Department of geology northwest university

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≪ span style = & quot; font family: & quot; & quot; & gt; & lt; strong & gt; office: & lt; / strong & gt; Geology Department South Second Floor 208 & lt; br / & gt;

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≪ span style = & quot; font family: & quot; & quot; & gt; Ji Wenbin & lt; / span & gt; & lt; span style = & quot; font family: & quot; & gt;, male, born in December 1986. Main research interests: through field indoor multi-scale structural analysis and geochronology, combined with magnetic fabric and gravity simulation, study the evolution of orogenic belt and continental structure, especially the emplacement of granite & lt; span style = & quot; font family: & quot; & quot; & gt; - exhumation & lt; / span & gt; process and the formation and emplacement of ophiolite. The field investigation and research area involves the late Mesozoic extensional structural development area in the east of China, Qinling Dabie Sulu orogenic belt, South China Jiuling Xuefeng mountain orogenic belt and Changle Nan'ao structural belt, Tibet Yarlung Zangbo Suture belt and Himalayan orogenic belt, European Alps, central plateau of France, Aegean Sea of Greece, southwest Pacific New Caledonia of France, etc. </span>

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≪ span style = & quot; font family: & quot; & quot; & gt; & nbsp; & nbsp; nbsp; & nbsp; January 2019 - present: Associate Professor, Department of geology, Northwestern University & lt; / span & gt;

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≪ span style = & quot; font family: & amp; quot; & gt; & lt; span style = & quot; font family: & quot; & gt; & nbsp; nbsp; & nbsp; September 2014 – December 2018: Institute of Geology and Geophysics, Chinese Academy of Sciences, postdoctoral & lt; / span & gt;

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<span style="font-family:&quot;"><span style="font-family:&quot;">&nbsp; &nbsp; &nbsp; &nbsp; September 2008 – July 2014: Institute of Geology and Geophysics, Chinese Academy of Sciences, Ph.D;

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≪ span style = & quot; font family: & amp; quot; & gt; & lt; span style = & quot; font family: & quot; & gt; & nbsp; nbsp; & nbsp; September 2004 – July 2008: Department of geology, Northwestern University, undergraduate & lt; / span & gt;

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<b><span style="font-family:&quot;font- size:14px;"> Monograph & lt; / span & gt; & lt; / B & gt;

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≪ span style = & quot; font family: & lt; quot; & quot; & gt; first author: & lt; / span & gt;

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<span style="font-family:&quot;">1.&nbsp;</span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, Faure M., Lin W., Chen Y., Chu

Y., Xue Z.H., 2018. Multiple emplacement and exhumation history of the Late

Mesozoic Dayunshan–Mufushan batholith in southeast China and its tectonic

significance: 1. Structural analysis and geochronological constraints. Journal

of Geophysical Research: Solid Earth, 123, 689–710. <span style="color:#337FE5;"> https://doi.org/10.1002/2017JB014597</span ></span>

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<span style="font-family:&quot;">2.&nbsp;</span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, Chen Y., Chen K., Wei W.,

Faure M., Lin W., 2018. Multiple emplacement and exhumation history of the Late

Mesozoic Dayunshan–Mufushan batholith in southeast China and its tectonic

significance: 2. Magnetic fabrics and gravity survey. Journal of Geophysical

Research: Solid Earth, 123, 711–731. <span style="color:#337FE5;"> https://doi.org/10.1002/2017JB014598</span ></span>

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<span style="font-family:&quot;">3.&nbsp;</span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, Lin W., Faure M., Chen Y., Chu

Y., Xue Z.H., 2017. Origin of the Late Jurassic to Early Cretaceous

peraluminous granitoids in the northeastern Hunan province (middle Yangtze

region), South China: Geodynamic implications for the Paleo-Pacific subduction.

