vic毕业论文
vic毕业论文
其实也不难的,当时我没时间,还是学长给的莫‘文网,专业的就是靠谱,很快就帮忙搞定了
不确定环境下的生产计划规划模型及其应用
离散型制造业APS模型研究
订单型企业多目标生产计划的制定及其调度
青岛特锐德电气有限公司生产计划管理系统优化研究
重庆骏马车辆股份有限公司生产计划与调度管理改进
基于蚁群算法的高产能生产计划的研究
服装企业生产计划信息化管理系统的研究与应用
汽车整车生产计划编制方法的研究与应用
宏大公司生产计划的编制与实施控制研究
VIC公司CPL车间生产计划管理研究
四平鼓风机厂的动态生产计划管理方法研究
基于中药制造企业的生产计划管理系统的研究及实现
多目标投入产出分析在流程企业生产计划中的应用研究
高速船智能推进系统综合优化设计技术研究
探讨和开发纺织企业生产计划管理系统
重型机器制造企业生产计划及执行系统研究
造船生产计划信息化研究
A公司生产计划与库存优化研究
锻造企业生产计划方法研究与系统实现
煤化工企业生产计划优化研究
生产计划与营销计划中的协同决策方法
基于精益生产的日别生产计划在H公司的应用与研究
供应链环境下企业生产计划研究
XBL管桩公司生产计划改进研究
多目标多约束环境下的生产计划与作业调度方法研究
BDT公司生产计划模式的研究
石化企业生产计划仿真设计与实现
生产计划排程算法和策略的研究与运用
铁路客车配件类产品生产计划与调度问题研究
S公司库存控制和生产计划的改善研究
网络环境下产品生产链生产计划集成建模研究
JIT条件下整车装配线的敏捷生产计划与调度研究
大重集团减速机厂生产模式研究与生产计划系统实现
热轧生产计划优化方法的研究与应用
基于遗传算法的炼厂生产计划优化研究
半导体制造业多目标中期生产计划优化模型研究
面向大规模定制的柔性生产计划研究
面向订单汽车制造企业生产计划中若干问题的研究
X公司高集成产品生产计划流程改进方案设计
宝钢冷轧薄板厂生产计划排产系统的开发与应用
动态规划方法在银光公司生产计划中的应用研究
TY企业冷藏产品生产计划及流程优化
HL制衣公司生产计划与订单排期管理研究
敏捷询单处理和生产计划管理系统研究
吉林石化公司引入APS生产计划管理系统实践研究
SYT公司短期生产计划与控制研究
基于供应链管理的药品生产计划研究
东江水电机械厂生产计划和车间调度研究
基于遗传算法的纺织企业生产计划与调度研究
写论文中有一大段是介绍概念的话,不好修改,怎么能避免查重啊!!!急
地名顺序可以更改一下,另外有多个名字的可以更换其他地名。
避免查重技巧:
第一,了解知网论文查重规则是避免和修改论文查重的基础前提,知网论文查重是以句子为单位的,如果一句话中连续十三个字以上重复,则知网会判定该句子为重复部分。
也就是知网查重报告当中的重复率,所以,如果论文作者希望知网查重能够相对较低的,则应该在借鉴或者引用他人文章的时候,尽量用自己的方式进行表达,以有效避免高重复率。
第二,知网论文检测系统目前已经可以自动识别引用部分,也就是说,如果论文作者在文中有引用部分,格式正确的话,知网是能够识别该部分为引用部分。
在计算全文去除引用文献的重复率部分时,会自动将该引用部分排除在外,因此,如果论文作者需要引用论文,应当按照论文的引用格式进行插入,以保障知网能够自动识别。
第三,当前,知网论文查重对于图片尚不能识别,因此,如果论文字数够多的话,对于文中的表格部分,可以将其进行截图处理,既不会影响全文的排版,也不会影响纸质稿的打印效果。
所以,如果表格部分的内容可能存在重复率的情况,笔者建议,论文作者的论文当中如果有图片或者代码的话,用截图的方式将代码或者表格转化成图片的方式,既能够有效降低论文重复率,又不会影响论文整体排版。
第四,如果论文作者实在不知道究竟应该如何避免论文查重,而实际上降低论文重复率不失为另外一种有效避免论文查重的方式,在精力有限的情况下,借鉴外力是最好的选择。
目前,业内做的比较好的诸如Papereasy论文检测网站,近来投入了大量的资金和人力研发出的三丰网论文修改助手修改效果显著,而且这种机器修改可以极大的提升论文重复率,当然。
三丰网论文检测网站还与各大高校老师均有合作,其人工降重在业内口碑也非常好,如果论文作者实在不知道如何有效避免论文查重,实际上可以到三丰网论文检测网站中寻求帮助。
以上内容参考:百度百科-查重
王友年的著作和论文
2006115. Lu-Jing Hou,Z. L. Miskovic,Ke Jiang and You-Nian Wang,“Energy loss of a charged particle moving over a 2D strongly coupled dusty plasma”,Phys. Rev. Letts. 96,255005(2006).114. Ke Jiang,Lu-Jing Hou,You-Nian Wang and Z. L. Miskovic,“Excitations of Mach cones and energy dissipation by charged particle moving over two-dimensional strongly coupled dusty plasmas”,Phys. Rev. E73 016404 (2006).113. Da-Peng Zhou,Yuan-Hong Song,You-Nian Wang and Z.L. Miskovic,“Coulomb explosions and stopping of molecular ions channeled through carbon nanotubes”,Phys. Rev. A 73,033202(2006).112. Zheng-Feng Ding,Long-Wei Chen and You-Nian Wang,“Numerical studies on the transition of tuned substrate self-bias in a radio-frequency inductively coupled plasma”,Phys. Plasmas 13,043504(2006).111. You-Nian Wang and Lu-Jing