Distinction of the C-glycosyl fiavone isomer pairs orientin/isoorientin and vitexin/isovitexin using HPLC-MS exact mass measurement and in-source CID
Cintia A.M. Pereira,’ Janete H. Yariwake’* and Michael McCullagh 2
‘Universidade de São Paulo, Instituto de (Química de São Carlos, Caixa Postal 780, 13560-970, São Carlos, SP, Brazil ‘Micromass UK Ltd, Floats Rd, Wythenshawe, Manchester, M23 9LZ, UK
HPLC-MS using collision induced dissociation (CID) has been utilised for the identification of the C- glycosylflavone isomer pairs orientin/isoorientin and vitexin/isovitexin. HPLC-CIDfMS analyses produced pseudo-MSfMS spectra that allowed the identification of the llavone C-glycosides. The efficient differentiation of isomers was performed by comparing the CID-MSfMS spectra (including exact mass measurements) of particu- lar fragments from the C-glycoside unit. In order to illustrate some possibilities of these MS techniques, they were applied to the comparative analyses of extracts of Psssi@or‹z ‹zfsfs, P. edulis, P. incarnate and P. caertilea (Passifloraceae) that are employed as phytomedicines in Brazil and South America. Copyright O 2005 John Wiley & Sons, Ltd.
Keywords: HPLC-MS; collision induced dissociation; exact mass measurement; C-glycosylflavone isomers; Passi[lorn spp.
INTRODUCTION
Flavonoids and their glycosides can be used as markers in the quality control of many phytomedicines and medicinal plants. As identification and structural deter- mination (including the unequivocal determination of isomers) in crude plant extracts through the use of HPLC-MS and HPLC-MS/MS based methods becomes more routine, the role of such compounds as markers increases in importance (Stobiecki, 2000). In view of the complexity of plant extracts and phytomedicines, the application of orthogonal acceleration time-of-flight (OA-TOF) and in-source collision induced dissociation (CID), in combination with exact mass measurements that together provide a route for specific and unambigu- ous identification, may be an important procedure for the distinction of flavonoid isomers.
In in-source CID, the ions are extracted electro- statically through 90°, entering through the sample cone and accelerating towards the extraction cone. The ions are further electrostatically deflected through 90°, pass- ing through the sample extraction cone where they enter the mass spectrometer. The region between the sampling cone and the extraction cone is under a vacuum of typically 1 mbar. This pressure is relatively high owing to the presence of solvent vapour and nitrogen gas. In order to induce in-source CID fragmentation, the sampling cone voltage is increased in relation to the extraction cone voltage, causing the ions entering the ion block to accelerate more quickly through the region. The resulting collisions can produce sufficient energy to cause
* Correspondence to: J.H. Yariwake, Universidade de São Paulo, Instituto de (Química de São Carlos, Caixa Postal 780, 13560-970, São Carlos, SP, Brazil.
Email: janetefiiqsc.sc.usp.br Contract/grant sponsor: CNPq. Contract/grant sponsor: FAPESP.
Copyright 0 2005 John Wiley & Sons, Ltd.
fragmentation, while increasing the cone voltage can produce further ion fragmentation. The use of a dual electrospray source allows for real time exact mass meas- urements and the elemental composition determination of the fragment ions. By virtue of their ability to indicate actual elemental compositions, exact mass measurements provide greater confidence in compound confirmation, particularly for low molecular weight compounds. OA- TOF is used as a tool for the facile acquisition of exact (<5 ppm) mass data. Therefore, the online combination of OA-TOF/ESI/MS exact mass measurement and HPLC represents a powerful analytical tool for identify- ing unknown components in complex mixtures such as plant extracts.
C-Glycosylflavonoids can be used as markers in the quality control of Passiflora phytomedicines (Pereira et at., 2004), and several studies have been conducted mainly focussed on Passiflora incarnata L. for finger- print analysis and the quantification or identifica- tion of flavonoids by HPLC-MS (Qimin ei at., 1991; Rehwald e/ ml., 1994; Raffaelli ct at., 1997). Other species of Passiflorn also contain apigenin and luteolin C- glycosylflavones that frequently occur as isomers (Pereira and Vilegas, 2000). In previous HPLC-APCI/ MS analyses, Vilegas et at. (2000) detected C- glycosylflavonoid isomers in P. alata and P. edulis. The application of low-energy CID for the differentiation of isomeric O-diglycosyl- and C-glycosyl-flavonoids has already been reported (Ma et at., 2001; Waridel et at., 2001), but these reports did not include exact mass meas- urements of the fragments.
In this paper, HPLC-CID/MS techniques have been employed to produce pseudo MS/MS spectra that fur- nished informative fragmentation data (including exact mass measurements) for the unequivocal identification of the C-glycosylflavone isomer pairs orientin/isoorientin and vitexin/isovitexin in Passiflora extracts.
Received 30 April 2003
Revised 20 August 2004
Accepted 27 August 2004
EXPERIMENTAL
C.A.M. PEREIRA ET A L.
ent from 70:30 to 85:15. The flow-rate was 1.0 mL/min with a split of 1:4. Data were processed using Mass Lynx‘ version 3.5 (Micromass, Manchester, UK). Sample injec-
Plant material. Authenticated samples of leaves of Passiflora e‹Iulis Sims. and P. alata Dryander (Passifloraceae) were supplied by Dr. Ana Maria Soares Pereira (Laboratory of Plant Biotechnology, UNAERP, Ribeirao Preto, SP, Brazil). Prof. Cozimo Pizza (Salerno University, Salerno, Italy) provided an authenticated sample of leaves of P. incarnata L. An authenticated leaf sample of P. caerulen was supplied by Dr. Laura Meletti (Campinas Agronomical Institute, Campinas, SP, Brazil). Voucher specimens of all plant materials employed in this study are deposited in the Laboratory of Phytochemical Analysis (IQSC-USP, Sao Paulo-SP, Brazil) with reference numbers FITO-Pe-001/1998 (P. e‹1ulis), FITO-Pa-001/199 (P. alata), FITO Pi-001/1999
(P. incarnata) and FITO-Pc-001/2000 (P. caerulea). Plant material was dried at 35°C for 48 h, powdered and ground; only particles between 0.5—1.0 mm in size were utilised for the extractions. The powdered plant mater- ial was stored in glass flasks protected from light and humidity.
Preparation of samples. A sample (1.0 g) of leaf mater- ial was stir-mixed with 10 mL of ethanol (Merck, Rio de Janeiro, Brazil): water [purified using the Milli-Q” system Millipore, Milford, MA, USA)] (2:1, v/v) for 24 h at room temperature. The extract was filtered and the solvent evaporated in a rotary evaporator under reduced pressure at 40°C until it was reduced to approximately 2 mL (Farmacopéia Brasileira, 1977). A clean-up step was used to remove interfering compounds such as pig- ments (chlorophylls). The flavonoids were extracted by solid-phase extraction (SPE) on Waters (Milford, MA, USA) C , Sep-Pak‘ cartridges (400 mg). An appropriate volume of sample (2 mL of extract) was drip-percolated through the cartridge, which had been pre-conditioned with 5 mL of methanol (HPLC-grade; Mallinckrodt, Xalostoc, Mexico) and 5 mL of water. The flavonoid fraction was eluted with 10 mL of 60% methanol and the volume adjusted to 10 mL in a volumetric flask. This solution was directly injected into the HPLC after being filtered through a 0.45 Jim membrane (Millipore).
Standard solutions for HPLC-MS analysis. Separate methanolic solutions (0.25 ng/mL) of standard rutin (Sigma, St. Louis, MO, USA), vitexin, isoorientin and orientin (Carl Roth, Karlsruhe, Germany) were prepared.
HPLC-MS analyses
ChromatograR!*• conditions. HPLC analyses were carried out on a Waters Alliance‘ model 2795 liquid chromatograph equipped with a Waters Alliance HT Sample Management autosampler and a Waters SymmetryShield‘ RP18 column (250 x 4.6 mm i.d.; 5 pm) protected by a SymmetryShield guard column (20 mm ›‹
3.9 mm i.d.; 5 km) maintained at 35°C. UV data were acquired using a Waters 996 photodiode array detector. The mobile phase consisted of solvent A (0.2% formic acid in water) and solvent B (acetonitrile). Separations were performed using the following elution programme: 0—10 min isocratic at 85:15 (A:B), 10—40 min linear gradient from 85:15 to 70:30, and 40—50 min linear gradi-
Copyright fi 2005 John Wiley & Sons, Ltd.
tion volumes of 10 ;iL and standard injection volumes of 50 PL were employed.
CID-MS MS. Experiments were carried out using a Micromass model LCT orthogonal acceleration time-of-flight MS equipped with a LockSpray° dual- electrospray ion source. The instrument was operated in the positive mode with both reference and sample sprays at +3 kV. The source and desolvation temperatures were set at 120 and 330°C, respectively. The nitrogen desolvation and nebuliser gas flow rates were set at 972 and 1L/h, respectively. The sample cone voltage was set at six different voltages (20, 30, 50, 65, 80 and 95 V). Prior to the experiments, the instrument was calibrated over a 100—800 Da mass range using a solution of sodium formate (Sigma) dissolved in acetonitrile (Riedel-de Haen, Seelze, Germany) : water (80:20, v/v). A solution (0.25 rig/mL) of leucine encephalin ([M+H]’= 556.2771) in acetonitrile : water (1:1) was used as the reference for exact mass measurements. This solution was infused at 10 PL/min through the reference spray rim a Harvard Apparatus (South Natick, MA, USA) 22-syringe pump. The reference was sampled every 10 s.