Journal of Asian Earth Sciences, 141, 174–193. <span style="color:#337FE5;"> https://dx.doi.org/10.1016/j.jseaes.2016.07.005</span ></span>

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<span style="font-family:&quot;">4.&nbsp;</span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, Lin W., Faure M., Shi Y.H.,

Wang Q.C., 2017. The early Cretaceous orogen-scale Dabieshan metamorphic core

complex: implications for extensional collapse of the Triassic HP–UHP orogenic

belt in east-central China. International Journal of Earth Sciences, 106,

1311–1340. <span style="color:#337FE5;"> https://doi.org/10.1007/s00531-016-1311-6</span ></span>

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<span style="font-family:&quot;">5.&nbsp;</span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, Lin W., Faure M., Chu Y., Wu

L., Wang F., Wang J., Wang Q.C., 2014. Origin and tectonic significance of the

Huangling massif within the Yangtze craton, South China. Journal of Asian Earth

Sciences, 86, 59–75. <span style="color:#337FE5;"> https://dx.doi.org/10.1016/j.jseaes.2013.06.007</span ></span>

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≪ span style = & quot; font family: & amp; quot; & gt; 6. & nbsp; & lt; / span & gt; & lt; B & gt; & lt; span style = & quot; font family: & amp; quot; & quot; & gt; Ji Wenbin & lt; / span & gt; & lt; / B & gt; & lt; span style = & quot; font family: & amp; quot; & quot; & gt; , Lin Wei, Shi Yonghong, Wang Zao, Chu Yang, 2011. Structure and evolution of Early Cretaceous metamorphic core complex in Dabie Mountain. Geosciences, 46 (1): 161 – 180. & lt; / span & gt;

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≪ span style = & quot; font family: & quot; & quot; & gt; partner: & lt; / span & gt;

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<span style="font-family:&quot;">1. Lin

W., Faure M., Li X.H., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">,

2019. Pre-Variscan tectonic setting of the south margin of Armorica: Insights

from detrital zircon ages distribution and Hf isotopic composition of the

S<sup>t</sup>-Georges-sur-Loire Unit (S. Armorican Massif, France). Tectonophysics, 766,

340–378. <span style="color:#337FE5;"> https://doi.org/10.1016/j.tecto.2019.06.015</span ></span>

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<span style="font-family:&quot;">2. Zhang

C., Liu C.Z., Xu Y., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, Wang

J.M., Wu F.Y., Liu T., Zhang Z.Y., Zhang W.Q., 2019. Subduction re-initiation

at dying ridge of Neo-Tethys: Insights from mafic and metamafic rocks in Lhaze

ophiolitic mélange, Yarlung–Tsangbo Suture Zone. Earth and Planetary Science

Letters, 523<span style="font-family:&quot;">,&nbsp;</span>115707. <span style="color:#337FE5;"> https://doi.org/10.1016/j.epsl.2019.07.009</span ></span>

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<span style="font-family:&quot;">3. </span><span style="font-family:&quot;">Chu

Y., Lin W., Faure M., Xue, Z.H., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">,

Feng Z.T., 2019. Cretaceous episodic extension in the South China Block, East

Asia: Evidence from the Yuechengling Massif of central South China. Tectonics,

38, 3675–3702. <span style="color:#337FE5;"> https://doi.org/10.1029/2019TC005516</span ></span>

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<span style="font-family:&quot;">4. Liu

T., Wu F.Y., Liu C.Z., Zhang C., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">,

Xu Y., 2019. Reconsideration of Neo-Tethys evolution constrained from the

nature of the Dazhuqu ophiolitic mantle, southern Tibet. Contributions to

Mineralogy and Petrology, 174,23. <span style="color:#337FE5;"> https://doi.org/10.1007/s00410-019-1557-7</span ></span>

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<span style="font-family:&quot;">5. Lin

W., Rossi P., Faure M., Li X.H., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">,

