosmological Scenario
Luc Blanchet, Alexandre Le Tiec
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[418] 2009
Orbital motions in the deep-MOND regime and the patterns of visible matter in galaxies
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[419] 2009
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Luc Blanchet, Alexandre Le Tiec
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[420] 2009
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Nick E. Mavromatos, Mairi Sakellariadou, Muhammad Furqaan Yusaf
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[421] Phys. Rev. D 78 (2008) 104019
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[422] Phys.Rev.D78:043002,2008
Weak Lensing Probes of Modified Gravity
Fabian Schmidt
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[423] 2009, MNRAS, in press
Testing fundamental physics with distant star clusters: theoretical models for pressure-supported stellar systems
Hosein Haghi, Holger Baumgardt, Pavel Kroupa, Eva K. Grebel, Michael Hilker, Katrin Jordi
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[424] 2009, ApJL, in press
Physics of galactic colliders: high speed satellites in LCDM vs MONDian cosmology
Claudio Llinares, HongSheng Zhao, Alexander Knebe
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[425] 2009
Testing of MOND with Local Group Timing
Shi, Y.-C.
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[426] 2009, New Astronomy, 14, 503
MOND and neutrinos: the dark matter density-temperature diagram for X-ray clusters
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[427] 2009, PRD, in press
Stellar Oscillations in Tensor-Vector-Scalar Theory
Sotani, H.
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[428] 2009, MNRAS, in press
Resolving the timing problem of the globular clusters orbiting the Fornax dwarf galaxy
Garry W. Angus, Antonaldo Diaferio
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[429] 2009
The Tensor-Vector-Scalar theory and its cosmology
Constantinos Skordis
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[430] 2009, AJ, in press
Testing Fundamental Physics with Distant Star Clusters: Analysis of Observational Data on Palomar 14
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[431] 2008, Rev. Bras. Ensino FĂ­s. vol.30 no.3
MOND: an alternative to Newtonian mechanics
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[432] 2009
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[433] 2009
Cosmological Constant, Classical "Vacuum" and Special Relativity (From the Lorentz boost to the Milgrom acceleration)
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[434] 2009, Phys. Rev. D, 79, 081301
Can the relativistic field theory version of modified Newtonian dynamics avoid dark matter on galactic scales?
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[435] 2009
An empirical Gravity law up to galactic scales
X. Hernandez, S. Mendoza, T. Suarez, T. Bernal
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[436] 2009
N-body simulations for testing the stability of triaxial galaxies in MOND
Xufen Wu, HongSheng Zhao, Yougang Wang, Claudio Llinares, Alexander Knebe
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[437] 2009
Galactic orbital motions in the Dark Matter, MOdified Newtonian Dynamics and MOdified Gravity scenarios
Lorenzo Iorio
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[438] 2009
An empirical Gravity law up to galactic scales
X. Hernandez, S. Mendoza, T. Suarez, T. Bernal
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[439] 2009, MNRAS, in press
The velocity dispersion and mass-to-light ratio of the remote halo globular cluster NGC 2419
H. Baumgardt, P. Cote, M. Hilker, M. Rejkuba, S. Mieske, S.G. Djorgovski, P. Stetson
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[440] 2009
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[441] 2009
The structure of spiral galaxies: radial profiles in stellar Mass-to-Light ratio and the Dark Matter distribution
Laura Portinari, Paolo Salucci
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[442] 2009
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Gilles Esposito-Farese
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[443] 2009
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Eva Sagi
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[444] 2009
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[445] 2009
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[446] 2009, proceedings of DARK 2009
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[447] 2009
Garry W. Angus, Benoit Famaey, Antonaldo Diaferio
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[448] Mon. Not. R. Astron. Soc. 399, 474, 2009
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[449] 2009IJMPD..18.1039
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[450] 2009arXiv0901.3011
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[451] 2009A&A...496..659
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[452] 2009JPhCS.154a2002
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[453] 2009ApJ...695L.145
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[454] 2009APS..APR.E1004
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[455] 2009MNRAS.396..887
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[456] 2009arXiv0907.3028
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[457] 2009arXiv0907.3691
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[458] 2009CQGra..26n3001
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[459] 2009NewA...14..503
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[460] 2009AN....330..857
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[461] 2009, Physicaplus, 12
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[462] 2009NuPhA.827..555
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[463] 2009BrJPh..39..592
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[464] 2009MNRAS.398.1023
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[465] 2009PhLB..680...98
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[466] 2009PhRvD..80f3515
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[467] 2009PhRvD..80f4007
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[468] 2009POBeo..86..341
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[469] 2009Ap&SS.323..215
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[470] 2009arXiv0910.4776
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[471] 2009arXiv0910.5204
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[472] 2009MNRAS.399..474
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[473] 2009MNRAS.399L..21
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[474] 2009arXiv0911.0715
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[475] 2009arXiv0911.3658
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[476] 2009Sci...326..812
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[477] 2009sf2a.conf...49
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[478] 2009arXiv0912.0710
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[479] 2009PhRvD..80l3536
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[480] 2010AdAst2010E...4
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[481] 2010dmap.conf..335
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[482] 2010A&A...509A..97
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[483] 2010arXiv1001.0725
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[484] 2010arXiv1001.1303
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[485] 2010arXiv1001.3876
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[486] 2010MNRAS.401..131
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[487] 2010MNRAS.401.2012
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[488] 2010NewA...15..159
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[489] 2010PhRvD..81b4041
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[490] 2010A&A...511A..89
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[491] 2010MNRAS.402..395
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[492] 2010ApJ...712..130
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[493] 2010arXiv1003.0684
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[494] 2010arXiv1003.3448
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[495] 2010MNRAS.403..886
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[496] 2010PhRvD..81h7304
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[497] 2010A&A...514A..95
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[498] 2010A&A...514A.101
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[499] 2010arXiv1005.1169
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[500] 2010arXiv1005.3537
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[501] 2010arXiv1005.5442
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[502] 2010IJTP...49.1133
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[503] 2010OAJ.....3....1
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The Perihelion Precession of Saturn, Planet X/Nemesis and MOND
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[504] 2010A&A...516A..11
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[505] 2010AfrSk..14...67
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[506] 2010AIPC.1240..359
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[507] 2010AIPC.1241..139
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[508] 2010AIPC.1241..154
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[510] 2010AIPC.1241..935
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[511] 2010arXiv1006.3809
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[512] 2010arXiv1006.5037
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[513] 2010JCAP...06..010
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[514] 2010MNRAS.405.1129
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[515] 2010MNRAS.tmp..854
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[516] 2010MNRAS.tmp..945
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[528] 2009, New Scientist, August 24
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[535] 2010
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[536] 2010
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[537] 2010
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[540] 2010
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[541] 2010
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[542] 2010 CQG, 27, 215014
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[543] 2010, ApJ, 720, 11
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[545] 2010
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[547] 2010
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[552] 2010
Funkhouser, Scott
Non-Newtonian Second Law of motion from entropic dynamics in an asymptotically de Sitter space
ADS| arXiv

