降伏系數 的英文怎麼說

中文拼音 [jiàngshǔ]
降伏系數 英文
yield; factor
  • : 降動詞1. (投降) surrender; capitulate 2. (降伏) subdue; vanquish; tame
  • : Ⅰ動詞1 (身體向前靠在物體上; 趴) bend over; lie prostrate 2 (低下去) subside; go down 3 (隱藏...
  • : 系動詞(打結; 扣) tie; fasten; do up; button up
  • : 數副詞(屢次) frequently; repeatedly
  • 降伏 : subdue; vanquish; tame
  • 系數 : [數學] coefficient; ratio; modulus; quotient; factor
  1. The molecules do not layered. they can slide up and down, left and right, forward and backward. they hold parallel or nearly parallel in the long axis orientation of the molecules

    I在v 0、 v 1時,液晶的雙折射率隨著溫度的升高基本是線性下,熱光也在一中。
  2. The investigation on mppt of solar cell the majority of photovoltaic systems produced in the factories are widely equipped with constant voltage tracker ( cvt ) instead of maximal power point tracker ( mppt ) for tracking the maximal power output of solar cell array

    出於製造方便及統成本的因素,世界上大多國家的光統產品迄今仍採用恆定電壓跟蹤器( cvt ) ,以代替真正的最大功率跟蹤器( mppt ) 。
  3. In this thesis, based on this kind of application, we made theoretical analysis and engineering practice on high - precision lfmcw and its signal processing millimeter wave broadband lfmcw radar has quite high theoretical range - precision and distance resolution, however, for the real radar system, the nonideal parameter of its transmitting signal, such as power fluctuation and the nonlinearity in frequency sweep, will result in the decreasing of the practical rang - precision and the distance resolution of radar

    本文基於這一應用對高精度lfmcw測距雷達及其信號處理進行了理論分析和工程實踐。毫米波寬帶lfmcw雷達具有很高的理論測距精度和距離分辨力,但對于實際的雷達統,其發射信號的非理想參-掃頻功率起和掃頻非線性,將使得雷達的實際測距精度和距離分辨力下
  4. The structure and character of deformable mirror were analyzed, and the conflict between the deformation band and the pitch of deformable cells was pointed out. the " two - time compensation " wave - front correct mode was introduced to settle that conflict. the method for allocating wave - front aberration and designing static corrector was found, and the " two - time compensation " wave - front correct mode was validated by simulation

    分析了變形鏡的結構特點,初步給出了變形鏡本身驅動單元與校正量之間的制約關;引入「二次補償」波前校正方案,解決了變形鏡校正量有限與高功率固體激光統波前誤差起量大的矛盾,建立了波前校正對象優化分配、靜態校正器優化設計等細節過程所需要的方法,通過模擬模擬驗證了「二次補償」波前校正方案對于低變形鏡校正量要求和放寬光學元件加工精度的作用; 5
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