Hou,“Rotation of 2D finite dust Coulomb clusters in magnetic field”,Thin Solid Films 506-507,647(2006).110. Xue-Chun Li and You-Nian Wang,“Investigation of secondary electron emission effects in plasma immersion ion implantation with dielectric substrates”,Thin Solid Films 506-507,307(2006).109. Ming Mao and You-Nian Wang,“Heating mechanism in one-dimensional bounded magnetized inductively coupled plasma”,Phys Lett. A 359,240(2006).108. Xiang Xu and You-Nian Wang,“Magnetohydrodynamic Simulation of a Coaxial High-Density Plasma Opening Switch”,IEEE Trans. Plasma Science 34 (No.4),1529 (2006).107. Li-Hong Wang,Zhong-Ling Dai,and You-Nian Wang,“Investigation of dual radio-frequency driven sheaths and ion distribution bombarding an insulator substrate”,Chin. Phys. Lett. 23,688(2006).106. Zhong-Ling Dai,and You-Nian Wang,“Characteristics of single and dual radio-frequency (RF) plasma sheaths”,Front. Phys. China 2,178(2006).105. Wei Jiang,Ming Mao,and You-Nian Wang,“ A time-dependent analytical sheath model for dual frequency capacitively coupled plasma,Phys. Plasma 13,accepted (2006).2005104. Da-Peng Zhou,You-Nian Wang,and Z.L. Miskovic,Dynamic polarization effects in ion channeling through single-wall carbon nanotubes,Phys. Rev. A 72,023202(2005).103. Yuan-Hong Song,You-Nian Wang,and Z.L. Miskovic,Vicinage effects in energy loss and electron emission during grazing scattering of heavy molecular ions from a solid surface,Phys. Rev. A 72,012903(2005).102. Yuan-Hong Song,You-Nian Wang,and Z. L. Miskovic,Theoretical study of swift molecular ions specularly reflected from solid surfaces under glancing angle of incidence,Nucl. Intsr. & Methods. B 230,158(2005).101. D. J. Mowbray,Z. L. Miskovic,F.O. Goodman,and You-Nian Wang,Dynamic interactions of fast ions with carbon nanotubes, Nucl. Intsr. & Methods. B 230,142(2005).100. Z. L. Miskovic,F. O. Goodman,Yuan-Hong Song,and You-Nian Wang,Stochastic effects of charge transfer on image interaction and plasmon excitation in ion-surface grazing scattering,Nucl. Intsr. & Methods. B 230,391 (2005).-Qiu Wang,You-Nian Wang,and Z. L. Miskovic,Coulomb explosion and energy loss of fast C_60 clusters in plasmas,Phys. Plasma,12,042702(2005).98. Lu-Jing Hou,You-Nian Wang,and Z. L. Miskovic,Formation and rotation of two-dimensional Coulomb crystals in magnetized complex plasma,Phys. Plasma,12,042104(2005).97. Ke Jiang,Lu-Jing Hou,and You-Nian Wang,Interactions of a projectile charge with two-dimensional dusty plasmas,Chinese Phys. Lett. 22,1713(2005).96. Ming Mao and You-Nian Wang,Self-consistent kinetic description of the low-pressure solenoidal inductively coupled argon discharge,Plasma Sci. & Techn. 