查询词典 keep the field
- 与 keep the field 相关的网络例句 [注:此内容来源于网络,仅供参考]
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Have no reference to have trouble with hold the position of keep an eye on keep / control one's temper keep one's balance keep one's appointment keep company with keep sb. company keep competition between keep faith keep one's mind on keep/bear in mind keep one's head keep pace with keep a promise keep in touch with sb. keep track of keep one's word keep to the point lay a claim to lay / put / place emphasis on / upon lead the way learn by heart leave sth. out of consideration lose control of lose one's balance lose one's head lose heart lose contact with lose sight of lose one's temper lose faith in lose track of make an appeal to sb. make an appointment with sb. make an attempt to do sth. make the acquaintance of sb. comments on/upon sth.
渴望 求助于某人与------无关与-----闹纠纷担任---的职务照看,留意忍住不发脾气保持平衡守约与-----结交,与-----亲热陪伴某人在------之间进行竞争忠于信仰专注于记住保持镇定与-----并驾齐驱遵守诺言与某人保持联络记录,保持与---联系守信用紧扣主题主张,要求,自以为是着重于,强调领路,带路记住,背过不考虑某事失去对------的控制失去平衡慌乱,惊慌失措失去信心与-----失去联系看不见发脾气失去对-----的信任失去----的线索向某人呼吁某事于某人约会企图做某事结识某人评论把----进行比较控告向某人道歉知识改变命运,思路决定人生!
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Who's there? I've got your number Oh no, no I'm back to haunt you No, stay away Ha ha ha ha ha It's Friday night So creepy outside It's is thundering and lightning There's nobody home Cause I'm all alone It's scary and it's frightening The sound of shoes A shadow that moves Something odd is tic tac ticking Someone's in here I'm so full of fear The telephone is ringing Now I can see you Oh no, please no Now I can touch you Oh god, please go I am right here now Oh please, tell me where Ha ha ha ha I'm in a nightmare You better run I'm back to haunt you down Halloween, in the death of the night, hear me scream I'm coming, I'm coming Halloween, is the fear that I fight, in my dream Keep running, keep running Just keep running - oh, keep on running, yeah Just keep running Just keep running - oh, keep on running, yeah Just keep running Hell broke out On this Friday night Zombies passing deadly My Candyman, from Bountyland Is coming here to get me Now I can see you Oh no, please no Now I can touch you Oh god, please go I am right here now Oh please tell me where Ha ha ha ha I'm in a nightmare You better run I'm back to haunt you down I'm coming, I'm coming Halloween, is the fear that I fight, in my dream Keep running, keep running Just keep running - oh keep on running, yeah Just keep running Just keep running - oh keep on running, yeah Halloween, in the death of the night, hear me scream Just keep running It's squeaking and creaking I move silent in the night, hahahahaha Could be the boy from next-door You'll never guess my disguise Hahahahaha!
谁在那儿?我有你的电话号码哦,不,不我回过头来困扰着你不,远离哈哈哈哈这是星期五晚上因此,爬行外这是雷鸣和闪电有没有人在家原因我独自这是可怕的,它的可怕健全的鞋影子的动作一些奇怪的是啲嗒滴答有人在这里我是如此充满恐惧的电话响起来现在,我可以看到你哦,不,请不现在,我可以帮你联系哦,上帝,请访问我现在在这里噢,请告诉我在哪里哈哈哈哈我在一场噩梦你最好运行我回过头来困扰你失望万圣节,在夜间死亡,听我尖叫我来了,我来了万圣节,是怕我打,我的梦想继续运行,继续运行只要继续运行-哦,继续运行,嗯只要继续运行只要继续运行-哦,继续运行,嗯只要继续运行地狱爆发在这个星期五晚上通过致命的僵尸我的Candyman,从Bountyland 是来这里把我现在,我可以看到你哦,不,请不现在,我可以帮你联系哦,上帝,请访问我现在在这里噢,请告诉我在哪里哈哈哈哈我在一场噩梦你最好运行我回过头来困扰你失望我来了,我来了万圣节,是怕我打,我的梦想继续运行,继续运行只要继续运行-哦继续运行,嗯只要继续运行只要继续运行-哦继续运行,嗯万圣节,在夜间死亡,听我尖叫只要继续运行它的尖叫和吱吱作响我谨在夜里,hahahahaha沉默可能是从男孩隔壁你绝对猜不到我的伪装 Hahahahaha!