[553] 2010
Ananias Neto, Jorge
Nonhomogeneous Cooling, Entropic Gravity and MOND Theory
ADS| arXiv

[554] 2010
Pikhitsa, Peter V.
MOND reveals the thermodynamics of gravity
ADS| arXiv

[555] 2010
Paul D. Lasky, Daniela D. Doneva
Stability and Quasinormal Modes of Black holes in Tensor-Vector-Scalar theory: Scalar Field Perturbations
ADS| arXiv

[556] 2010
Wang, Ling-Jun
Recovering modified Newtonian dynamics by changing inertia
ADS| arXiv

[557] 2011
Skordis, C.; Zlosnik, T. G.
The Geometry Of Modified Newtonian Dynamics
ADS| arXiv

[558] 2011
Nirupam Roy
Constraining the MOdified Newtonian Dynamics from spherically symmetrical hydrodynamic accretion
ADS| arXiv

[559] 2011
Mordehai Milgrom
MD or DM? Modified dynamics at low accelerations vs dark matter
ADS| arXiv

[560] 2011
Kahya, E. O.
A useful guide for gravitational wave observers to test modified gravity models
ADS| arXiv

[561] 2011
Nipoti, Carlo; Ciotti, Luca; Londrillo, Pasquale
Radial-orbit instability in modified Newtonian dynamics
ADS| arXiv

[562] 2011
Neto, Jorge Ananias
Nonhomogeneous Cooling, Entropic Gravity and MOND Theory
ADS

[563] 2011
McGaugh, Stacy
The Baryonic Tully-Fisher Relation of Gas Rich Galaxies as a Test of LCDM and MOND
ADS| arXiv

[564] 2011
Exirifard, Qasem
Gravo-Magnetic force in the MOND regime
ADS| arXiv

[565] 2011
Magueijo, Joao; Mozaffari, Ali
The case for testing MOND using LISA Pathfinder
ADS| arXiv

[566] 2011
Richtler, T.; Famaey, B.; Gentile, G.; Schuberth, Y.
Remarks on the properties of elliptical galaxies in modified Newtonian dynamics
ADS| arXiv

[567] 2011
Samurovic, S.; Lalovic, A.
The Jeans modeling of the Milky Way galaxy: implications of the kinematics of the stellar halo
ADS

[568] 2011
Roy, Nirupam
Constraining the MOdified Newtonian Dynamics from spherically symmetrical hydrodynamic accretion
ADS| arXiv

[569] 2011
Ho, Chiu Man; Minic, Djordje; Ng, Y. Jack
Quantum gravity and dark matter
ADS| arXiv

[570] 2011
Mol, Anderson W.
On the gravitodynamics of moving bodies
ADS| arXiv

[571] 2011
Deffayet, Cedric; Esposito-Farese, Gilles; Woodard, Richard P.
Nonlocal metric formulations of MOND with sufficient lensing
ADS| arXiv

[572] 2011
Ibata, R.; Sollima, A.; Nipoti, C.; Bellazzini, M.; Chapman, S. C.; Dalessandro, E.
The globular cluster NGC 2419: a crucible for theories of gravity
ADS| arXiv