7,2640(2005).95. Zhen-Qun Guan,Zhong-Ling Dai,and You-Nian Wang,“Simulations of dual rf-biased sheaths and ion energy distributions arriving at a dual rf-biased electrode”,Phys. Plasma,12,123502 (2005)94. Zheng-Feng Ding,Jing-Chao Sun and You-Nian Wang,“Influences of Discharge Parameters on Tuned Substrate Self-bias in a Radio-frequency Inductively Coupled Plasma”,Plasma Sci. & Techn,7,3117 (2005).93. Jiu-Li Wang,Gu-Ling Zhang,You-Nian Wang et. al.,“Grid-shadow effects in grid-enhanced plasma source ion implantation”,Surf. Coat. Techn. 92,101 (2005).92. Li Wei,Shaowen Sun,and You-Nian Wang,“Influence of nonlinear absorption effects on optical bistability in semiconductor ring resonators,Opt. Laser Techn. 37,432(2005).200491. Lu-Jing Hou,You-Nian Wang,and Z. L. Miskovic,Theoretical study of laser-excited Mach cones in dusty plasmas,Phys. Rev. E 70,056406(2004).90. Lu-Jing Hou,You-Nian Wang,and Z. L. Miskovic,Two-dimensional radio-frequency sheath dynamics over a nonflat electrode with perpendicular magnetic field, Phys. Plasmas 11,4456(2004).89. Lu-Jing Hou,You-Nian Wang,and Z. L. Miskovic,Two-dimensional fluid simulation of collisional plasma sheath over rf powered electrode with cylindrical hole ,Plasma Sci. & Techn.6,2404(2004).88. Ding Zhenfeng,Huo Weigang,Wang Younian,The tuned substrate self-bias in a radio-frequency inductively coupled plasma,Plasma Sci. & Techn. 6,2549(2004)87. D. J. Mowbray,Z. L. Miskovic,F.O. Goodman,and You-Nian Wang,Interactions of fast ions with carbon nanotubes: Two-fluid model,Phys. rev. B 70,195418 (2004).86. L. Wei and You-Nian wang,Electromagnetic wave propagation in single-wall carbon nanotubes,Phys. Lett. A 333,303(2004).85. Zhong-Ling Dai and You-Nian Wang,Simulations of ion transport in a collisional radio-frequency plasma sheath,Phys. Rev. E 69,036403 (2004)84. Z. F. Ding,L. W. Chen,and You-Nian Wang,Splitting and mating properties of dispersion curves of wave modes in a cold magnetoplasma-filled cylindrical conducting waveguide,Phys. Plasmas 11,1168 (2004)83. Gui-Qiu Wang and You-Nian Wang,Influence of strong laser fields on Coulomb explosions and energy losses of correlated-ion clusters in plasmas,Phys. Plasmas 11,1187 (2004).82. You-Nian Wang and Z. L. Miskovic,Interactions of fast ions with carbon nanotubes: self-energy and stopping power,Phys. Rev. A 69,022901 (2004).81. Hong-Wei Li,You-Nian Wang,and Z. L. Miskovic,Interactions of fast C_20 clusters with solids: Coulomb explosions,charge states,and energy losses,J. Phys: Condens. Matter 16,1231 (2004).80. Ming Mao and You-Nian Wang,Influence of external magnetic field on anomalous