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The main contributions of the second part of this dissertation are focused on the cryptographic properties of logical functions over finite field, with the help of the properties of trace functions, and that of p-polynomials, as well as the permutation theory over finite field: The new definition of Chrestenson linear spectrum is given and the relation between the new Chrestenson linear spectrum and the Chrestenson cyclic spectrum is presented, followed by the inverse formula of logical function over finite field; The distribution for linear structures of the logical functions over finite field is discussed and the complete construction of logical functions taking on all vectors as linear structures is suggested, which leads to the conception of the extended affine functions over finite field, whose cryptographic properties is similar to that of the affine functions over field GF (2) and prime field F〓; The relationship between the degeneration of logical functions and the linear structures, the degeneration of logical functions and the support of Chrestenson spectrum, as well as the relation between the nonlinearity and the linear structures are discussed; Using the relation of the logical functions over finite field and the vector logical functions over its prime field, we reveal the relationship between the perfect nonlinear functions over finite field and the vector generalized Bent functions over its prime field; The existence or not of the perfect nonlinear functions with any variables over any finite fields is offered, and some methods are proposed to construct the perfect nonlinear functions by using the balanced p-polynomials over finite field.
重新定义了有限域上逻辑函数的Chrestenson线性谱,考察了新定义的Chrestenson线性谱和原来的Chrestenson循环谱的关系,并利用一组对偶基给出了有限域上逻辑函数的反演公式;给出了有限域上随机变量联合分布的分解式,并利用随机变量联合分布的分解式对有限域上逻辑函数的密码性质进行了研究;给出了有限域上逻辑函数与相应素域上向量逻辑函数的关系,探讨了它们之间密码性质的联系,如平衡性,相关免疫性,扩散性,线性结构以及非线性度等;讨论了有限域上逻辑函数各类线性结构之间的关系,并给出了任意点都是线性结构的逻辑函数的全部构造,由此引出了有限域上的"泛仿射函数"的概念;考察了有限域上逻辑函数的退化性与线性结构的关系、退化性与Chrestenson谱支集的关系;给出了有限域逻辑函数非线性度的定义,利用有限域上逻辑函数的非线性度与相应素域上向量逻辑函数非线性度的关系,考察了有限域上逻辑函数的非线性度与线性结构的关系;利用有限域上逻辑函数与相应素域上向量逻辑函数的关系,揭示了有限域上的广义Bent函数与相应素域上的广义Bent函数的关系,以及有限域上的完全非线性函数与相应素域上向量广义Bent函数之间的关系;给出了任意有限域上任意n元完全非线性函数存在性与否的完整证明,并利用有限域上平衡的p-多项式的性质给出了有限域上完全非线性函数的一些基本构造方法。
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After take analyzed deeply for the opened magnet circuit with FEMM (Finite Element Method Magnetics) we find out the field distributing that is separated into three sections . One is the main area what we called as positive field section. Beside the main field there are tow areas that are called the inverted field sections. Loudspeaker arise a very serious distortion when the voice coil moving into inverted field areas. The direction of induced current in the coil part of entered inverted field area is same with the current driving into loudspeaker so that total currents increas largely and heat increase rapidly. With more coils moving into inverted area the voice coil will take on negative inductance properties. It is the main reason that voice coil is burned by heating with increasing current due to arise negative inductance. So opened magnetic circuit is not suitable for the woofers in which the voice coil have wider displacement range. When using this kind magnetic circuit design, the voice coil moving range should be less than the range of positive field to avoid loudspeaker arise serious distortion and heating. Even though voice coil moving range is in the positive area, loudspeaker will still arise more distortion because the field distribution is very cliffy at tow sides of the positive area and full range of magnetic field distribution is not parallel that will arise distortion. Base on above reasons, opened magnetic circuit is not an ideal magnetic circuit for low-frequency loudspeakers. But it can be used in mid-range or high-frequency productions.