Chu Y., 2018. Detrital zircon age patterns from turbidites of the Balagne and

Piedmont nappes of Alpine Corsica (France): Evidence for an European margin

source. Tectonophysics, 722, 69–105. <span style="color:#337FE5;"> https://dx.doi.org/10.1016/j.tecto.2017.09.015</span ></span>

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<span style="font-family:&quot;">6.</span><span style="font-family:&quot;"> Liu

T., Wu F.Y., Liu C.Z., Tribuzio R., </span><b><span style="font-family:&quot;">Ji

W.B.</span></b><span style="font-family:&quot;">, Zhang C., Xu Y., Zhang W.Q., 2018. Variably evolved gabbroic

intrusions within the Xigaze ophiolite (Tibet): new insights into the origin of

the ophiolite diversity. Contributions to Mineralogy and Petrology, 173,91. <span style="color:#337FE5;"> https://doi.org/10.1007/s00410-018-1518-6</span ></span>

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<span style="font-family:&quot;">7. Wu

L., Monié P., Wang F., Lin W., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">,

Yang L.K., 2018. Multi-phase cooling of Early Cretaceous granites on the

Jiaodong Peninsula, East China: Evidence from <sup>40</sup>Ar/<sup>39</sup>Ar and (U–Th)/He

thermochronology. Journal of Asian Earth Sciences, 160, 334–347. <span style="color:#337FE5;"> https://doi.org/10.1016/j.jseaes.2017.11.014</span ></span>

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<span style="font-family:&quot;">8. </span><span style="font-family:&quot;">Zhang

C., Liu C.Z., Wu F.Y., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, Liu

T., Xu Y., 2017. Ultra-refractory mantle domains in the Luqu ophiolite (Tibet):

Petrology and tectonic setting. Lithos, 286–287, 252–263. <span style="color:#337FE5;"> https://dx.doi.org/10.1016/j.lithos.2017.05.021</span ></span>

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<span style="font-family:&quot;">9.&nbsp;</span><span style="font-family:&quot;">Lin

W., Faure M., Li X.H., Chu Y., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">,

Xue Z.H., 2016. Detrital zircon age distribution from Devonian and

Carboniferous sandstone in the Southern Variscan Fold-and-Thrust belt (Montagne

Noire, French Massif Central), and their bearings on the Variscan belt

evolution. Tectonophysics, 677–678, 1–33. <span style="color:#337FE5;"> https://dx.doi.org/10.1016/j.tecto.2016.03.032</span ></span>

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<span style="font-family:&quot;">10. Wu

L., Monié P., Wang F., Lin W., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">,

Bonno M., Münch P., Wang Q.C., 2016. Cenozoic exhumation history of Sulu

terrane: Implications from (U–Th)/He thermochrology. Tectonophysics, 672–673,

1–15. <span style="color:#337FE5;"> https://dx.doi.org/10.1016/j.tecto.2016.01.035</span ></span>

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<span style="font-family:&quot;">11. Liu

T., Wu F.Y., Zhang L.L., Zhai Q.G., Liu C.Z., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, Zhang C., Xu Y., 2016. Zircon U–Pb geochronological

constraints on rapid exhumation of the mantle peridotite of the Xigaze

ophiolite, southern Tibet. Chemical Geology, 443, 67–86. <span style="color:#337FE5;"> https://dx.doi.org/10.1016/j.chemgeo.2016.09.015</span ></span>

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<span style="font-family:&quot;">12. Lin

W., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, Faure M., Wu L., Li

Q.L., Shi Y.H., Scharer U., Wang F., Wang Q.C., 2015. Early Cretaceous

extensional reworking of the Triassic HP–UHP metamorphic orogen in Eastern

China. Tectonophysics, 662, 256–270. <span style="color:#337FE5;"> https://dx.doi.org/10.1016/j.tecto.2015.05.028</span ></span>

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<span style="font-family:&quot;">13. Wei