RESULTS AND DISCUSSION
HPLC-MS and in-source CID HPLC-MS/MS analyses of extracts from species of Passillora were performed using an orthogonal acceleration time-of-flight (OA-TOF) mass spectrometer equipped with electrospray ionisa- tion. The analyses were carried out in the positive mode. Initial studies at low cone voltages (20, 30 and 50 V) were performed in order to measure accurately the molecular masses of the flavonoid standards vitexin, orientin and isoorientin. The high specificity of the exact mass meas- urement permitted the efficient assignment of the frag- ments using an elemental composition calculator that served to generate the probable elemental formula for each observed fragment. A probability score was deter- mined along with the mass measurement error (less than 4 mDa). At 20 V, for example, an error of —0.2 mDa was observed for the molecular ion of orientin (calculated: 449.1084; experimental: 449.1082). However, increasing cone voltages led to higher deviations of the less abund- ant ions: thus, owing to intense fragmentation at 95 V, the error for the molecular ion of orientin under these conditions was —39.6 mDa (experimental: 449.0688).
The application of increasingly higher cone voltages (65, 80 and 95 V) in the analysis of the flavonoid stand- ards produced characteristic fragment ions, the relative abundance of which differed in the respective flavonoid isomers. Figures 1and 2 illustrate the structures and frag- mentation pathways, respectively, for the 6-C-glycosides isoorientin and isovitexin, and for the 8-C-glycosides, orientin and vitexin. The compounds identified as orientin and isoorientin in the Passiflora extracts (Fig. 3, peaks B and A, respectively) were compared with stand- ards according to the relative abundance of fragments, and the identification of the isomer pair orientin/ isoorientin is illustrated by reference to the extract of caerulea (Fig. 4).
Please draw these compounds using chem.-draw and do their fragmentation pattern based on scientific articles
Please explain (with figures) the fragmentation pattern of O-glycosides using articles
O– glycosides:
Qualitative detection of the O-glycoside in the ethyl acetate fractions of the root leaves and fruits of R. cyprius was carried out HPLC-UV. Running of the HPLC chromatogram (Figure XXXX) gave the best separation of flavonoid peaks. As presented in tables XXXXX LC-MSn (n=2) chromatograms detected only one glycoside of flavanone type.
It was characterized on the bases of its product ion spectrum, comparison with literature data. A comparison of the retention time and mass spectrum presented both the deprotonated molecule [M-H] – of the glycoside and the ion corresponding to the deprotonated aglycone, [(Y0), A-H] – with data compiled for known standard confirmed its structure.
Peak 12 (Rt 26.8 min) is of flavanone skeleton occurs as O-monoglycoside bound to the naringenin aglycone hydroxyl group mostly at C-7 (Ablajan et al, 2006). It is identified by the loss of a hexosyl (-162 Da) radical to give the fragments at m/z 270.9 of the aglycone (Y0). The aglycone of this glycoside is detected at peak 15 min was identified at Rt 51.6 min with [M-H] – 271 compared with standard and previous information (Sanchez-Rabaneda et al, 2003; Mailbury et al, 2006). To our knowledge this is the first report concerning this chromatographic investigation for R. cyprius and our detection for the presence of 16 flavonoid glycosides.
Project Implementation Outputs
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H 0.010 [H(83)]
H 0.385 [H(84)]
H -0.381 [H(85)]
H 0.011 [H(86)]
H 0.138 [H(87)]
H -0.377 [H(88)]
H -0.357 [H(89)]
H -0.003 [H(90)]
H 0.013 [H(91)]
H 0.379 [H(92)]
H 0.170 [H(93)]
H -0.368 [H(94)]
H -0.001 [H(95)]
H 0.185 [H(96)]
H -0.374 [H(97)]
H 0.010 [H(98)]
H 0.173 [H(99)]
H 0.195 [H(100)]
H 0.138 [H(101)]
H -0.419 [H(102)]
H 0.010 [H(103)]
H 0.012 [H(104)]
H 0.014 [H(105)]
H -0.379 [H(106)]
H 0.013 [H(107)]
H 0.016 [H(108)]
H -0.351 [H(109)]
H 0.017 [H(110)]
H 0.014 [H(111)]
H -0.372 [H(112)]
H 0.012 [H(113)]
H 0.009 [H(114)]
H -0.377 [H(115)]
H 0.013 [H(116)]
H 0.016 [H(117)]
H -0.373 [H(118)]
H 0.014 [H(119)]
H 0.012 [H(120)]
H -0.380 [H(121)]
H 0.017 [H(122)]
H 0.014 [H(123)]
H -0.383 [H(124)]
H 0.019 [H(125)]
H 0.015 [H(126)]
H 0.200 [H(127)]
H 0.202 [H(128)]
H 0.202 [H(129)]
H 0.199 [H(130)]
H 0.198 [H(131)]
H 0.211 [H(132)]
H 0.199 [H(133)]
H 0.201 [H(134)]
H 0.206 [H(135)]
H 0.200 [H(136)]
H 0.201 [H(137)]
H 0.202 [H(138)]
H 0.198 [H(139)]
H 0.203 [H(140)]
H 0.203 [H(141)]
H 0.198 [H(142)]
H 0.201 [H(143)]
H 0.200 [H(144)]
H 0.198 [H(145)]
H 0.200 [H(146)]
H 0.200 [H(147)]
MM2 Calculation completed successfully
————MM2 Minimization————
Warning: Some parameters are guessed (Quality = 1).
Iteration 1 Steric Energy 192.868 RMS Gradient 13.197 RMS Move 0.0000
Iteration 2 Steric Energy 158.683 RMS Gradient 5.723 RMS Move 0.0081
Iteration 3 Steric Energy 142.344 RMS Gradient 5.214 RMS Move 0.0100
Iteration 4 Steric Energy 133.668 RMS Gradient 3.074 RMS Move 0.0069
Iteration 5 Steric Energy 129.610 RMS Gradient 2.669 RMS Move 0.0052
Iteration 6 Steric Energy 127.085 RMS Gradient 1.672 RMS Move 0.0036
Iteration 7 Steric Energy 125.475 RMS Gradient 1.176 RMS Move 0.0028
Iteration 8 Steric Energy 124.490 RMS Gradient 1.166 RMS Move 0.0026
Iteration 9 Steric Energy 123.391 RMS Gradient 1.499 RMS Move 0.0059
Iteration 10 Steric Energy 122.771 RMS Gradient 0.970 RMS Move 0.0033
Iteration 11 Steric Energy 121.923 RMS Gradient 1.510 RMS Move 0.0048
Iteration 12 Steric Energy 121.298 RMS Gradient 1.091 RMS Move 0.0023
Iteration 13 Steric Energy 120.346 RMS Gradient 1.656 RMS Move 0.0055
Iteration 14 Steric Energy 119.783 RMS Gradient 1.067 RMS Move 0.0025
Iteration 15 Steric Energy 119.191 RMS Gradient 1.054 RMS Move 0.0033
Iteration 16 Steric Energy 118.791 RMS Gradient 0.849 RMS Move 0.0020
Iteration 17 Steric Energy 118.411 RMS Gradient 0.979 RMS Move 0.0027
Iteration 18 Steric Energy 118.193 RMS Gradient 0.830 RMS Move 0.0016
Iteration 19 Steric Energy 117.846 RMS Gradient 0.704 RMS Move 0.0025
Iteration 20 Steric Energy 117.652 RMS Gradient 0.797 RMS Move 0.0017
Iteration 21 Steric Energy 117.305 RMS Gradient 0.776 RMS Move 0.0034
Iteration 22 Steric Energy 117.075 RMS Gradient 0.683 RMS Move 0.0020
Iteration 23 Steric Energy 116.777 RMS Gradient 0.813 RMS Move 0.0036
Iteration 24 Steric Energy 116.574 RMS Gradient 0.682 RMS Move 0.0023
Iteration 25 Steric Energy 116.213 RMS Gradient 0.781 RMS Move 0.0050
Iteration 26 Steric Energy 115.978 RMS Gradient 0.617 RMS Move 0.0032
Iteration 27 Steric Energy 115.803 RMS Gradient 0.327 RMS Move 0.0017
Iteration 28 Steric Energy 115.685 RMS Gradient 0.453 RMS Move 0.0018
Iteration 29 Steric Energy 115.469 RMS Gradient 0.637 RMS Move 0.0056
Iteration 30 Steric Energy 115.322 RMS Gradient 0.397 RMS Move 0.0035
Iteration 31 Steric Energy 115.239 RMS Gradient 0.438 RMS Move 0.0018