skin effects in inductively coupled plasmas,Chinese Phys. Lett. 21,511 (2004).79. Xue-Chun Li and You-Nian Wang,Secondary-electron emission effects in plasma immersion ion implantation with dielectric substrates,Chinese Phys. Lett. 21,364 (2004).78. D. J. Mowbray,Z. L. Miskovic,F.O. Goodman,and You-Nian Wang,Wake effect in interactions of fast ions with carbon nanotubes,Phys. Lett. A 329,94 (2004).77. Cun-Sheng Ren,Zong-Xin,You-Nian Wang,and Hung YU,“ Corrosion behavior of TiN films prepared by vacuum ard deposition and nitrogen ion beam dynamic mixing implantation”,Surf. Coat. Techn. 185,210 (2004).76. Jiang-Liang Zhang,Chang Tan,Wen-Chun Wang,and You-Nian Wang,“A spectroscopic scheme to measure the expansion velocity of ablation plasmas formed by high intensive pulsed ion beam”,Vacuum 73,673 (2004).75. Wen-Chun Wang,Feng Liu,Jia-Liang Zhang,Yue Liu,and You-Nian Wang,“Study on density distribution of high energy electrons in pulsed corona discharge”,Vacuum 73,333(2004).74. Jiu-Li Wang,Gu-Ling Zhang,Yuan-Fu Liu,You-Nian Wang et al.,Influence of ion species ratio on grid-enhanced plasma source ion implantation”,Chinese Phys. 13,65 (2004).73.王久丽,张谷令,王友年等, “等离子体源离子注入鞘层及鞘层扩展动力学计算方法”,《科学通报》,第49卷,410(2004)。72. 李雪春,王友年,“介质靶表面的充电效应对等离子体浸没离子注入过程鞘层特性的影响”,《物理学报》Vol.53,No.8 (2004).71. 芦岩,王友年,“碰撞对非对称射频鞘层特性的影响”,《物理学报》Vol.53,No.8 (2004).2003-199070. Gui-Qiu Wang,You-Nian Wang,and Z. L. Miskovic,Coulomb explosions and energy loss of molecular ions in plasmas,Phys. Rev. E 68,036405(2003)69. Yuan-Hong Song,You-Nian Wang,and Z. L. Miskovic,Kinetic electron emission induced by grazing scattering of heavy ions form metal surfaces,Phys. Rev. A 68,022903 (2003).68. Lu-Jing Hou,You-Nian Wang,and Z. L. Miskovic,Induced potential of a dust particle in a collisional radio-frequency sheath,Phys. Rev. E 68,016410 (2003).67. Z. L. Miskovic,F. O. Goodman,W.-K. Liu,and You-Nian Wang,Stochastic treatment of nonequilibrium ion stopping in solids,Phys. Rev. A 67,012902 (2003)-Ling Dai and You-Nian Wang,Comparison between characteristics of radio-frequency sheaths and pulse sheaths with insulating substrates Surface and Coatings Technology 165,224 (2003).65. Lu-Jing Hou and You-Nian Wang,Theoretical study on nonlinear resonances of a charged micro-particle in RF sheath,Acta Physica Sinica 52,434(2003)[in Chinese].64. Gui-Qiu Wang and You-Nian Wang,Influence of laser field on interaction between swift molecular ions and solids,Acta Physica Sinica 52,939(2003)[in Chinese].63. You-Nian Wang,Lu-Jing Hou,and Xiaogang Wang,Self consistent nonlinear resonance and hysteresis of a charged micro-particle in a RF sheath,Phys. Rev. Lett. 89,155001 (2002).62. You-Nian Wang and Z. L. Miskovic,Energy loss of charged particles moving in cylindrical tubules,Phys. Rev. A 66,042904(2002).61. Gui-Qiu Wang,You-Nian Wang,and Z. L. Miskovic,Influence of laser field on Coulomb explosions and stopping power for swift molecular ions with solids,Phys. Rev. A66,042901(2002).60. Zhong-Ling Dai,You-Nian Wang,and Teng-Cai Ma,Spatiotemporal characteristics of the collisionless rf sheath and the ion energy distributions arriving at rf-biased electrondes,Phys. Rev. E 65,036403 (2002).59. Zhong-Ling Dai and You-Nian Wang,“Multiple ion dynamics model for the collisionless rf sheaths and the ion energy distributions at rf-biased electrodes in fluorocarbon plasmas”,Phys. Rev. E 66,026413 (2002).58. Zhong-Ling Dai and You-Nian Wang,Dynamic sheath model at pulsed-biased insulating substrates,J. Appl. Phys. 92,6428 (2002).57. Hong-Wei Li,You-Nian Wang,and Z. L. Miskovic,“Influence of wake-potential asymmetry on charge states and Coulomb explosion of fast molecular ions in solids ”,Nucl. Instr. Methods B193,204(2002).56. Z. L. Miskovic,W. K. Liu,F. Q. Goodman,and You-Nian Wang,“Spatial distribution of ion charges in fast,partially stripped clusters traversing solid targets”,Nucl. Instr. Methods B193,221(2002).55. 邱华檀,王友年,马腾才,“碰撞效应对射频偏压电极上离子能量分布和角度分布的影响”,《物理学报》Vol.51,No.6 (2002).54. 王友年,李宏伟,“尾流效应对快速双原子分子离子在固体中电荷态及分子轴取向的影响”,《物理学报》Vol.51,No.4 (2002).53. Lu-Jing Hou,You-Nian Wang,and Z. L. Miskovic,“Wake effects on vertical alignment of two dust particles in a rf plasma sheath”,Phys. Lett. A292,129 (2001).52. Yuan-Hong Song,You-Nian Wang,and Z. L. Miskovic,“Energy loss of heavy ions specularly reflected from surfaces under glancing-angle incidence”,Phys. Rev. A63,052902 (2001).51. Yuan-Hong Song,You-Nian Wang,and Z. L. Miskovic,“Influence of the laser field on the interaction of energetic ions with solid surface”,Phys. Lett. A285,183(2001).50. Lu-Jing Hou,You-Nian Wang,and Z. L. Miskovic,“Interaction potential among dust grains in a plasma with ion flow”,Phys. Rev. E64,046406 (2001).49. Hua-Tan Qiu,You-Nian Wang,and Teng-Cai Ma,“Collisional effects on the radio-frequency sheath dynamics”,J. Appl. Phys. 90,5884 (2001).48. Z. L. Miskovic,F. Q. Goodman,W. K. Liu,and You-Nian Wang,“Ion-charge distributios in fast,partially stripped clusters passing thin foils”,Phys. Rev. A 64,064901 (2001)。47. Z. L. Miskovic,S. G. Davison,F. Q. Goodman,W. K. Liu,You-Nian Wang,“Stopping power of fast,partially stripped molecules and clusters: Vicinage effects in charge states”,Phys. Rev. A 63,022901 (2001).46. 