W., Faure M., Chen Y., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, Lin

W., Wang Q.C., Yan Q.R., Hou Q.L., 2015. Back-thrusting response of continental

collision: Early Cretaceous NW-directed thrusting in the Changle–Nan'ao belt

(Southeast China). Journal of Asian Earth Sciences, 100, 98–114. <span style="color:#337FE5;"> https://dx.doi.org/10.1016/j.jseaes.2015.01.005</span ></span>

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<span style="font-family:&quot;">14. Shi

Y.H., Lin W., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, Wang Q.C.,

2014. The architecture of the HP–UHP Dabie massif: New insights from

geothermobarometry of eclogites, and implication for the continental exhumation

processes. Journal of Asian Earth Sciences, 86, 38–58. <span style="color:#337FE5;"> https://dx.doi.org/10.1016/j.jseaes.2013.09.005</span ></span>

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<span style="font-family:&quot;">15. Lin

W., Chu Y., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, Zhang Z.P., Shi

Y.H., Wang Z.Y., Li Z., Wang Q.C., 2013. Geochronological and geochemical

constraints for a Middle Paleozoic continental arc in northern margin of the

Tarim block: Implications for the Paleozoic tectonic evolution of the South

Chinese Tianshan. Lithosphere, 5, 355–381.&nbsp;<span style="color:#337FE5;"> https://dx.doi.org/10.1130/L231.1</span ></span>

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<span style="font-family:&quot;">16. Lin

W., Faure M., Chen Y., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, Wang

F., Wu L., Charles N., Wang J., Wang Q.C., 2013. Late Mesozoic compressional to

extensional tectonics in the Yiwulüshan massif, NE China and its bearing on the

evolution of the Yinshan–Yanshan orogenic belt Part I: Structural analyses and

geochronological constraints. Gondwana Research, 23, 54–77. <span style="color:#337FE5;"> https://dx.doi.org/10.1016/j.gr.2012.02.013</span ></span>

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<span style="font-family:&quot;">17. Chu

Y., Faure M., Lin W., Wang Q.C., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">,

2012. Tectonics of the Middle Triassic intracontinental Xuefengshan Belt, South

China: new insights from structural and chronological constraints on the basal

décollement zone. International Journal of Earth Sciences, 101, 2125–2150. <span style="color:#337FE5;"> https://dx.doi.org/10.1007/s00531-012-0780-5</span ></span>

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<span style="font-family:&quot;">18. Chu

Y., Lin W., Faure M., Wang Q.C., <strong>Ji W.B.</strong>, 2012. Phanerozoic tectonothermal

events of the Xuefengshan Belt, central South China: Implications from U–Pb age

and Lu–Hf determinations of granites. Lithos, 150, 243–255. <span style="color:#337FE5;"> https://dx.doi.org/10.1016/j.lithos.2012.04.005</span ></span>

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<span style="font-family:&quot;">19. </span><span style="font-family:&quot;">Choulet

F., Cluzel D., Faure M., Lin W., Wang B., Chen Y., Wu F.Y., </span><b><span style="font-family:&quot;">Ji W.B.</span></b><span style="font-family:&quot;">, 2012. New constraints on the

pre-Permian continental crust growth of Central Asia (West Junggar, China) by

U–Pb and Hf isotopic data from detrital zircon. Terra Nova, 24, 189–198. <span style="color:#337FE5;"> https://dx.doi.org/10.1111/j.1365-3121.2011.01052.x</span ></span>

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≪ span style = & quot; font family: & lt; quot; & gt; 20. Lin Wei, & lt; / span & gt; & lt; B & gt; & lt; span style = & quot; font family: & quot; & quot; & gt; Ji Wenbin & lt; / span & gt; & lt; / B & gt; & lt; span style = & quot; font family: & quot; & gt; , Shi Yonghong, Li Qiuli, Wang Zao. 2016. Structural analysis of Tongcheng high pressure ultrahigh pressure metamorphic belt on the northern margin of Dabie Shandong Province and its constraints on the Tanlu fault zone. Acta petrologica Sinica, 32 (4): 950 – 964. & lt; / span & gt;