Iteration 32 Steric Energy 115.183 RMS Gradient 0.222 RMS Move 0.0009
Iteration 33 Steric Energy 115.095 RMS Gradient 0.490 RMS Move 0.0031
Iteration 34 Steric Energy 115.037 RMS Gradient 0.314 RMS Move 0.0014
Iteration 35 Steric Energy 114.976 RMS Gradient 0.473 RMS Move 0.0018
Iteration 36 Steric Energy 114.915 RMS Gradient 0.497 RMS Move 0.0021
Iteration 37 Steric Energy 114.856 RMS Gradient 0.378 RMS Move 0.0015
Iteration 38 Steric Energy 114.827 RMS Gradient 0.337 RMS Move 0.0004
Iteration 39 Steric Energy 114.789 RMS Gradient 0.291 RMS Move 0.0006
Iteration 40 Steric Energy 114.766 RMS Gradient 0.245 RMS Move 0.0003
Iteration 41 Steric Energy 114.743 RMS Gradient 0.272 RMS Move 0.0005
Iteration 42 Steric Energy 114.718 RMS Gradient 0.360 RMS Move 0.0008
Iteration 43 Steric Energy 114.669 RMS Gradient 0.431 RMS Move 0.0012
Iteration 44 Steric Energy 114.636 RMS Gradient 0.275 RMS Move 0.0005
Iteration 45 Steric Energy 114.601 RMS Gradient 0.305 RMS Move 0.0007
Iteration 46 Steric Energy 114.576 RMS Gradient 0.261 RMS Move 0.0005
Iteration 47 Steric Energy 114.535 RMS Gradient 0.308 RMS Move 0.0010
Iteration 48 Steric Energy 114.507 RMS Gradient 0.274 RMS Move 0.0007
Iteration 49 Steric Energy 114.425 RMS Gradient 0.268 RMS Move 0.0021
Iteration 50 Steric Energy 114.369 RMS Gradient 0.241 RMS Move 0.0018
Iteration 51 Steric Energy 114.307 RMS Gradient 0.437 RMS Move 0.0039
Iteration 52 Steric Energy 114.263 RMS Gradient 0.305 RMS Move 0.0020
Iteration 53 Steric Energy 114.217 RMS Gradient 0.383 RMS Move 0.0025
Iteration 54 Steric Energy 114.187 RMS Gradient 0.303 RMS Move 0.0009
Iteration 55 Steric Energy 114.140 RMS Gradient 0.266 RMS Move 0.0016
Iteration 56 Steric Energy 114.110 RMS Gradient 0.240 RMS Move 0.0011
Iteration 57 Steric Energy 114.088 RMS Gradient 0.112 RMS Move 0.0006
Iteration 58 Steric Energy 114.075 RMS Gradient 0.207 RMS Move 0.0007
Iteration 59 Steric Energy 114.044 RMS Gradient 0.227 RMS Move 0.0020
Iteration 60 Steric Energy 113.998 RMS Gradient 0.270 RMS Move 0.0042
Iteration 61 Steric Energy 113.964 RMS Gradient 0.222 RMS Move 0.0017
Iteration 62 Steric Energy 113.907 RMS Gradient 0.503 RMS Move 0.0046
Iteration 63 Steric Energy 113.814 RMS Gradient 0.407 RMS Move 0.0078
Iteration 64 Steric Energy 113.752 RMS Gradient 0.308 RMS Move 0.0024
Iteration 65 Steric Energy 113.707 RMS Gradient 0.208 RMS Move 0.0014
Iteration 66 Steric Energy 113.653 RMS Gradient 0.409 RMS Move 0.0036
Iteration 67 Steric Energy 113.616 RMS Gradient 0.254 RMS Move 0.0016
Iteration 68 Steric Energy 113.553 RMS Gradient 0.320 RMS Move 0.0027
Iteration 69 Steric Energy 113.529 RMS Gradient 0.285 RMS Move 0.0013
Iteration 70 Steric Energy 113.504 RMS Gradient 0.324 RMS Move 0.0010
Iteration 71 Steric Energy 113.475 RMS Gradient 0.321 RMS Move 0.0009
Iteration 72 Steric Energy 113.456 RMS Gradient 0.223 RMS Move 0.0003
Iteration 73 Steric Energy 113.441 RMS Gradient 0.124 RMS Move 0.0002
Iteration 74 Steric Energy 113.427 RMS Gradient 0.265 RMS Move 0.0005
Iteration 75 Steric Energy 113.407 RMS Gradient 0.244 RMS Move 0.0008
Iteration 76 Steric Energy 113.374 RMS Gradient 0.319 RMS Move 0.0010
Iteration 77 Steric Energy 113.355 RMS Gradient 0.187 RMS Move 0.0004
Iteration 78 Steric Energy 113.336 RMS Gradient 0.187 RMS Move 0.0005
Iteration 79 Steric Energy 113.328 RMS Gradient 0.190 RMS Move 0.0003
Iteration 80 Steric Energy 113.312 RMS Gradient 0.220 RMS Move 0.0005
Iteration 81 Steric Energy 113.300 RMS Gradient 0.159 RMS Move 0.0002
Iteration 82 Steric Energy 113.291 RMS Gradient 0.090 RMS Move 0.0002
Iteration 83 Steric Energy 113.285 RMS Gradient 0.086 RMS Move 0.0002
Iteration 84 Steric Energy 113.274 RMS Gradient 0.194 RMS Move 0.0007
Iteration 85 Steric Energy 113.246 RMS Gradient 0.217 RMS Move 0.0018
Iteration 86 Steric Energy 113.217 RMS Gradient 0.284 RMS Move 0.0023
Iteration 87 Steric Energy 113.197 RMS Gradient 0.201 RMS Move 0.0010
Iteration 88 Steric Energy 113.170 RMS Gradient 0.251 RMS Move 0.0016
Iteration 89 Steric Energy 113.158 RMS Gradient 0.199 RMS Move 0.0007
Iteration 90 Steric Energy 113.140 RMS Gradient 0.207 RMS Move 0.0008
Iteration 91 Steric Energy 113.131 RMS Gradient 0.165 RMS Move 0.0003
Iteration 92 Steric Energy 113.120 RMS Gradient 0.186 RMS Move 0.0004
Iteration 93 Steric Energy 113.114 RMS Gradient 0.121 RMS Move 0.0002
Iteration 94 Steric Energy 113.109 RMS Gradient 0.107 RMS Move 0.0002
Iteration 95 Steric Energy 113.106 RMS Gradient 0.089 RMS Move 0.0002
Iteration 96 Steric Energy 113.103 RMS Gradient 0.111 RMS Move 0.0002
Iteration 97 Steric Energy 113.099 RMS Gradient 0.079 RMS Move 0.0002
Iteration 98 Steric Energy 113.095 RMS Gradient 0.062 RMS Move 0.0002
Iteration 99 Steric Energy 113.082 RMS Gradient 0.128 RMS Move 0.0008
Iteration 100 Steric Energy 113.055 RMS Gradient 0.251 RMS Move 0.0026
Iteration 101 Steric Energy 113.039 RMS Gradient 0.143 RMS Move 0.0013
Iteration 102 Steric Energy 113.030 RMS Gradient 0.112 RMS Move 0.0006
Iteration 103 Steric Energy 113.024 RMS Gradient 0.098 RMS Move 0.0003
Iteration 104 Steric Energy 113.009 RMS Gradient 0.172 RMS Move 0.0013
Iteration 105 Steric Energy 112.993 RMS Gradient 0.265 RMS Move 0.0020
Iteration 106 Steric Energy 112.957 RMS Gradient 0.255 RMS Move 0.0038
Iteration 107 Steric Energy 112.932 RMS Gradient 0.166 RMS Move 0.0014
Iteration 108 Steric Energy 112.916 RMS Gradient 0.166 RMS Move 0.0009
Iteration 109 Steric Energy 112.888 RMS Gradient 0.219 RMS Move 0.0024
Iteration 110 Steric Energy 112.869 RMS Gradient 0.170 RMS Move 0.0013
Iteration 111 Steric Energy 112.834 RMS Gradient 0.379 RMS Move 0.0034
Iteration 112 Steric Energy 112.783 RMS Gradient 0.319 RMS Move 0.0054
Iteration 113 Steric Energy 112.748 RMS Gradient 0.241 RMS Move 0.0015
Iteration 114 Steric Energy 112.723 RMS Gradient 0.162 RMS Move 0.0007
Iteration 115 Steric Energy 112.677 RMS Gradient 0.359 RMS Move 0.0027
Iteration 116 Steric Energy 112.643 RMS Gradient 0.244 RMS Move 0.0013
Iteration 117 Steric Energy 112.570 RMS Gradient 0.399 RMS Move 0.0041
Iteration 118 Steric Energy 112.537 RMS Gradient 0.287 RMS Move 0.0019
Iteration 119 Steric Energy 112.499 RMS Gradient 0.321 RMS Move 0.0015
Iteration 120 Steric Energy 112.475 RMS Gradient 0.218 RMS Move 0.0006
Iteration 121 Steric Energy 112.458 RMS Gradient 0.134 RMS Move 0.0003
Iteration 122 Steric Energy 112.442 RMS Gradient 0.257 RMS Move 0.0007
Iteration 123 Steric Energy 112.430 RMS Gradient 0.176 RMS Move 0.0003
Iteration 124 Steric Energy 112.413 RMS Gradient 0.142 RMS Move 0.0005
Iteration 125 Steric Energy 112.403 RMS Gradient 0.166 RMS Move 0.0004
Iteration 126 Steric Energy 112.385 RMS Gradient 0.245 RMS Move 0.0009
Iteration 127 Steric Energy 112.363 RMS Gradient 0.248 RMS Move 0.0014
Iteration 128 Steric Energy 112.339 RMS Gradient 0.288 RMS Move 0.0012
Iteration 129 Steric Energy 112.323 RMS Gradient 0.201 RMS Move 0.0004