开式磁路是由2片钕铁硼磁铁和主导磁板和导磁垫片组成,我们在实践过程中发现这种磁路结构不适合于低频扬声器的使用,我们通过使用FEMM(Finite Element Method Magnetics)软件包对该磁路进行了分析,该磁路的磁场范围被分成3个区域,其中在主导磁板附近形成一个正向磁场,在正向磁场的两边存在反向的磁场,音圈在工作时有很大一部分进入了反向磁场中,在反向磁场内线圈的感应电流方向与驱动电流方向相同,使得音圈呈现出负感抗特性,由于音圈的负感抗特性引起电流的增加导致音圈发热甚至烧毁,因此在扬声器中使用开式磁路时,音圈的运动范围应控制在正向磁场范围之内,否则音圈运动到反向磁场区域时将会产生很大的失真和发热,即使在设计时已经将音圈的运动范围控制在正向磁场范围之内,由于正向磁场的2个边缘磁场强度衰减太快,同时开式磁路中磁场的分布不是平行的,而是自由发散的分布,这样肯定会导致扬声器的非线性失真,因此我们得到的结论是:开式磁路并不是一个理想的磁路,它不适合于低频扬声器的使用,但它还可以应用于中高频扬声器。
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The opened magnetic circuit is composed as tow NdFeB permanent magnets and a top plate without U-yoke. After take analyzed deeply for the opened magnet circuit with FEMM (Finite Element Method Magnetics) we find out the field distributing that is separated into three sections . One is the main area what we called as positive field section. Beside the main field there are tow areas that are called the inverted field sections. Loudspeaker arise a very serious distortion when the voice coil moving into inverted field areas. The direction of induced current in the coil part of entered inverted field area is same with the current driving into loudspeaker so that total currents increas largely and heat increase rapidly. With more coils moving into inverted area the voice coil will take on negative inductance properties. It is the main reason that voice coil is burned by heating with increasing current due to arise negative inductance. So opened magnetic circuit is not suitable for the woofers in which the voice coil have wider displacement range. When using this kind magnetic circuit design, the voice coil moving range should be less than the range of positive field to avoid loudspeaker arise serious distortion and heating. Even though voice coil moving range is in the positive area, loudspeaker will still arise more distortion because the field distribution is very cliffy at tow sides of the positive area and full range of magnetic field distribution is not parallel that will arise distortion. Base on above reasons, opened magnetic circuit is not an ideal magnetic circuit for low-frequency loudspeakers. But it can be used in mid-range or high-frequency productions.
开式磁路是由2片钕铁硼磁铁和主导磁板和导磁垫片组成,我们在实践过程中发现这种磁路结构不适合于低频扬声器的使用,我们通过使用FEMM(Finite Element Method Magnetics)软件包对该磁路进行了分析,该磁路的磁场范围被分成3个区域,其中在主导磁板附近形成一个正向磁场,在正向磁场的两边存在反向的磁场,音圈在工作时有很大一部分进入了反向磁场中,在反向磁场内线圈的感应电流方向与驱动电流方向相同,使得音圈呈现出负感抗特性,由于音圈的负感抗特性引起电流的增加导致音圈发热甚至烧毁,因此在扬声器中使用开式磁路时,音圈的运动范围应控制在正向磁场范围之内,否则音圈运动到反向磁场区域时将会产生很大的失真和发热,即使在设计时已经将音圈的运动范围控制在正向磁场范围之内,由于正向磁场的2个边缘磁场强度衰减太快,同时开式磁路中磁场的分布不是平行的,而是自由发散的分布,这样肯定会导致扬声器的非线性失真,因此我们得到的结论是:开式磁路并不是一个理想的磁路,它不适合于低频扬声器的使用,但它还可以应用于中高频扬声器。
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Like a shooting star Your headed by me You touched my heart But won't set me free Oh boy You've got to be patient with me Oh boy I wanna get to know you much better let's start it out Being friends for awhile You hold my eye When I first saw your smile Oh boy This could really turn into something Oh boy That's why I don't wanna rush it Don't talk Don't tell your friends About us Don't talk Or this all will end I promise Be quiet, be quiet Or I will just deny it Be quiet, ssshh Keep it between us I'm going out, with a bunch of my friends You can meet up with us at quarter to ten Oh boy Don't act like there's something between us Oh boy From now on, let's keep it a secret Don't talk Don't tell your friend About us Don't talk or this will end I promise Be quiet, be quiet Or I will just deny