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≪ span style = & quot; font family: & lt; quot; & gt; 21. Lin Wei, & lt; / span & gt; & lt; B & gt; & lt; span style = & quot; font family: & quot; & quot; & gt; Ji Wenbin & lt; / span & gt; & lt; / B & gt; & lt; span style = & quot; font family: & quot; & gt; , Shi Yonghong, Chu Yang, Li Qiuli, Chen zechao, Liu Fei, Wang Zao. 2013. Polyphase tectonic exhumation of high pressure ultrahigh pressure metamorphic rocks: Taking Tongbai Hongan Dabie orogenic belt as an example. Science Bulletin, 58 (23): 2259 – 2265. & lt; / span & gt;

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&& lt; span style = & quote; font family: & quote; & quote; & gt; Chu Yang, Wang Zao. 2013. Discussion on the late Mesozoic extensional structure and its dynamic background in the North China Craton and its adjacent areas. Acta petrologica Sinica, 29 (5): 1791 – 1810. & lt; / span & gt;

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≪ span style = & quot; font family: & amp; quot; & gt; 23. Xu Xufeng, Shi Yonghong, Lin Wei, & lt; / span & gt; & lt; B & gt; & lt; span style = & quot; font family: & amp; quot; & gt; Ji Wenbin & lt; / span & gt; / B & gt; & lt; span style = & quot; font family: & amp; quot; & gt; 2013. Zircon U-Pb ages and their types of eclogites in the central Dabie hinterland. Acta petrologica, 29 (5): 1559-1572. & lt; / span & gt;

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<b><span style="font-family:&quot;font- size:14px;"> Research projects & lt; / span & gt; & lt; / B & gt;

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≪ span style = & quot; font family: & quot; & quot; & gt; NSFC general program, late Mesozoic tectonic magmatic evolution and its dynamic background in XIONGERSHAN area, southern margin of North China landmass, 2020-2023, hosted & lt; / span & gt;

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≪ span style = & quot; font family: & lt; font family: & lt; span style = & quot; font family: & quot; & quot; & gt; the major research project of Tethys geodynamic system, the tectonic evolution of the eastern part of the ancient Tethys, for example, in 2019-2022, take part in & lt; / span & gt; & lt; / span & gt;

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≪ span style = & quot; font family: & lt; font family: & lt; span style = & quot; font family: & quot; & quot; & gt; general program of NSFC, structural succession and intracontinental orogeny - take the superimposed structure of Xuefeng mountain in the eastern part of Hunan Province as an example, 2019-2022, participate in & lt; / span & gt; & lt; / span & gt;

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≪ span style = & quot; font family: & lt; span style = & quot; font family: & lt; span style = & quot; font family: & quot; & quot; & gt; key research project of the Chinese Academy of Sciences, the genesis of ophiolite in Yajiang belt, Tibet: homology research of basic and ultrabasic rocks, 2016-2020, participated in & lt; / span & gt; & lt; / span & gt;

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≪ span style = & quot; font family: & gt; font family: & lt; span style = & quot; font family: & quot; & quot; & gt; NSFC youth science project, emplacement process and tectonic significance of Late Mesozoic dayunshan Mufushan batholith in South China, 2016-2018, hosted by & lt; / span & gt;

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≪ span style = & quot; font family: & amp; quot; font family: & lt; span style = & quot; font family: & quot; & quot; & gt; general program of National Natural Science Foundation of China, late exhumation of 'concealed' UHP orogenic belt, a special type of orogenic belt structural analysis, 2015-2018, participated in & lt; / span & gt; & lt; / span & gt;

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Ji Wenbin

Departments:General Geology Teaching and Research Office
Title:Associate professor
Direction:Structural Geology & geotectonics
Email:jiwenbin@nwu.edu.cn

Location:Home > Faculty > Honor & Title >