Iteration 130 Steric Energy 112.307 RMS Gradient 0.218 RMS Move 0.0005
Iteration 131 Steric Energy 112.297 RMS Gradient 0.169 RMS Move 0.0003
Iteration 132 Steric Energy 112.285 RMS Gradient 0.184 RMS Move 0.0004
Iteration 133 Steric Energy 112.276 RMS Gradient 0.141 RMS Move 0.0003
Iteration 134 Steric Energy 112.269 RMS Gradient 0.056 RMS Move 0.0002
Iteration 135 Steric Energy 112.264 RMS Gradient 0.100 RMS Move 0.0002
Iteration 136 Steric Energy 112.252 RMS Gradient 0.127 RMS Move 0.0009
Iteration 137 Steric Energy 112.242 RMS Gradient 0.088 RMS Move 0.0006
Iteration 138 Steric Energy 112.236 RMS Gradient 0.121 RMS Move 0.0005
Iteration 139 Steric Energy 112.221 RMS Gradient 0.167 RMS Move 0.0015
Iteration 140 Steric Energy 112.200 RMS Gradient 0.256 RMS Move 0.0031
Iteration 141 Steric Energy 112.177 RMS Gradient 0.225 RMS Move 0.0035
Iteration 142 Steric Energy 112.148 RMS Gradient 0.261 RMS Move 0.0028
Iteration 143 Steric Energy 112.132 RMS Gradient 0.168 RMS Move 0.0010
Iteration 144 Steric Energy 112.109 RMS Gradient 0.266 RMS Move 0.0015
Iteration 145 Steric Energy 112.093 RMS Gradient 0.172 RMS Move 0.0007
Iteration 146 Steric Energy 112.075 RMS Gradient 0.195 RMS Move 0.0009
Iteration 147 Steric Energy 112.067 RMS Gradient 0.180 RMS Move 0.0004
Iteration 148 Steric Energy 112.055 RMS Gradient 0.170 RMS Move 0.0005
Iteration 149 Steric Energy 112.048 RMS Gradient 0.133 RMS Move 0.0002
Iteration 150 Steric Energy 112.042 RMS Gradient 0.075 RMS Move 0.0002
Iteration 151 Steric Energy 112.038 RMS Gradient 0.064 RMS Move 0.0002
Iteration 152 Steric Energy 112.028 RMS Gradient 0.188 RMS Move 0.0007
Iteration 153 Steric Energy 112.017 RMS Gradient 0.145 RMS Move 0.0010
Iteration 154 Steric Energy 112.010 RMS Gradient 0.097 RMS Move 0.0003
Iteration 155 Steric Energy 112.006 RMS Gradient 0.086 RMS Move 0.0002
Iteration 156 Steric Energy 111.999 RMS Gradient 0.122 RMS Move 0.0005
Iteration 157 Steric Energy 111.992 RMS Gradient 0.171 RMS Move 0.0007
Iteration 158 Steric Energy 111.979 RMS Gradient 0.166 RMS Move 0.0010
Iteration 159 Steric Energy 111.970 RMS Gradient 0.116 RMS Move 0.0004
Iteration 160 Steric Energy 111.964 RMS Gradient 0.105 RMS Move 0.0002
Iteration 161 Steric Energy 111.957 RMS Gradient 0.115 RMS Move 0.0005
Iteration 162 Steric Energy 111.953 RMS Gradient 0.084 RMS Move 0.0003
Iteration 163 Steric Energy 111.947 RMS Gradient 0.115 RMS Move 0.0005
Iteration 164 Steric Energy 111.944 RMS Gradient 0.092 RMS Move 0.0002
Iteration 165 Steric Energy 111.937 RMS Gradient 0.115 RMS Move 0.0005
Iteration 166 Steric Energy 111.934 RMS Gradient 0.087 RMS Move 0.0003
Iteration 167 Steric Energy 111.931 RMS Gradient 0.061 RMS Move 0.0002
Iteration 168 Steric Energy 111.927 RMS Gradient 0.111 RMS Move 0.0004
Iteration 169 Steric Energy 111.922 RMS Gradient 0.129 RMS Move 0.0005
Iteration 170 Steric Energy 111.917 RMS Gradient 0.132 RMS Move 0.0005
Iteration 171 Steric Energy 111.911 RMS Gradient 0.136 RMS Move 0.0005
Iteration 172 Steric Energy 111.907 RMS Gradient 0.105 RMS Move 0.0002
Iteration 173 Steric Energy 111.902 RMS Gradient 0.052 RMS Move 0.0002
Iteration 174 Steric Energy 111.900 RMS Gradient 0.077 RMS Move 0.0002
Iteration 175 Steric Energy 111.898 RMS Gradient 0.056 RMS Move 0.0002
Iteration 176 Steric Energy 111.893 RMS Gradient 0.109 RMS Move 0.0006
Iteration 177 Steric Energy 111.888 RMS Gradient 0.125 RMS Move 0.0008
Iteration 178 Steric Energy 111.879 RMS Gradient 0.168 RMS Move 0.0011
Iteration 179 Steric Energy 111.870 RMS Gradient 0.186 RMS Move 0.0010
Iteration 180 Steric Energy 111.856 RMS Gradient 0.224 RMS Move 0.0012
Iteration 181 Steric Energy 111.839 RMS Gradient 0.236 RMS Move 0.0012
Iteration 182 Steric Energy 111.828 RMS Gradient 0.158 RMS Move 0.0004
Iteration 183 Steric Energy 111.820 RMS Gradient 0.074 RMS Move 0.0002
Iteration 184 Steric Energy 111.816 RMS Gradient 0.117 RMS Move 0.0002
Iteration 185 Steric Energy 111.812 RMS Gradient 0.075 RMS Move 0.0002
Iteration 186 Steric Energy 111.809 RMS Gradient 0.045 RMS Move 0.0002
Iteration 187 Steric Energy 111.806 RMS Gradient 0.053 RMS Move 0.0002
Iteration 188 Steric Energy 111.799 RMS Gradient 0.087 RMS Move 0.0008
Iteration 189 Steric Energy 111.794 RMS Gradient 0.080 RMS Move 0.0005
Iteration 190 Steric Energy 111.790 RMS Gradient 0.122 RMS Move 0.0011
Iteration 191 Steric Energy 111.782 RMS Gradient 0.168 RMS Move 0.0017
Iteration 192 Steric Energy 111.766 RMS Gradient 0.152 RMS Move 0.0031
Iteration 193 Steric Energy 111.756 RMS Gradient 0.146 RMS Move 0.0012
Iteration 194 Steric Energy 111.726 RMS Gradient 0.234 RMS Move 0.0034
Iteration 195 Steric Energy 111.674 RMS Gradient 0.353 RMS Move 0.0090
Iteration 196 Steric Energy 111.637 RMS Gradient 0.241 RMS Move 0.0045
Iteration 197 Steric Energy 111.576 RMS Gradient 0.493 RMS Move 0.0094
Iteration 198 Steric Energy 111.496 RMS Gradient 0.549 RMS Move 0.0126
Iteration 199 Steric Energy 111.390 RMS Gradient 0.575 RMS Move 0.0141
Iteration 200 Steric Energy 111.320 RMS Gradient 0.423 RMS Move 0.0033
Iteration 201 Steric Energy 111.246 RMS Gradient 0.518 RMS Move 0.0040
Iteration 202 Steric Energy 111.155 RMS Gradient 0.537 RMS Move 0.0056
Iteration 203 Steric Energy 111.089 RMS Gradient 0.356 RMS Move 0.0016
Iteration 204 Steric Energy 111.055 RMS Gradient 0.289 RMS Move 0.0007
Iteration 205 Steric Energy 111.014 RMS Gradient 0.262 RMS Move 0.0012
Iteration 206 Steric Energy 110.988 RMS Gradient 0.250 RMS Move 0.0006
Iteration 207 Steric Energy 110.959 RMS Gradient 0.321 RMS Move 0.0009
Iteration 208 Steric Energy 110.913 RMS Gradient 0.324 RMS Move 0.0020
Iteration 209 Steric Energy 110.882 RMS Gradient 0.219 RMS Move 0.0006
Iteration 210 Steric Energy 110.862 RMS Gradient 0.145 RMS Move 0.0004
Iteration 211 Steric Energy 110.849 RMS Gradient 0.100 RMS Move 0.0003
Iteration 212 Steric Energy 110.840 RMS Gradient 0.105 RMS Move 0.0003
Iteration 213 Steric Energy 110.822 RMS Gradient 0.231 RMS Move 0.0011
Iteration 214 Steric Energy 110.810 RMS Gradient 0.148 RMS Move 0.0005
Iteration 215 Steric Energy 110.787 RMS Gradient 0.208 RMS Move 0.0013
Iteration 216 Steric Energy 110.780 RMS Gradient 0.208 RMS Move 0.0005
Iteration 217 Steric Energy 110.764 RMS Gradient 0.201 RMS Move 0.0007
Iteration 218 Steric Energy 110.756 RMS Gradient 0.143 RMS Move 0.0002
Iteration 219 Steric Energy 110.749 RMS Gradient 0.089 RMS Move 0.0002
Iteration 220 Steric Energy 110.744 RMS Gradient 0.090 RMS Move 0.0002
Iteration 221 Steric Energy 110.736 RMS Gradient 0.138 RMS Move 0.0006
Iteration 222 Steric Energy 110.730 RMS Gradient 0.105 RMS Move 0.0003
Iteration 223 Steric Energy 110.719 RMS Gradient 0.169 RMS Move 0.0008
Iteration 224 Steric Energy 110.712 RMS Gradient 0.109 RMS Move 0.0004
Iteration 225 Steric Energy 110.703 RMS Gradient 0.180 RMS Move 0.0006
Iteration 226 Steric Energy 110.692 RMS Gradient 0.183 RMS Move 0.0009