戴忠玲,王友年,马腾才,“射频等离子体鞘层动力学模型”,《物理学报》Vol.50,No.12 (2001).45. You-Nian Wang,Hua-Tan Qiu,and Z. L. Miskovic,“ Coulomb explosion patterns of fast C60 clusters in solids”,Phys. Rev. Lett. 85,1148 (2000).44. Xian Meng,You-Nian Wang and Teng-Cai Ma,“Effects of electron emission on steady-state plasma sheaths”,J. Appl. Phys. 88,40 (2000).43. Z. L. Miskovic,S. G. Davison,F. Q. Goodman,W. K. Liu,and You-Nian Wang,“Vicinage effects on charge states of fast clusters in solids”,Phys. Rev. A 61,062901 (2000).42. 邱华檀,王友年,“速C60离子团在固体中的库仑爆炸过程I-球壳层模型”,《物理学报》Vol.49,1528 (2000).41. 邱华檀,王友年,“快速C60离子团在固体中的库仑爆炸过程Ⅱ-分子动力学模拟”,《物理学报》Vol.49,1534 (2000).40. 孟显,王友年,马腾才,“电子发射对稳态等离子体鞘层影响的理论研究和数值模拟”,《强激光与粒子束》Vol.12,358 (2000).39. 王友年,“载能分子离子或离子团与固体材料相互作用”,《大连理工大学学报》,Vol.40 ,s12 (2000).38. You-Nian Wang,Yuan-Hong Song,Z. L. Miskovic and Wing-Ki Liu,“Coulomb explosion patterns for swift hydrogen molecular ions penetrating through solids”,Nucl. Instr. Methods B153,26 (1999).37. You-Hong Song and You-Nian Wang,“Numerical simulation for H+ ion-surface scattering under grazing incidence”,Nucl. Instr. Methods B153,186 (1999).36. 王友年,“快速 在固体中穿行时产生的动力学相互作用力及库仑爆炸图形的演化”,《物理学报》Vol.48,No.6(1999).35. 宋远红,王友年,宫野,“氢离子在固体表面掠角散射及能量损失的数值模拟”,《物理学报》Vol.48,No.7(1999).34. You-Nian Wang,Z. L. Miskovic and Wing-Ki Liu “Dynamical interaction effects of the Coulomb explosions of at glancing-incidence on solid surfaces”,Phys. Rev. A 58,1287 (1998).33. Z. L. Miskovic,Wing-Ki Liu and You-Nian Wang,“Self-energy and stopping power of large energetic clusters in solids: Implications to Coulomb explosion”,Phys. Rev. A 57,362 (1998).32. Z. L. Miskovic,Wing-Ki Liu and You-Nian Wang,“Multiple scattering effects on stopping of large cluster in solid”,Phys. Rev. A 58,2191 (1998)。31. You-Nian Wang,Xeng-Lu Deng and Teng-Cai Ma,“Dependence of electronic stopping power on incidence angle for fast ions moving near solids surfaces”,Nucl. Instr. Methods B 135,164 (1998)。30. Yuan-Hong Song and You-Nian Wang,“Effects of ion-nuclues sizes on the electronic stopping power for heavy ions in solids”, Nucl. Instr. Methods B 135,124 (1998).29. 孟显,王友年,“声子-电子耦合效应对半导体表面感应电势的影响”,《物理学报》Vol.4,1155 (1998).28. You-Nian Wang and Teng-Cai Ma,“Consistent calculations for the energy loss of slow ions moving in two-dimensional electron gases”, Phys. Rev. A55,2087 (1997).27. 王友年,马腾才,“载能带电粒子在物质中电子阻止本领研究进展”,《大连理工大学学报》Vol.37,129 (1997).26. 王友年,“分子离子在金属表面层区域飞行时产生的感应势”,《功能材料与器件学报,第3卷,35 (1997).25. You-Nian Wang and Teng-Cai Ma,“Bethe stopping theory for fast ions moving through two-dimensional targets: Harmonic oscillator model”,Phys. Lett. A 221,134 (1996).24. You-Nian Wang and W.-K. Liu,“The energy loss of ions moving near a solid surface”,Phys. Rev. A54,636 (1996).23. You-Nian Wang and W.