it Be quiet, sshh Keep it between us I know it feel that this is real But I need sometime to see If you're gonna be the one for me From now let's just keep it hush Let's keep it between us This is the real reason I don't really care Cuz people likes to talk, people like to stare Just one thing I guess, just one thing I don't know So when it comes to us, baby keep your mouth closed So don't talk (Don't talk, don't tell your friend) Oh, don't tell Don't tell, oh no I promise Be quiet be quiet ...oh hey Or I will just deny it Be quiet Don't talk Ohooo, between us Don't talk Don't tell your friends Yeah yeah Don't talk or this all will end I promise Be quiet, be quiet Or I will just deny it Be quiet, ssshh Keep it between us Keep your mouth closed
就像一个射击之星您为首的我你说出了我的心但不会设定Me免费哦男童你要耐心与我哦男童我想结识你好得多让我们从它列作为朋友,为一段时间你紧握我的眼睛当我第一次看到你的微笑哦男童这可能真的变成东西哦男童这就是为什么我不想急匆匆它不谈论不告诉你的朋友关于我们不谈论还是这一切将结束我承诺肃静,肃静或者我会否认安静, ssshh 保持我们之间我走出去,与一群我的朋友你能满足了,与我们在9点45分哦男童并不像有什么东西我们之间哦男童从现在起,让我们保持一份秘密不谈论不告诉你的朋友关于我们不谈论这个或将结束我承诺肃静,肃静或者我会否认肃静, sshh 保持我们之间我知道它觉得这是真正的但我需要一段时间来看看如果你立志成为一个对我来说从现在开始让我们只保持hush 让我们继续我们之间这是真正的原因我真的不小心 cuz人喜欢聊天,人们喜欢凝望只是一件事,我猜想,只是一件事我不知道因此,当谈到对我们来说,婴儿保持口腔封闭所以不要谈(不要说,不要告诉你的朋友)哦,不告诉他们不告诉他们,哦,没有,我答应肃静,肃静。。。
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First, in order to verify the correct of this retrieval month, by using the data of three-dimensional wind field, raininess field and temperature field that are output by MM5 numerical simulation, we climate the radial velocity field and echo intention field in the in-phase observation area of Dual-Doppler radar, then, on the base of the upwards retrieval theory and using the radial velocity field and echo intention field in the in-phase observation area of Dual-Doppler radar, we retrieve the atmospheric three-dimensional wind field.
首先,为检验此种反演方法的可靠性,我们使用MM5数值模式输出的三维风场、雨强场、温度场等数据,分别模拟生成两部雷达同步观测区的径向速度场和回波强度场,然后根据以上的反演理论利用模拟的双多普勒天气雷达观测到的径向速度场和回波强度场反演出大气三维风场。
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Firstly, we collected and sorted out the GPS data, established the uniform velocity field for the Chinese mainland and the surrounding regions, and the horizontal deformation field relative to the Eurasia plate; Secondly, we established a motion model for the entire rotation and homogeneous strain of the first and second level blocks in Chinese mainland, analyzed the motion pattern and strain behavior of active blocks in Chinese mainland, as well as the motion pattern of principal fault zones in Chinese mainland; Thirdly, considering the heterogeneity of strain distribution inside a block and supposing that the strain tensor inside the block is the linear function of location, we derived and established an equation for the entire rotation and linear strain of block and a motion model for the entire rotation and linear strain of principal blocks in Chinese mainland; We also calculated the principal strain field and the maximum shear strain field in Chinese mainland and the surrounding regions, analyzed the basic characteristics of strain field in Chinese mainland, as well as the relationship between the spatial distribution of strain field and large tectonic zones; Finally, we established the 2-D geotectonic model and digital model for Chinese mainland and the surrounding regions, calculated the stress field in Chinese mainland and the surrounding regions, and analyzed the basic features of stress field in Chinese mainland and the principal driving force for the motion and deformation in Chinese mainland.