Iteration 227 Steric Energy 110.682 RMS Gradient 0.217 RMS Move 0.0007
Iteration 228 Steric Energy 110.669 RMS Gradient 0.217 RMS Move 0.0007
Iteration 229 Steric Energy 110.660 RMS Gradient 0.148 RMS Move 0.0002
Iteration 230 Steric Energy 110.652 RMS Gradient 0.070 RMS Move 0.0002
Iteration 231 Steric Energy 110.647 RMS Gradient 0.094 RMS Move 0.0002
Iteration 232 Steric Energy 110.642 RMS Gradient 0.130 RMS Move 0.0004
Iteration 233 Steric Energy 110.631 RMS Gradient 0.187 RMS Move 0.0010
Iteration 234 Steric Energy 110.620 RMS Gradient 0.185 RMS Move 0.0010
Iteration 235 Steric Energy 110.601 RMS Gradient 0.263 RMS Move 0.0013
Iteration 236 Steric Energy 110.589 RMS Gradient 0.169 RMS Move 0.0005
Iteration 237 Steric Energy 110.575 RMS Gradient 0.184 RMS Move 0.0007
Iteration 238 Steric Energy 110.567 RMS Gradient 0.145 RMS Move 0.0003
Iteration 239 Steric Energy 110.561 RMS Gradient 0.095 RMS Move 0.0002
Iteration 240 Steric Energy 110.553 RMS Gradient 0.156 RMS Move 0.0004
Iteration 241 Steric Energy 110.548 RMS Gradient 0.118 RMS Move 0.0002
Iteration 242 Steric Energy 110.539 RMS Gradient 0.146 RMS Move 0.0005
Iteration 243 Steric Energy 110.534 RMS Gradient 0.121 RMS Move 0.0003
Iteration 244 Steric Energy 110.528 RMS Gradient 0.144 RMS Move 0.0004
Iteration 245 Steric Energy 110.523 RMS Gradient 0.113 RMS Move 0.0002
Iteration 246 Steric Energy 110.518 RMS Gradient 0.059 RMS Move 0.0002
Iteration 247 Steric Energy 110.514 RMS Gradient 0.061 RMS Move 0.0002
Iteration 248 Steric Energy 110.507 RMS Gradient 0.163 RMS Move 0.0007
Iteration 249 Steric Energy 110.491 RMS Gradient 0.172 RMS Move 0.0019
Iteration 250 Steric Energy 110.481 RMS Gradient 0.104 RMS Move 0.0007
Iteration 251 Steric Energy 110.468 RMS Gradient 0.222 RMS Move 0.0013
Iteration 252 Steric Energy 110.458 RMS Gradient 0.150 RMS Move 0.0005
Iteration 253 Steric Energy 110.445 RMS Gradient 0.201 RMS Move 0.0010
Iteration 254 Steric Energy 110.437 RMS Gradient 0.142 RMS Move 0.0004
Iteration 255 Steric Energy 110.428 RMS Gradient 0.167 RMS Move 0.0005
Iteration 256 Steric Energy 110.419 RMS Gradient 0.172 RMS Move 0.0007
Iteration 257 Steric Energy 110.413 RMS Gradient 0.129 RMS Move 0.0002
Iteration 258 Steric Energy 110.406 RMS Gradient 0.065 RMS Move 0.0002
Iteration 259 Steric Energy 110.403 RMS Gradient 0.078 RMS Move 0.0002
Iteration 260 Steric Energy 110.399 RMS Gradient 0.052 RMS Move 0.0002
Iteration 261 Steric Energy 110.392 RMS Gradient 0.159 RMS Move 0.0008
Iteration 262 Steric Energy 110.387 RMS Gradient 0.092 RMS Move 0.0004
Iteration 263 Steric Energy 110.383 RMS Gradient 0.072 RMS Move 0.0002
Iteration 264 Steric Energy 110.381 RMS Gradient 0.062 RMS Move 0.0002
Iteration 265 Steric Energy 110.376 RMS Gradient 0.078 RMS Move 0.0006
Iteration 266 Steric Energy 110.374 RMS Gradient 0.098 RMS Move 0.0004
Iteration 267 Steric Energy 110.369 RMS Gradient 0.106 RMS Move 0.0007
Iteration 268 Steric Energy 110.364 RMS Gradient 0.169 RMS Move 0.0006
Iteration 269 Steric Energy 110.355 RMS Gradient 0.141 RMS Move 0.0009
Iteration 270 Steric Energy 110.350 RMS Gradient 0.113 RMS Move 0.0003
Iteration 271 Steric Energy 110.343 RMS Gradient 0.156 RMS Move 0.0005
Iteration 272 Steric Energy 110.335 RMS Gradient 0.159 RMS Move 0.0007
Iteration 273 Steric Energy 110.330 RMS Gradient 0.112 RMS Move 0.0002
Iteration 274 Steric Energy 110.327 RMS Gradient 0.112 RMS Move 0.0002
Iteration 275 Steric Energy 110.324 RMS Gradient 0.080 RMS Move 0.0002
Iteration 276 Steric Energy 110.322 RMS Gradient 0.064 RMS Move 0.0001
Iteration 277 Steric Energy 110.320 RMS Gradient 0.059 RMS Move 0.0002
Iteration 278 Steric Energy 110.318 RMS Gradient 0.076 RMS Move 0.0002
Iteration 279 Steric Energy 110.316 RMS Gradient 0.058 RMS Move 0.0002
Iteration 280 Steric Energy 110.314 RMS Gradient 0.045 RMS Move 0.0002
Iteration 281 Steric Energy 110.308 RMS Gradient 0.128 RMS Move 0.0008
Iteration 282 Steric Energy 110.303 RMS Gradient 0.125 RMS Move 0.0011
Iteration 283 Steric Energy 110.297 RMS Gradient 0.117 RMS Move 0.0010
Iteration 284 Steric Energy 110.293 RMS Gradient 0.096 RMS Move 0.0003
Iteration 285 Steric Energy 110.289 RMS Gradient 0.125 RMS Move 0.0004
Iteration 286 Steric Energy 110.283 RMS Gradient 0.135 RMS Move 0.0007
Iteration 287 Steric Energy 110.277 RMS Gradient 0.144 RMS Move 0.0006
Iteration 288 Steric Energy 110.271 RMS Gradient 0.186 RMS Move 0.0005
Iteration 289 Steric Energy 110.260 RMS Gradient 0.195 RMS Move 0.0006
Iteration 290 Steric Energy 110.252 RMS Gradient 0.135 RMS Move 0.0002
Iteration 291 Steric Energy 110.246 RMS Gradient 0.072 RMS Move 0.0002
Iteration 292 Steric Energy 110.243 RMS Gradient 0.072 RMS Move 0.0002
Iteration 293 Steric Energy 110.239 RMS Gradient 0.115 RMS Move 0.0004
Iteration 294 Steric Energy 110.234 RMS Gradient 0.112 RMS Move 0.0006
Iteration 295 Steric Energy 110.230 RMS Gradient 0.078 RMS Move 0.0002
Iteration 296 Steric Energy 110.227 RMS Gradient 0.070 RMS Move 0.0002
Iteration 297 Steric Energy 110.223 RMS Gradient 0.113 RMS Move 0.0004
Iteration 298 Steric Energy 110.219 RMS Gradient 0.088 RMS Move 0.0006
Iteration 299 Steric Energy 110.215 RMS Gradient 0.065 RMS Move 0.0002
Iteration 300 Steric Energy 110.213 RMS Gradient 0.101 RMS Move 0.0002
Iteration 301 Steric Energy 110.210 RMS Gradient 0.069 RMS Move 0.0002
Iteration 302 Steric Energy 110.209 RMS Gradient 0.084 RMS Move 0.0002
Iteration 303 Steric Energy 110.207 RMS Gradient 0.095 RMS Move 0.0002
Iteration 304 Steric Energy 110.204 RMS Gradient 0.066 RMS Move 0.0002
Iteration 305 Steric Energy 110.202 RMS Gradient 0.058 RMS Move 0.0002
Iteration 306 Steric Energy 110.197 RMS Gradient 0.123 RMS Move 0.0008
Iteration 307 Steric Energy 110.187 RMS Gradient 0.176 RMS Move 0.0016
Iteration 308 Steric Energy 110.177 RMS Gradient 0.181 RMS Move 0.0018
Iteration 309 Steric Energy 110.165 RMS Gradient 0.198 RMS Move 0.0016
Iteration 310 Steric Energy 110.157 RMS Gradient 0.146 RMS Move 0.0005
Iteration 311 Steric Energy 110.148 RMS Gradient 0.160 RMS Move 0.0007
Iteration 312 Steric Energy 110.142 RMS Gradient 0.127 RMS Move 0.0003
Iteration 313 Steric Energy 110.133 RMS Gradient 0.165 RMS Move 0.0006
Iteration 314 Steric Energy 110.122 RMS Gradient 0.244 RMS Move 0.0010
Iteration 315 Steric Energy 110.096 RMS Gradient 0.248 RMS Move 0.0018
Iteration 316 Steric Energy 110.081 RMS Gradient 0.179 RMS Move 0.0006
Iteration 317 Steric Energy 110.067 RMS Gradient 0.151 RMS Move 0.0008
Iteration 318 Steric Energy 110.057 RMS Gradient 0.139 RMS Move 0.0005
Iteration 319 Steric Energy 110.049 RMS Gradient 0.074 RMS Move 0.0003
Iteration 320 Steric Energy 110.045 RMS Gradient 0.062 RMS Move 0.0003
Iteration 321 Steric Energy 110.041 RMS Gradient 0.049 RMS Move 0.0003
Iteration 322 Steric Energy 110.036 RMS Gradient 0.125 RMS Move 0.0009
Iteration 323 Steric Energy 110.032 RMS Gradient 0.083 RMS Move 0.0004