-K. Liu,“Wake potential of an ion moving near a solid surface”,Chem. Phys. Lett. A254,122 (1996).22. 朱武飚,王友年,邓新禄,马腾才,“负偏压射频放电过程的流体力学模拟”,物理学报,第45卷,1138 (1996).21. Y. N. Wang and T. C. Ma,Wake potential of a charged in a strongly coupled two-dimensional electron gas Phys. Rev. B52,16395 (1995).20. Y. N. Wang and T. C. Ma,Energy loss for swift ions in a strongly coupled two-dimensional electron gas,Phys. Lett. A 200,319 (1995).19. Y. N. Wang and T. C. Ma,Electronic stopping power for hydrogen molecular ions in solids: Influence of inner-shell electrons of target atoms,Phys. Rev. A50,3192(1994).18. 王友年,马腾才,低速分子离子在固体电子气中的散射及能量损失,物理学报,第43 卷,979(1994).17. You-Nian Wang and Teng-Cai Ma,Vicinage effects in stopping power for diatomic molecular ions in solids, Phys. Lett. A178,209 (1993).16. You-Nian Wang and Teng-Cai Ma,Numerical evaluation of the stopping power for heavy ions in solids, Nucl. Instr. Meth. B80/81,16 (1993).15. Tao Cui,You-Nian Wang and Teng-Cai Ma,A fitted expression of electronic stopping power for protons in solids,Nucl. Instr. Meth . B73,123 (1993).14. You-Nian Wang and Teng-Cai Ma,“Electronic stopping power for heavy ions in hot targets”,Phys. Rev. B47,5597 (1993).13. You-Nian Wang,Tao Cui,and Teng-Cai Ma,“Electronic stopping power for energetic protons in solids in the low and intermediate-energy regions,J. Appl. Phys. 73⑼,4275 (1993).12. Wei-Dong Shi,Xue-Ya Wen,Che-Sheng Ren,and You-Nian Wang,“Study of surface modification of WC-Co alloy by nitrogen”,Nucl. Instr. Meth. B80/81,229 (1993).11. 王友年,马腾才,“Electronic stopping power of intermediate- velocity heavy ions in solids”,Chinese Sci Bul. Vol. 38, 994. (1993).10. 王友年,马腾才,“重离子束在等离子体中的能量损失”,《强激光与粒子束》 Vol.4,No.4 (1993).9. 王友年,马腾才,“低速离子在固体电子气中的慢化-相移和阻止本领的计算”,《大连理工大学学报》 Vol.33,105(1993).8.Teng-Cai Ma,You-Nian Wang,and T. Cui,“Numerical evaluation of the stopping power for a proton in strongly coupled electron gas”,J. Appl. Phys. 72⑻,3838 (1992).7. You-Nian Wang and Teng-Cai Ma,“Z1 Oscillation in electronic stopping power for slow ions”,Phys. Lett. A167,287 (1992).6. 王友年,马腾才,宫野,“重离子在热靶中的电子阻止本领及有效电荷数”,《物理学报》Vol.42,631 (1992).5. 王友年,马腾才,“中等速度的重离子在固体中的电子阻止本领”,《科学通报》,第23期,2130 (1992).4. 王友年,安世民,“激光束辐照下金属材料表面合金化过程中的热传输问题”,《强激光与粒子束》Vol.3,No.4(1992).3. You-Nian Wang and Teng-Cai Ma,“Electronic stopping Power for slow atoms in solids”,Phys. Rev. A44,1768 (1991).2. 王友年,马腾才,“强耦合简并电子气中离子的阻止本领和能量偏离的计算”,《计算物理》 Vol.7,235(1990).1. You-Nian Wang and Teng-Cai Ma,“Stopping power and energy loss straggling of slow proton in a strongly coupled degenerate electron gas”,Nucl. Instr. & Methods B51,216 (1990).
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