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10101 Fourier (1992 BM2)
Classification: Main-belt Asteroid          SPK-ID: 2010101
Ephemeris | Orbit Diagram | Orbital Elements | Mission Design | Physical Parameters | Discovery Circumstances | Close-Approach Data ]

[ show orbit diagram ]
Orbital Elements at Epoch 2459000.5 (2020-May-31.0) TDB
Reference: JPL 33 (heliocentric ecliptic J2000)
 Element Value Uncertainty (1-sigma)   Units 
e .09986958382812682 2.8095e-08  
a 2.249294888510061 7.5007e-09 au
q 2.024658744087828 6.3691e-08 au
i 3.919843047999768 3.3226e-06 deg
node 213.558542203046 4.914e-05 deg
peri 208.4013029345864 5.2663e-05 deg
M 194.414082648495 2.0318e-05 deg
tp 2459567.246594248417
7.0937e-05 TDB
period 1232.162596873011
n .2921692323023033 1.4614e-09 deg/d
Q 2.473931032932293 8.2498e-09 au
  Orbit Determination Parameters
   # obs. used (total)      2212  
   data-arc span      15660 days (42.87 yr)  
   first obs. used      1977-09-18  
   last obs. used      2020-08-03  
   planetary ephem.      DE431  
   SB-pert. ephem.      SB431-N16  
   condition code      0  
   norm. resid. RMS      .4504  
   source      ORB  
   producer      Otto Matic  
   solution date      2020-Aug-25 00:14:57  

Additional Information
 Earth MOID = 1.03826 au 
 Jupiter MOID = 2.77741 au 
 T_jup = 3.619 
[ show covariance matrix ]

Ephemeris | Orbit Diagram | Orbital Elements | Mission Design | Physical Parameters | Discovery Circumstances | Close-Approach Data ]

Physical Parameter Table
Parameter Symbol Value Units Sigma Reference Notes
absolute magnitude H 14.2   n/a MPO458927  
rotation period rot_per 6.849 h n/a LCDB (Rev. 2019-August); Warner et al., 2009 Result based on less than full coverage, so that the period may be wrong by 30 percent or so.
Published Reference List:
[Waszczak, A.; Chang, C.-K.; Ofeck, E.O.; Laher, F.; et al. (2015) Astron. J. 150, A75.]

10101 Fourier           Discovered 1992 Jan. 30 by E. W. Elst at the European Southern Observatory.
Named in memory of Jean-Baptiste-Joseph Fourier (1768-1830), French mathematician who exerted a strong influence on mathematical physics through his Théorie analytique de la chaleur (1822), wherein he showed that the conduction of heat in solid bodies may be analyzed in terms of infinite mathematical series, the so-called "Fourier series". In 1798 he accompanied Napoleon to Egypt, where he was engaged, until 1801, in extensive research on Egyptian antiquities.
NOTE: some special characters may not display properly (any characters within {} are an attempt to place the proper accent above a character)
Reference: 19990728/MPCPages.arcLast Updated: 2010-06-11

[ hide close-approach data ]
Close-Approach Data   ...sorted by Date/Time (TDB)
Date/Time (TDB) Time Uncertainty
Body Nominal Distance (au) Minimum Distance (au) Maximum Distance (au) V-relative (km/s) V-infinity (km/s) JD (TDB) Time Uncertainty (minutes) Semi-major axis (km) Semi-minor axis (km) range-LOV angle (deg) N-sigma BP Orbit Ref. Reference Modified
2101-Dec-18 20:16 < 00:01 Iris 0.016367866064532 0.0163669052412682 0.0163688278069566 3.00164008993868 3.00163997292884 2488786.344201830 0.882119875111334 545.076842175332 44.754412622809 -88.2068543426148 54630.8604300043 T 33 CATAB v2.0f-lin.ifort 2020-Aug-25 00:15:08 2020-Aug-25 00:15

Alternate Designations
 1992 BM2 = 1977 SD1 = 1987 SV18 = 1994 VN7 
Ephemeris | Orbit Diagram | Orbital Elements | Mission Design | Physical Parameters | Discovery Circumstances | Close-Approach Data ]
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