Iteration 324 Steric Energy 110.024 RMS Gradient 0.173 RMS Move 0.0013
Iteration 325 Steric Energy 110.012 RMS Gradient 0.237 RMS Move 0.0019
Iteration 326 Steric Energy 109.987 RMS Gradient 0.252 RMS Move 0.0033
Iteration 327 Steric Energy 109.962 RMS Gradient 0.368 RMS Move 0.0032
Iteration 328 Steric Energy 109.934 RMS Gradient 0.312 RMS Move 0.0030
Iteration 329 Steric Energy 109.905 RMS Gradient 0.407 RMS Move 0.0019
Iteration 330 Steric Energy 109.883 RMS Gradient 0.269 RMS Move 0.0006
Iteration 331 Steric Energy 109.867 RMS Gradient 0.143 RMS Move 0.0002
Iteration 332 Steric Energy 109.858 RMS Gradient 0.138 RMS Move 0.0002
Iteration 333 Steric Energy 109.840 RMS Gradient 0.194 RMS Move 0.0007
Iteration 334 Steric Energy 109.831 RMS Gradient 0.125 RMS Move 0.0004
Iteration 335 Steric Energy 109.825 RMS Gradient 0.093 RMS Move 0.0002
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Iteration 698 Steric Energy 108.029 RMS Gradient 0.022 RMS Move 0.0001
Iteration 699 Steric Energy 108.029 RMS Gradient 0.027 RMS Move 0.0001
Iteration 700 Steric Energy 108.029 RMS Gradient 0.026 RMS Move 0.0001
Iteration 701 Steric Energy 108.028 RMS Gradient 0.023 RMS Move 0.0001
Iteration 702 Steric Energy 108.028 RMS Gradient 0.030 RMS Move 0.0001
Iteration 703 Steric Energy 108.028 RMS Gradient 0.029 RMS Move 0.0002
Iteration 704 Steric Energy 108.027 RMS Gradient 0.029 RMS Move 0.0002
Iteration 705 Steric Energy 108.026 RMS Gradient 0.056 RMS Move 0.0006
Iteration 706 Steric Energy 108.024 RMS Gradient 0.075 RMS Move 0.0010
Iteration 707 Steric Energy 108.021 RMS Gradient 0.093 RMS Move 0.0016
Iteration 708 Steric Energy 108.017 RMS Gradient 0.103 RMS Move 0.0021
Iteration 709 Steric Energy 108.014 RMS Gradient 0.076 RMS Move 0.0007
Iteration 710 Steric Energy 108.010 RMS Gradient 0.100 RMS Move 0.0013
Iteration 711 Steric Energy 108.008 RMS Gradient 0.067 RMS Move 0.0006
Iteration 712 Steric Energy 108.006 RMS Gradient 0.039 RMS Move 0.0002
Iteration 713 Steric Energy 108.004 RMS Gradient 0.084 RMS Move 0.0006
Iteration 714 Steric Energy 108.003 RMS Gradient 0.051 RMS Move 0.0003
Iteration 715 Steric Energy 108.002 RMS Gradient 0.042 RMS Move 0.0002
Iteration 716 Steric Energy 108.002 RMS Gradient 0.035 RMS Move 0.0000
Iteration 717 Steric Energy 108.001 RMS Gradient 0.033 RMS Move 0.0001
Iteration 718 Steric Energy 108.001 RMS Gradient 0.033 RMS Move 0.0001
Iteration 719 Steric Energy 108.000 RMS Gradient 0.040 RMS Move 0.0001
Iteration 720 Steric Energy 107.999 RMS Gradient 0.037 RMS Move 0.0002
Iteration 721 Steric Energy 107.998 RMS Gradient 0.027 RMS Move 0.0002
Iteration 722 Steric Energy 107.996 RMS Gradient 0.085 RMS Move 0.0006
Iteration 723 Steric Energy 107.993 RMS Gradient 0.074 RMS Move 0.0009
Iteration 724 Steric Energy 107.992 RMS Gradient 0.047 RMS Move 0.0003
Iteration 725 Steric Energy 107.991 RMS Gradient 0.055 RMS Move 0.0002
Iteration 726 Steric Energy 107.990 RMS Gradient 0.037 RMS Move 0.0002
Iteration 727 Steric Energy 107.989 RMS Gradient 0.065 RMS Move 0.0002
Iteration 728 Steric Energy 107.988 RMS Gradient 0.051 RMS Move 0.0002
Iteration 729 Steric Energy 107.988 RMS Gradient 0.037 RMS Move 0.0001
Iteration 730 Steric Energy 107.987 RMS Gradient 0.024 RMS Move 0.0000
Iteration 731 Steric Energy 107.987 RMS Gradient 0.022 RMS Move 0.0000
Iteration 732 Steric Energy 107.987 RMS Gradient 0.031 RMS Move 0.0001
Iteration 733 Steric Energy 107.986 RMS Gradient 0.041 RMS Move 0.0002
Iteration 734 Steric Energy 107.986 RMS Gradient 0.032 RMS Move 0.0001
Iteration 735 Steric Energy 107.986 RMS Gradient 0.024 RMS Move 0.0000
Iteration 736 Steric Energy 107.986 RMS Gradient 0.021 RMS Move 0.0000
Iteration 737 Steric Energy 107.985 RMS Gradient 0.024 RMS Move 0.0001
Iteration 738 Steric Energy 107.985 RMS Gradient 0.021 RMS Move 0.0001
Iteration 739 Steric Energy 107.985 RMS Gradient 0.016 RMS Move 0.0000
Iteration 740 Steric Energy 107.985 RMS Gradient 0.021 RMS Move 0.0000
Iteration 741 Steric Energy 107.985 RMS Gradient 0.037 RMS Move 0.0002
Iteration 742 Steric Energy 107.984 RMS Gradient 0.036 RMS Move 0.0002
Iteration 743 Steric Energy 107.984 RMS Gradient 0.034 RMS Move 0.0001
Iteration 744 Steric Energy 107.984 RMS Gradient 0.025 RMS Move 0.0001
Iteration 745 Steric Energy 107.983 RMS Gradient 0.027 RMS Move 0.0001
Iteration 746 Steric Energy 107.983 RMS Gradient 0.020 RMS Move 0.0001
Iteration 747 Steric Energy 107.983 RMS Gradient 0.017 RMS Move 0.0000
Iteration 748 Steric Energy 107.983 RMS Gradient 0.022 RMS Move 0.0001
Iteration 749 Steric Energy 107.982 RMS Gradient 0.041 RMS Move 0.0002
Iteration 750 Steric Energy 107.982 RMS Gradient 0.028 RMS Move 0.0002
Iteration 751 Steric Energy 107.981 RMS Gradient 0.034 RMS Move 0.0002
Iteration 752 Steric Energy 107.981 RMS Gradient 0.052 RMS Move 0.0004
Iteration 753 Steric Energy 107.980 RMS Gradient 0.039 RMS Move 0.0002
Iteration 754 Steric Energy 107.980 RMS Gradient 0.028 RMS Move 0.0002
Iteration 755 Steric Energy 107.979 RMS Gradient 0.052 RMS Move 0.0004
Iteration 756 Steric Energy 107.978 RMS Gradient 0.063 RMS Move 0.0007
Iteration 757 Steric Energy 107.975 RMS Gradient 0.080 RMS Move 0.0011
Iteration 758 Steric Energy 107.973 RMS Gradient 0.099 RMS Move 0.0012
Iteration 759 Steric Energy 107.971 RMS Gradient 0.065 RMS Move 0.0004
Iteration 760 Steric Energy 107.969 RMS Gradient 0.042 RMS Move 0.0002
Iteration 761 Steric Energy 107.968 RMS Gradient 0.039 RMS Move 0.0002
Iteration 762 Steric Energy 107.968 RMS Gradient 0.027 RMS Move 0.0002
Iteration 763 Steric Energy 107.967 RMS Gradient 0.034 RMS Move 0.0002
Iteration 764 Steric Energy 107.966 RMS Gradient 0.047 RMS Move 0.0005
Iteration 765 Steric Energy 107.965 RMS Gradient 0.034 RMS Move 0.0003
Iteration 766 Steric Energy 107.964 RMS Gradient 0.060 RMS Move 0.0005
Iteration 767 Steric Energy 107.963 RMS Gradient 0.045 RMS Move 0.0002
Iteration 768 Steric Energy 107.960 RMS Gradient 0.064 RMS Move 0.0008
Iteration 769 Steric Energy 107.959 RMS Gradient 0.057 RMS Move 0.0004
Iteration 770 Steric Energy 107.957 RMS Gradient 0.049 RMS Move 0.0007
Iteration 771 Steric Energy 107.956 RMS Gradient 0.051 RMS Move 0.0003
Iteration 772 Steric Energy 107.956 RMS Gradient 0.031 RMS Move 0.0002
Iteration 773 Steric Energy 107.955 RMS Gradient 0.035 RMS Move 0.0001
Iteration 774 Steric Energy 107.954 RMS Gradient 0.031 RMS Move 0.0002
Iteration 775 Steric Energy 107.954 RMS Gradient 0.039 RMS Move 0.0002
Iteration 776 Steric Energy 107.953 RMS Gradient 0.024 RMS Move 0.0002
Iteration 777 Steric Energy 107.952 RMS Gradient 0.030 RMS Move 0.0002
Iteration 778 Steric Energy 107.952 RMS Gradient 0.027 RMS Move 0.0002
Iteration 779 Steric Energy 107.951 RMS Gradient 0.054 RMS Move 0.0005
Iteration 780 Steric Energy 107.950 RMS Gradient 0.035 RMS Move 0.0003
Iteration 781 Steric Energy 107.950 RMS Gradient 0.038 RMS Move 0.0002
Iteration 782 Steric Energy 107.949 RMS Gradient 0.038 RMS Move 0.0002