[573] 2011
Pazy, E.
Particles statistics of the holographic screen lead to Modified Newtonian Dynamics (MOND)
ADS| arXiv

[574] 2011
Zhang, Hongsheng; Li, Xin-Zhou
MOND cosmology from holographic principle
ADS| arXiv

[575] 2011
Babichev, Eugeny; Deffayet, Cedric; Esposito-Farese, Gilles
Improving relativistic MOND with Galileon k-mouflage
ADS| arXiv

[576] 2011
Malekjani, M.; Haghi, H.; Jassur, D. M. Z
The Effect of Cosmological Background Dynamics on the Spherical Collapse in MOND
ADS| arXiv

[577] 2011
Beech, Martin
The orbit of Proxima Centauri: a MOND versus standard Newtonian distinction
ADS

[578] 2011
Hees, Aurelien; Wolf, Peter; Lamine, Brahim; Reynaud, Serge; Jaekel, Marc-Thierry; Le Poncin-Lafitte, Christophe; Lainey, Valery; Fuzfa, Andre; Dehant, Veronique
Radioscience simulations in General Relativity and in alternative theories of gravity
ADS| arXiv

[579] 2011
Blanchet, Luc; Novak, Jerome
Testing MOND in the Solar System
ADS| arXiv

[580] 2011
Sanders, R. H.
Hiding Lorentz Invariance Violation with MOND
ADS| arXiv

[581] 2011
Sanchez-Salcedo, F. J.; Hidalgo-Gamez, A. M.
Is Holmberg-II beyond MOND theory?
ADS| arXiv

[582] 2011
Gupta, R. C.; Pradhan, Anirudh
A theoretical qualitatively-explained new-variant of Modified-Newtonian-Dynamics (MOND)
ADS| arXiv

[583] 2011
Hendi, S. H.; Sheykhi, A.
Entropic corrections to Einstein equations
ADS| arXiv

[584] 2011
Li, Xin; Chang, Zhe
Debye Entropic Force and Modified Newtonian Dynamics
ADS| arXiv

[585] 2011
Angus, Garry W.; Diaferio, Antonaldo
The abundance of galaxy clusters in MOND: Cosmological simulations with massive neutrinos
ADS| arXiv

[586] 2011
Kiselev, V. V.; Timofeev, S. A
Cosmological extrapolation of MOND
ADS| arXiv

[587] 2011
Klinkhamer, F. R.; Kopp, M.
Entropic gravity, minimum temperature, and modified Newtonian dynamics
ADS| arXiv

[588] 2011
Sebastian, Saneesh; Kuriakose, V. C.
A Mond Programme from Einstein Hilbert Action
ADS| arXiv

[589] 2011
Milgrom, Mordehai
MOND and the unique void galaxy KK246
ADS| arXiv

[590] 2011
McGaugh, Stacy S.
Novel Test of Modified Newtonian Dynamics with Gas Rich Galaxies
ADS| arXiv

[591] 2011
Milgrom, Mordehai
Gravitational Cherenkov Losses in Theories Based on Modified Newtonian Dynamics
ADS| arXiv

[592] 2011
Haghi, H.; Baumgardt, H.; Kroupa, P.
Distant star clusters of the Milky Way in MOND
ADS| arXiv

[593] 2011
Llinares, C.; Knebe, A.; Zhao, H.
Cosmological structure formation under MOND. A new numerical solver for the Poisson's equation
ADS

[594] 2011
Nipoti, C.; Londrillo, P.; Ciotti, L.
N-body simulations in modified Newtonian dynamics
ADS

[595] 2011
Shi, Yan-Chi
MOND's Problem in Local Group
ADS| arXiv

[596] 2011
Iorio, Lorenzo
Constraints on the location of a putative distant massive body in the Solar System and on the External Field Effect of MOND from recent planetary data
ADS| arXiv

[597] 2011
Esposito-Farese, Gilles
Motion in Alternative Theories of Gravity
ADS

[598] 2011
Gonzalo J. Olmo
Palatini Approach to Modified Gravity: f(R) Theories and Beyond
ADS| arXiv

[599] 2011
Gentile, G.
Dark Matter or Modified Dynamics? Hints from Galaxy Kinematics
ADS

[600] 2011
outi, Y.
Dark Companion of Baryonic Matter in Spiral Galaxies
ADS

[601] 2011
Famaey, B.; Bruneton, J.-P.
Non-Standard Baryon-Dark Matter Interactions
ADS

[602] 2011
Hernandez, X.; Jimenez, M. A.; Allen, C.
Wide binaries as a critical test of Classical Gravity
ADS| arXiv

[603] 2011
Gine, Jaume
On the Origin of the Inertial Force and Gravitation
ADS

[604] 2011
Ng, Y. Jack
Various Facets of Spacetime Foam
ADS| arXiv

[605] 2011
Clifton, Timothy; Ferreira, Pedro G.; Padilla, Antonio; Skordis, Constantinos
Modified Gravity and Cosmology
ADS| arXiv