5.1 Literaturverzeichnis

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[1] Dorfmüller, T. und andere:
Lehrbuch der Experimentalphysik - Bergmann/Schäfer,
Band I. Mechanik, Relativität, Wärme, 11. Auflage, Berlin 1998, Seite 156

[2] Falconer, I.:
Henry Cavendish: The Man And The Measurement
in: Measurement Science And Technology, Vol. 10 (1999), No. 6, pp. 470-477
(http://www.iop.org/EJ/S/3/266/Bn525lW.GFMAMD89qR4EsQ/article/0957-0233/10/6/310/e90610.pdf)

[3] Cohen, E.R. und B.N. Taylor:
The 1986 Adjustment Of The Fundamental Physical Constants
in: Reviews of Modern Physics, Vol. 59 (1987), No. 4, pp. 1121-1154

[4] Luther, G.G. und W.R. Towler:
Redetermination Of The Newtonian Gravitational Constant G
in: Physical Review Letters, Vol. 48 (1982), No. 3, pp. 121-123

[5] Sagitov, M.U., et al.,
in: Dok. Acad. Nauk SSSR, Vol. 245 (1979), pp. 567
[Sov. Phys.-Dokl. Vol. 245 (1981), pp. 20]

[6] Karagioz, O.V.; A.A. Silin und V.P. Izmaylov
in: Izv. Acad. Nauk SSSR, Fiz. Zemli, Vol. 17 (1981), pp. 92
[Izv. Acad. Sci. USSR, Phys. Solid Earth, Vol. 17 (1976), pp. 66]

[7] Mohr, P.J. und B.N. Taylor:
CODATA Recommended Values Of The Fundamental Physical Constants: 1998
in: Reviews of Modern Physics, Vol. 72 (2000), No. 2, pp. 351-495
(http://rmp.aps.org/cgi/reprint/72/2/351.pdf)

[8] Fischbach, E.; D. Sudarsky, A. Szafer, C. Talmadge und S.H. Aronson:
Reanalysis Of The Eötvös Experiment
in: Physical Review Letters, Vol. 56 (1986), No. 1, pp. 3-6
(http://prola.aps.org/pdf/PRL/v56/i1/p3_1)

[9] Kuroda, K.:
Does The Time-Of-Swing Method Give A Correct Value Of The Newtonian Gravitational Constant?
in: Physical Review Letters, Vol. 75 (1995), No. 15, pp. 2796-2798
(http://ojps.aip.org/journal_cgi/getpdf?KEY=PRLTAO&cvips=PRLTAO000075000015002796000001)

[10] Kramers, H.A.
in: Phys. Z. Vol. 30 (1929), pp. 22 und
deKronig, R.L.
in: JOSA, Vol. 12 (1926), pp. 47

[11] Truesdell, C. und W. Noll:
The Non-Linear Field Theories Of Mechanics
in: S. Flügge (Hrsg.): Handbuch der Physik Band III/3,
Springer Berlin 1965,
Seite 3 b) Mathematical generality

[12] Kuroda, K.:
Anelasticity In G Experiments
in: Measurement Science And Technology, Vol. 10 (1999), No. 6, pp. 435-438
(http://www.iop.org/EJ/S/3/266/wBkSJNWqIZXZo2Hh6sc5Ug/article/0957-0233/10/6/304/e90604.pdf)

[13] Michaelis, W.; H.Haars und R. Augustin:
A New Precise Determination Of Newton’s Gravitational Constant
in: Metrologia, Vol. 32 (1995), No. 4, pp. 267-276
(http://fidelio.catchword.com/vl=45190525/cl=3/nw=1/fm=docpdf/rpsv/catchword/bipm/00261394/v32n4/s4/p267.idx)

[14] Bagley, C.H. und G.G. Luther:
Preliminary Results Of A Determination Of The Newtonian Constant Of Gravitation: A Test Of The Kuroda Hypothesis
in: Physical Review Letters, Vol. 78 (1997), No. 16, pp. 3047-3050
(http://ojps.aip.org/journal_cgi/getpdf?KEY=PRLTAO&cvips=PRLTAO000078000016003047000001)

[15] Luther, G.G.:
Musings On The Use Of A Bifilar Suspension In The Measurement Of G
in: Measurement Science And Technology, Vol. 10 (1999), No. 6, pp. 426-429
(http://www.iop.org/EJ/S/3/266/QeBbJOUoJbX.Qcbi8qL4iQ/article/0957-0233/10/6/302/e90602.pdf)

[16] Heyl, P.E und P. Chranovski:
in: J. Res. Nat. Bur. Stand., Vol.29 (1942), pp.1-31

[17] Karagioz, O.V.; V.P. Izmaylov und G.T. Gillies:
The "Three-Position" Scheme For Measurement Of The Newtonian Gravitational Constant: Experimental Results And Investigation Of A Temporal Drift
in: Gravitation & Cosmology, Vol. 5 (1999), No. 2 (18), pp. 155-159