Iteration 783 Steric Energy 107.948 RMS Gradient 0.025 RMS Move 0.0002
Iteration 784 Steric Energy 107.948 RMS Gradient 0.037 RMS Move 0.0002
Iteration 785 Steric Energy 107.947 RMS Gradient 0.032 RMS Move 0.0004
Iteration 786 Steric Energy 107.947 RMS Gradient 0.040 RMS Move 0.0002
Iteration 787 Steric Energy 107.946 RMS Gradient 0.033 RMS Move 0.0001
Iteration 788 Steric Energy 107.946 RMS Gradient 0.031 RMS Move 0.0001
Iteration 789 Steric Energy 107.945 RMS Gradient 0.043 RMS Move 0.0002
Iteration 790 Steric Energy 107.945 RMS Gradient 0.043 RMS Move 0.0002
Iteration 791 Steric Energy 107.945 RMS Gradient 0.041 RMS Move 0.0001
Iteration 792 Steric Energy 107.944 RMS Gradient 0.018 RMS Move 0.0000
Iteration 793 Steric Energy 107.944 RMS Gradient 0.022 RMS Move 0.0000
Iteration 794 Steric Energy 107.944 RMS Gradient 0.019 RMS Move 0.0001
Iteration 795 Steric Energy 107.944 RMS Gradient 0.019 RMS Move 0.0000
Iteration 796 Steric Energy 107.944 RMS Gradient 0.018 RMS Move 0.0001
Iteration 797 Steric Energy 107.943 RMS Gradient 0.016 RMS Move 0.0000
Iteration 798 Steric Energy 107.943 RMS Gradient 0.019 RMS Move 0.0001
Iteration 799 Steric Energy 107.943 RMS Gradient 0.020 RMS Move 0.0001
Iteration 800 Steric Energy 107.943 RMS Gradient 0.033 RMS Move 0.0002
Iteration 801 Steric Energy 107.943 RMS Gradient 0.027 RMS Move 0.0001
Iteration 802 Steric Energy 107.942 RMS Gradient 0.023 RMS Move 0.0001
Iteration 803 Steric Energy 107.942 RMS Gradient 0.018 RMS Move 0.0000
Iteration 804 Steric Energy 107.942 RMS Gradient 0.018 RMS Move 0.0000
Iteration 805 Steric Energy 107.942 RMS Gradient 0.016 RMS Move 0.0000
Iteration 806 Steric Energy 107.942 RMS Gradient 0.017 RMS Move 0.0000
Iteration 807 Steric Energy 107.942 RMS Gradient 0.022 RMS Move 0.0001
Iteration 808 Steric Energy 107.942 RMS Gradient 0.039 RMS Move 0.0002
Iteration 809 Steric Energy 107.941 RMS Gradient 0.037 RMS Move 0.0002
Iteration 810 Steric Energy 107.941 RMS Gradient 0.033 RMS Move 0.0002
Iteration 811 Steric Energy 107.941 RMS Gradient 0.027 RMS Move 0.0001
Iteration 812 Steric Energy 107.940 RMS Gradient 0.022 RMS Move 0.0000
Iteration 813 Steric Energy 107.940 RMS Gradient 0.020 RMS Move 0.0000
Iteration 814 Steric Energy 107.940 RMS Gradient 0.027 RMS Move 0.0001
Iteration 815 Steric Energy 107.940 RMS Gradient 0.023 RMS Move 0.0001
Iteration 816 Steric Energy 107.939 RMS Gradient 0.022 RMS Move 0.0001
Iteration 817 Steric Energy 107.939 RMS Gradient 0.019 RMS Move 0.0001
Iteration 818 Steric Energy 107.939 RMS Gradient 0.019 RMS Move 0.0001
Iteration 819 Steric Energy 107.939 RMS Gradient 0.017 RMS Move 0.0001
Iteration 820 Steric Energy 107.939 RMS Gradient 0.021 RMS Move 0.0001
Iteration 821 Steric Energy 107.939 RMS Gradient 0.019 RMS Move 0.0001
Iteration 822 Steric Energy 107.938 RMS Gradient 0.025 RMS Move 0.0001
Iteration 823 Steric Energy 107.938 RMS Gradient 0.028 RMS Move 0.0002
Iteration 824 Steric Energy 107.937 RMS Gradient 0.056 RMS Move 0.0005
Iteration 825 Steric Energy 107.936 RMS Gradient 0.061 RMS Move 0.0010
Iteration 826 Steric Energy 107.935 RMS Gradient 0.080 RMS Move 0.0008
Iteration 827 Steric Energy 107.933 RMS Gradient 0.082 RMS Move 0.0009
Iteration 828 Steric Energy 107.931 RMS Gradient 0.088 RMS Move 0.0007
Iteration 829 Steric Energy 107.930 RMS Gradient 0.063 RMS Move 0.0002
Iteration 830 Steric Energy 107.929 RMS Gradient 0.040 RMS Move 0.0002
Iteration 831 Steric Energy 107.928 RMS Gradient 0.060 RMS Move 0.0002
Iteration 832 Steric Energy 107.927 RMS Gradient 0.054 RMS Move 0.0002
Iteration 833 Steric Energy 107.927 RMS Gradient 0.034 RMS Move 0.0001
Iteration 834 Steric Energy 107.926 RMS Gradient 0.027 RMS Move 0.0001
Iteration 835 Steric Energy 107.926 RMS Gradient 0.019 RMS Move 0.0000
Iteration 836 Steric Energy 107.926 RMS Gradient 0.018 RMS Move 0.0000
Iteration 837 Steric Energy 107.926 RMS Gradient 0.021 RMS Move 0.0000
Iteration 838 Steric Energy 107.926 RMS Gradient 0.018 RMS Move 0.0001
Iteration 839 Steric Energy 107.926 RMS Gradient 0.014 RMS Move 0.0000
Iteration 840 Steric Energy 107.925 RMS Gradient 0.015 RMS Move 0.0000
Iteration 841 Steric Energy 107.925 RMS Gradient 0.017 RMS Move 0.0001
Iteration 842 Steric Energy 107.925 RMS Gradient 0.015 RMS Move 0.0001
Iteration 843 Steric Energy 107.925 RMS Gradient 0.017 RMS Move 0.0001
Iteration 844 Steric Energy 107.925 RMS Gradient 0.019 RMS Move 0.0001
Iteration 845 Steric Energy 107.925 RMS Gradient 0.020 RMS Move 0.0001
Iteration 846 Steric Energy 107.925 RMS Gradient 0.030 RMS Move 0.0002
Iteration 847 Steric Energy 107.924 RMS Gradient 0.026 RMS Move 0.0002
Iteration 848 Steric Energy 107.924 RMS Gradient 0.019 RMS Move 0.0001
Iteration 849 Steric Energy 107.924 RMS Gradient 0.022 RMS Move 0.0001
Iteration 850 Steric Energy 107.924 RMS Gradient 0.029 RMS Move 0.0002
Iteration 851 Steric Energy 107.923 RMS Gradient 0.031 RMS Move 0.0002
Iteration 852 Steric Energy 107.923 RMS Gradient 0.043 RMS Move 0.0004
Iteration 853 Steric Energy 107.922 RMS Gradient 0.033 RMS Move 0.0003
Iteration 854 Steric Energy 107.922 RMS Gradient 0.051 RMS Move 0.0005
Iteration 855 Steric Energy 107.921 RMS Gradient 0.056 RMS Move 0.0006
Iteration 856 Steric Energy 107.920 RMS Gradient 0.066 RMS Move 0.0005
Iteration 857 Steric Energy 107.919 RMS Gradient 0.064 RMS Move 0.0005
Iteration 858 Steric Energy 107.918 RMS Gradient 0.041 RMS Move 0.0002
Iteration 859 Steric Energy 107.918 RMS Gradient 0.027 RMS Move 0.0001
Iteration 860 Steric Energy 107.917 RMS Gradient 0.026 RMS Move 0.0001
Iteration 861 Steric Energy 107.917 RMS Gradient 0.034 RMS Move 0.0001
Iteration 862 Steric Energy 107.916 RMS Gradient 0.031 RMS Move 0.0002
Iteration 863 Steric Energy 107.916 RMS Gradient 0.037 RMS Move 0.0002
Iteration 864 Steric Energy 107.916 RMS Gradient 0.031 RMS Move 0.0002
Iteration 865 Steric Energy 107.915 RMS Gradient 0.022 RMS Move 0.0001
Iteration 866 Steric Energy 107.915 RMS Gradient 0.015 RMS Move 0.0000
Iteration 867 Steric Energy 107.915 RMS Gradient 0.018 RMS Move 0.0000
Iteration 868 Steric Energy 107.915 RMS Gradient 0.022 RMS Move 0.0001
Iteration 869 Steric Energy 107.915 RMS Gradient 0.020 RMS Move 0.0001
Iteration 870 Steric Energy 107.914 RMS Gradient 0.018 RMS Move 0.0001
Iteration 871 Steric Energy 107.914 RMS Gradient 0.019 RMS Move 0.0001
Iteration 872 Steric Energy 107.914 RMS Gradient 0.017 RMS Move 0.0001
Iteration 873 Steric Energy 107.914 RMS Gradient 0.018 RMS Move 0.0001
Iteration 874 Steric Energy 107.914 RMS Gradient 0.017 RMS Move 0.0001
Iteration 875 Steric Energy 107.914 RMS Gradient 0.019 RMS Move 0.0001
Iteration 876 Steric Energy 107.913 RMS Gradient 0.030 RMS Move 0.0002
Iteration 877 Steric Energy 107.913 RMS Gradient 0.030 RMS Move 0.0002
Iteration 878 Steric Energy 107.913 RMS Gradient 0.023 RMS Move 0.0001
Iteration 879 Steric Energy 107.913 RMS Gradient 0.018 RMS Move 0.0000