收集整理了已有GPS资料,建立了中国大陆及周边地区统一的速度场以及相对欧亚板块的水平形变场;建立了中国大陆一、二级地块整体旋转与均匀应变的运动模型;分析了中国大陆活动地块的运动状态,应变状态,以及中国大陆主要断裂带的运动状态;考虑到一个块体内部应变张量空间分布的非均匀性,假设块体内部的应变张量是位置的线性函数,推导建立了块体整体旋转与线性应变方程,建立了中国大陆主要地块整体旋转与线性应变的运动模型;计算了中国大陆及周边地区的主应变场与最大剪应变场,分析了中国大陆应变场的基本特征,以及应变场的空间分布与大型构造带的关系;建立了中国大陆及周边地区二维的地质构造模型和数值模型,计算了中国大陆及周边地区的应力场,分析了中国大陆应力场的基本特征以及中国大陆运动、形变的主要驱动力。
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This article analyses the application conditions of freezing method, current research status and the problems in this field. It points that it's necessary to study deep freezing temperature field deeply and discusses the factors which influence the freezing wall such as soil's nature, moisture content, geological conditions, etc. It introduces the theory, process of freezing method, the distribution of temperature field of freezing method and key thermotics parameters influencing freezing temperature field. It simplifies the deep freezing temperature field model. Through ANSYS, this article founds the deep freezing temperature field model, and simulates the field on vary heat conductivities. It analyzes the results of ANSYS simulation, gains the theoretical value of thermometric holes which is needed by back-analysis. Using the simulation temperature and actual value, it gets the equivalent heat conductivity. Then it solves the deep freezing temperature field by the equivalent value, simulates the freezing wall development process and temperature change curve. Against the actual project, the results are favorable.
文中分析了冻结法施工的应用条件,目前对冻结法施工的研究现状和在此领域内存在的问题,指出了对深土冻结温度场进行深入研究分析的必要性;对影响冻结壁形成发展的因素如冻土土性、含水量、地质条件及施工方法等因素进行了论述;对冻结法施工的原理、过程,冻结法温度场的分布情况,影响冻结温度场分布的主要热学参数进行了综述;对深土冻土温度场模型进行了合理的简化,通过ANSYS大型有限元分析软件,建立了深土冻结温度场的模型,对不同导热系数情况下的深土冻结温度场进行了模拟;对ANSYS的模拟结果进行了定性的分析,通过对ANSYS结果的后处理取得了反分析时需要用到的测温孔理论温度值;经过对测温孔模拟温度值和实测温度值的分析,得到了冻结温度场的等效导热系数;使用等效导热系数对深土冻结温度场进行了求解,模拟了冻结壁发展情况和温度场中的温度变化曲线,用所得结果对比工程实际情况,取得了较好的效果。
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The article discusses the basic principles of resource replacement at the beginning, that is, one resource has multi-purposes, and it can be divided as the important field, less important field and general field; the same need can be satisfied with different resources; related resources have cospecific field and independent field, and it can be divided as universal field, cospecific field, and independent field.
文章首先论述了资源替代的基本原理,即同种资源具有多种用途,可将其使用领域划分为重要领域、次要领域与一般领域;同时,同种需求可由不同的资源来满足。此外,资源的多用途性及满足同种用途资源多样化的特点,使相关资源之间在用途上存在共同的应用领域及独立应用领域,具体可将其分成资源的通用领域、共用领域和专用领域三种状况。
- 相关中文对照歌词
- L'unité
- Katie's Tea
- La Colline Des Roses
- Field Of Love
- La Dance Ghetto
- Karl Lagerfield
- Love Field
- We Do It In A Field
- Lovers' Field
- Da' Durty
- 推荐网络例句
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A carrier gas such as nitrogen is directed through line 20 and valve 22 to connect with line 26 and mix with the gas sample.
如氮气之类的载体通过管线20和阀22引入,与管线26相通,与气体样品混合。
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But for the most part, knaves and parasites had the command of his fortune
然而支配他的家产的大多是恶棍和寄生虫。
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For he that is now called a prophet, in time past was called a seer.
他们就往天主的人所住的城里去了。