[18] Karagioz, O.V. und V.P. Izmaylov:
Measurement Of The Gravitational Constant With A Torsion Balance
in: Measurement Techniques, Vol. 39 (1996), No. 10, pp. 979-987

[19] Karagioz, O.V.; V.P. Izmaylov und G.T. Gillies:
Gravitational Constant Measurement Using A Four-Position Procedure
in: Gravitation & Cosmology, Vol. 4 (1998), No. 3 (15), pp. 239-245

[20] Luo, J.; Z.K. Hu, X.H. Fu, S.H. Fan und M.X. Tang:
Determination Of The Newtonian Gravitational Constant G With A Nonlinear Fitting Method
in: Physical Review D, Vol. 59 (1998), No. 4, pp. 042001
(http://ojps.aip.org/journal_cgi/getpdf?KEY=PRVDAQ&cvips=PRVDAQ000059000004042001000001)

[21] Luo, J.; Z.K. Hu und H. Hsu:
Thermoelastic Property Of The Torsion Fiber In The Gravitational Experiments
in: Review Of Scientific Instruments, Vol. 71 (2000), No. 3, pp. 1524-1528
(http://ojps.aip.org/journal_cgi/getpdf?KEY=RSINAK&cvips=RSINAK000071000003001524000001)

[22] Fitzgerald, M.P. und T.R. Armstrong:
Newton’s Gravitational Constant With Uncertainty Less Than 100 ppm
in: IEEE: Transactions On Instrumentation And Measurement, Vol. 44, (1995), No. 2,
pp. 494-497

[23] Newman, R.D. und M.K. Bantel:
On Determining G Using A Cryogenic Torsion Pendulum
in: Measurement Science And Technology, Vol. 10 (1999), No. 6, pp. 445-453
(http://www.iop.org/EJ/S/3/266/QeBbJOUoJbX.Qcbi8qL4iQ/article/0957-0233/10/6/306/e90606.pdf)

[24] Fitzgerald, M.P. und T.R. Armstrong:
The Measurement Of G Using The MSL Torsion Balance
in: Measurement Science And Technology, Vol. 10 (1999), No. 6, pp. 439-444
(http://www.iop.org/EJ/S/3/266/QeBbJOUoJbX.Qcbi8qL4iQ/article/0957-0233/10/6/305/e90605.pdf)

[25] Richman, S.J.; T.J. Quinn, C.C. Speake und R.S. Davis:
Preliminary Determination Of G Using The BIPM Torsion Strip Balance
in: Measurement Science And Technology, Vol. 10 (1999), No. 6, pp. 460-466
(http://www.iop.org/EJ/S/3/266/nmQeShCarS1YDrz1U0qW6w/article/0957-0233/10/6/308/e90608.pdf)

[26] Gundlach, J.H. und S.M. Merkowitz:
Mesaurement Of Newton’s Constant Using A Torsion Balance With Angular Acceleration Feedback
in: Physical Review Letters, Vol. 85 (2000), No. 14, pp. 2869-2872
(http://ojps.aip.org/journal_cgi/getpdf?KEY=PRLTAO&cvips=PRLTAO000085000014002869000001)

[27] Gundlach, J.H.:
A Rotating Torsion Balance Experiment To Measure Newton’s Constant
in: Measurement Science And Technology, Vol. 10 (1999), No. 6, pp. 454-459
(http://www.iop.org/EJ/S/3/266/dheZE90N6kCuHCKT7NZv2w/article/0957-0233/10/6/307/e90607.pdf)

[28] Schwarz, J.P.; D.S. Robertson, T.M. Niebauer und J.E. Faller:
A Free-Fall Determination Of The Newtonian Constant Of Gravity
in: Science, Vol. 282 (1998), No. 5397, pp. 2230-2234
(http://www.sciencemag.org/cgi/content/full/282/5397/2230)

[29] Schwarz, J.P.; D.S. Robertson, T.M. Niebauer und J.E. Faller:
A New Determination Of The Newtonian Constant Of Gravity Using The Free Fall Method
in: Measurement Science And Technology, Vol. 10 (1999), No. 6, pp. 478-486
(http://www.iop.org/EJ/S/3/266/QeBbJOUoJbX.Qcbi8qL4iQ/article/0957-0233/10/6/311/e90611.pdf)

[30] Cornaz, A.; B. Hubler und W. Kündig:
Determination Of The Gravitational Constant At An Effektive Interaction Distance Of 112 m
in: Physical Review Letters, Vol. 72 (1994), No. 8, pp. 1152-1155
(http://prola.aps.org/pdf/PRL/v72/i8/p1152_1)

[31] Hubler, B.; A. Cornaz und W. Kündig:
Determination Of The Gravitational Constant With A Lake Experiment: New Constraints For Non-Newtonian Gravity
in: Physical Review D, Vol. 51 (1995), No. 4, pp. 4005-4016
(http://prola.aps.org/pdf/PRD/v51/i8/p4005_1)