Iteration 880 Steric Energy 107.913 RMS Gradient 0.018 RMS Move 0.0000
Iteration 881 Steric Energy 107.913 RMS Gradient 0.016 RMS Move 0.0000
Iteration 882 Steric Energy 107.913 RMS Gradient 0.013 RMS Move 0.0000
Iteration 883 Steric Energy 107.912 RMS Gradient 0.013 RMS Move 0.0000
Iteration 884 Steric Energy 107.912 RMS Gradient 0.015 RMS Move 0.0000
Iteration 885 Steric Energy 107.912 RMS Gradient 0.014 RMS Move 0.0001
Iteration 886 Steric Energy 107.912 RMS Gradient 0.015 RMS Move 0.0000
Iteration 887 Steric Energy 107.912 RMS Gradient 0.017 RMS Move 0.0001
Iteration 888 Steric Energy 107.912 RMS Gradient 0.019 RMS Move 0.0001
Iteration 889 Steric Energy 107.912 RMS Gradient 0.025 RMS Move 0.0002
Iteration 890 Steric Energy 107.912 RMS Gradient 0.019 RMS Move 0.0001
Iteration 891 Steric Energy 107.911 RMS Gradient 0.017 RMS Move 0.0001
Iteration 892 Steric Energy 107.911 RMS Gradient 0.023 RMS Move 0.0001
Iteration 893 Steric Energy 107.911 RMS Gradient 0.026 RMS Move 0.0002
Iteration 894 Steric Energy 107.911 RMS Gradient 0.019 RMS Move 0.0002
Iteration 895 Steric Energy 107.910 RMS Gradient 0.019 RMS Move 0.0002
Iteration 896 Steric Energy 107.910 RMS Gradient 0.043 RMS Move 0.0005
Iteration 897 Steric Energy 107.909 RMS Gradient 0.033 RMS Move 0.0006
Iteration 898 Steric Energy 107.909 RMS Gradient 0.026 RMS Move 0.0002
Iteration 899 Steric Energy 107.908 RMS Gradient 0.023 RMS Move 0.0002
Iteration 900 Steric Energy 107.908 RMS Gradient 0.047 RMS Move 0.0004
Iteration 901 Steric Energy 107.907 RMS Gradient 0.039 RMS Move 0.0005
Iteration 902 Steric Energy 107.907 RMS Gradient 0.030 RMS Move 0.0002
Iteration 903 Steric Energy 107.906 RMS Gradient 0.036 RMS Move 0.0002
Iteration 904 Steric Energy 107.905 RMS Gradient 0.042 RMS Move 0.0004
Iteration 905 Steric Energy 107.905 RMS Gradient 0.032 RMS Move 0.0002
Iteration 906 Steric Energy 107.904 RMS Gradient 0.037 RMS Move 0.0002
Iteration 907 Steric Energy 107.904 RMS Gradient 0.028 RMS Move 0.0002
Iteration 908 Steric Energy 107.904 RMS Gradient 0.025 RMS Move 0.0000
Iteration 909 Steric Energy 107.903 RMS Gradient 0.021 RMS Move 0.0000
Iteration 910 Steric Energy 107.903 RMS Gradient 0.014 RMS Move 0.0000
Iteration 911 Steric Energy 107.903 RMS Gradient 0.014 RMS Move 0.0000
Iteration 912 Steric Energy 107.903 RMS Gradient 0.014 RMS Move 0.0000
Iteration 913 Steric Energy 107.903 RMS Gradient 0.011 RMS Move 0.0000
Iteration 914 Steric Energy 107.903 RMS Gradient 0.014 RMS Move 0.0000
Iteration 915 Steric Energy 107.903 RMS Gradient 0.017 RMS Move 0.0001
Iteration 916 Steric Energy 107.903 RMS Gradient 0.017 RMS Move 0.0001
Iteration 917 Steric Energy 107.903 RMS Gradient 0.020 RMS Move 0.0001
Iteration 918 Steric Energy 107.902 RMS Gradient 0.027 RMS Move 0.0002
Iteration 919 Steric Energy 107.902 RMS Gradient 0.022 RMS Move 0.0002
Iteration 920 Steric Energy 107.902 RMS Gradient 0.016 RMS Move 0.0001
Iteration 921 Steric Energy 107.902 RMS Gradient 0.016 RMS Move 0.0001
Iteration 922 Steric Energy 107.902 RMS Gradient 0.019 RMS Move 0.0001
Iteration 923 Steric Energy 107.902 RMS Gradient 0.031 RMS Move 0.0002
Iteration 924 Steric Energy 107.901 RMS Gradient 0.030 RMS Move 0.0002
Iteration 925 Steric Energy 107.901 RMS Gradient 0.021 RMS Move 0.0000
Iteration 926 Steric Energy 107.901 RMS Gradient 0.014 RMS Move 0.0000
Iteration 927 Steric Energy 107.901 RMS Gradient 0.013 RMS Move 0.0000
Iteration 928 Steric Energy 107.901 RMS Gradient 0.011 RMS Move 0.0000
Iteration 929 Steric Energy 107.901 RMS Gradient 0.012 RMS Move 0.0000
Iteration 930 Steric Energy 107.901 RMS Gradient 0.012 RMS Move 0.0000
Iteration 931 Steric Energy 107.901 RMS Gradient 0.013 RMS Move 0.0000
Iteration 932 Steric Energy 107.901 RMS Gradient 0.013 RMS Move 0.0000
Iteration 933 Steric Energy 107.901 RMS Gradient 0.017 RMS Move 0.0001
Iteration 934 Steric Energy 107.900 RMS Gradient 0.024 RMS Move 0.0002
Iteration 935 Steric Energy 107.900 RMS Gradient 0.024 RMS Move 0.0002
Iteration 936 Steric Energy 107.900 RMS Gradient 0.021 RMS Move 0.0001
Iteration 937 Steric Energy 107.900 RMS Gradient 0.018 RMS Move 0.0001
Iteration 938 Steric Energy 107.900 RMS Gradient 0.018 RMS Move 0.0001
Iteration 939 Steric Energy 107.900 RMS Gradient 0.020 RMS Move 0.0001
Iteration 940 Steric Energy 107.900 RMS Gradient 0.017 RMS Move 0.0001
Iteration 941 Steric Energy 107.899 RMS Gradient 0.015 RMS Move 0.0001
Iteration 942 Steric Energy 107.899 RMS Gradient 0.016 RMS Move 0.0001
Iteration 943 Steric Energy 107.899 RMS Gradient 0.014 RMS Move 0.0001
Iteration 944 Steric Energy 107.899 RMS Gradient 0.014 RMS Move 0.0001
Iteration 945 Steric Energy 107.899 RMS Gradient 0.016 RMS Move 0.0001
Iteration 946 Steric Energy 107.899 RMS Gradient 0.019 RMS Move 0.0001
Iteration 947 Steric Energy 107.899 RMS Gradient 0.031 RMS Move 0.0002
Iteration 948 Steric Energy 107.899 RMS Gradient 0.032 RMS Move 0.0002
Iteration 949 Steric Energy 107.898 RMS Gradient 0.023 RMS Move 0.0001
Iteration 950 Steric Energy 107.898 RMS Gradient 0.022 RMS Move 0.0001
Iteration 951 Steric Energy 107.898 RMS Gradient 0.024 RMS Move 0.0001
Iteration 952 Steric Energy 107.898 RMS Gradient 0.019 RMS Move 0.0001
Iteration 953 Steric Energy 107.898 RMS Gradient 0.018 RMS Move 0.0001
Iteration 954 Steric Energy 107.898 RMS Gradient 0.019 RMS Move 0.0001
Iteration 955 Steric Energy 107.897 RMS Gradient 0.019 RMS Move 0.0001
Iteration 956 Steric Energy 107.897 RMS Gradient 0.021 RMS Move 0.0001
Iteration 957 Steric Energy 107.897 RMS Gradient 0.033 RMS Move 0.0002
Iteration 958 Steric Energy 107.897 RMS Gradient 0.028 RMS Move 0.0002
Iteration 959 Steric Energy 107.897 RMS Gradient 0.015 RMS Move 0.0001
Iteration 960 Steric Energy 107.896 RMS Gradient 0.018 RMS Move 0.0001
Iteration 961 Steric Energy 107.896 RMS Gradient 0.021 RMS Move 0.0001
Iteration 962 Steric Energy 107.896 RMS Gradient 0.030 RMS Move 0.0002
Iteration 963 Steric Energy 107.896 RMS Gradient 0.027 RMS Move 0.0002
Iteration 964 Steric Energy 107.896 RMS Gradient 0.020 RMS Move 0.0001
Iteration 965 Steric Energy 107.895 RMS Gradient 0.023 RMS Move 0.0001
Iteration 966 Steric Energy 107.895 RMS Gradient 0.032 RMS Move 0.0002
Iteration 967 Steric Energy 107.895 RMS Gradient 0.028 RMS Move 0.0001
Iteration 968 Steric Energy 107.895 RMS Gradient 0.019 RMS Move 0.0000
Iteration 969 Steric Energy 107.895 RMS Gradient 0.016 RMS Move 0.0000
Iteration 970 Steric Energy 107.895 RMS Gradient 0.012 RMS Move 0.0000
Iteration 971 Steric Energy 107.895 RMS Gradient 0.010 RMS Move 0.0000
Iteration 971: Minimization terminated normally because the gradient norm is less than the minimum gradient norm
Stretch: 8.6708
Bend: 54.2760
Stretch-Bend: 5.0109
Torsion: 29.6879
Non-1,4 VDW: -53.4029
1,4 VDW: 90.6963
Dipole/Dipole: -27.0443
Total Energy: 107.8947 kcal/mol
Calculation ended
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