[32] Hubler, B.; A. Cornaz und W. Kündig:
Ein Neues Resultat Zum Thema "Fünfte Kraft"
in: Physikalische Blätter, Vol 50 (1994), Nr. 9, pp. 858-859

[33] Schurr, J.; F. Nolting und W. Kündig:
Gravitational Constant Measured By Means Of A Beam Balance
in: Physical Review Letters, Vol. 80 (1998), No. 6, pp. 1142-1145
(http://ojps.aip.org/journal_cgi/getpdf?KEY=PRLTAO&cvips=PRLTAO000080000006001142000001)

[34] Nolting, F.; J. Schurr, S. Schlamminger und W. Kündig:
A Value For G From Beam-Balance Eexperiments
in: Measurement Science And Technology, Vol. 10 (1999), No. 6, pp. 487-491
(http://www.iop.org/EJ/S/3/266/dvqcwlXoA8c0BWeSHzMIMQ/article/0957-0233/10/6/312/e90612.pdf)

[35] Nolting, F.; J. Schurr, S. Schlamminger und W. Kündig:
Die Gravitationskonstante – Eine Herausforderung An Die Meßtechnik
in: Physikalische Blätter, Vol 55 (1999), Nr. 4, pp. 51-53

[36] Schumacher, A.:
Systematische Untersuchungen Zur Messung Der Newton'schen Gravitationskonstanten
Mit Einem Pendelresonator
Dissertation, Bergische Universität Wuppertal, (1999), WUB-DIS 99-13

[37] Schurr, J.; N. Klein, H. Meyer, H. Piel und H. Walesch:
A New Method For Testing Newton’s Gravitational Law
in: Metrologia, Vol. 28 (1991), No. 5, pp. 397-404

[38] Walesch, H.; H. Meyer, H. Piel und J. Schurr:
The Gravitational Force At Mass Separations From 0.6 M To 2.1 M And The Precise Measurement Of G
in: IEEE: Transactions On Instrumentation And Measurement, Vol. 44, (1995), No. 2,
pp. 491-493

[39] Kleinevoß, U.; H. Meyer, A. Schumacher und S. Hartmann:
Absolute Measurement Of The Newtonian Force And A Determination Of G
in: Measurement Science And Technology, Vol. 10 (1999), No. 6, pp. 492-494
(http://www.iop.org/EJ/S/3/266/dheZE90N6kCuHCKT7NZv2w/article/0957-0233/10/6/313/e90613.pdf)
 
 

[40] Walesch, H.:
Test Des Newton'schen Gravitationsgesetzes Und Die Präzise Bestimmung Von G
Dissertation, Bergische Universität Wuppertal, (1995), WUB-DIS 95-4

[41] Parks, H.V.; J.E. Faller und D.S. Robertson:
A Suspended Laser Interferometer For Determining The Newtonian Constant Of Gravitation
in: Conference of Precision Electromagnetic Measurements Conference Digest 2000,
pp. 544-545

[42] Ni, W.T.; D.K. Liu, T.T. Liu, H.H. Mei, S.S. Pan, C.P. Pang und H.C. Yeh:
The Application Of Laser Matrology And Resonant Optical Cavuty Techniques To The Measurement Of G
in: Measurement Science And Technology, Vol. 10 (1999), No. 6, pp. 495-498
(http://www.iop.org/EJ/S/3/266/lQ9eZBtDDc,AdQEaXyOMNQ/article/0957-0233/10/6/314/e90614.pdf)

[43] Sanders, A.J.; A.D. Alexeev, S.W. Allison, K.A. Bronnikov, J.W. Campbell,
M.R. Cates, T.A. Corcovilos, D.D. Earl, T. Gadfort, G.T. Gillies, M.J. Harris,
N.I. Kolosnitsyn, M.Yu. Konstantinov, V.N. Melnikov, R.J. Newby, R.G. Schunk und L.L. Smalley:
Project SEE (Satellite Energy Exchange): Proposal For Space-Based Gravitational Measurements
in: Measurement Science And Technology, Vol. 10 (1999), No. 6, pp. 514-524
(http://www.iop.org/EJ/S/3/266/Bn525lW.GFMAMD89qR4EsQ/article/0957-0233/10/6/317/e90617.pdf)

Weitere, nicht direkt zitierte Literatur:

[44] Rauner, M.:
Freier Fall Für "Groß G"
in: Physikalische Blätter, Vol. 55 (1999), Nr. 2, Seite 15

[45] Schlamminger, S.; E. Holzschuh, W. Kündig, F. Nolting und J. Schurr:
Determination Of The Gravitational Constant
to be published in: Proceedings of 220th WE--Heraeus--Seminar "Gyros, Clocks, and Interferometers: Testing General Relativity in Space"

[46] Gillies, G.T:
The Newtonian Gravitational Constant: Recent Measurements And Related Studies
in: Rep. Prog. Phys., Vol. 60 (1997), pp. 151-225