• 最大的旁瓣峰值衰减速度D。

    Maximum attenuating speed D of side lobe peak value.

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  • 岩层产状也将直接影响孔隙级水的衰减速度。

    The stratigraphic occurrence will also influence the release velocity of pore water directly.

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  • 偶相干态光场中原子布居数反转的衰减速度较慢;

    The value of atomic population inversion in a Yurke-Stoler coherent state is between them.

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  • 当环数增加时,过渡带衰减速度变快,通带形状更接近方形。

    And a square passband shape was achieved for the larger ring number and the faster transition attenuation.

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  • 这样就改变了GPS信号的传播,减小了地球底层轨道上空间碎块的衰减速度。

    This altered the propagation of GPS signals and slowed the rate of decay of space debris in low Earth orbit.

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  • 另外电解质的氧化也呈加速趋势,加快了高电位平台放电容量的衰减速度。

    In addition, the fading rate of discharge capacity at the upper voltage plateau is also increased by the accelerating trend of electrolyte oxidation.

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  • 接收概率衰减速度的调节可以控制混沌退火的速度,从而影响网络的收敛速度。

    Adjusting the probability of acceptance could control the speed of chaos simulated annealing, and influence the rate of convergence.

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  • 整体能量衰减速度减慢,并提出周期型、弧线形、直线型三种能量的衰减模式;

    Energy decreases slows down and extracting three kinds of decay mode: cycle type, arc-shaped, linear type;

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  • 实验表明,顺磁离子能加快水相的核磁共振弛豫衰减速度,而对油相信号没有影响。

    These experiments illustrate that paramagnetic ions imbibed in rock brine can shorten the relaxation time of the water protons, but can't effect the relaxation time of oil protons.

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  • 提出了一种无需施加磁场、利用发射电流衰减速度测量真空开关灭弧室真空度的新方法。

    A new method is presented for measurement of internal pressure of vacuum interrupters, having no use of magnetic fields but using decay velocity of emission current.

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  • 材料的静电电荷衰减速度反映了其静电泄漏性能,所以可以用电荷衰减时间来评价材料的防静电性能。

    The electrostatic charge attenuation velocity of material reflects its leaking performance, electrostatic charge attenuation time is used to evaluate anti-electrostatic performance of material.

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  • 科学家曾预测CHAMPs会有强烈的不同寻常的衰减现象,因为它们衰减速度比很多亚原子粒子慢很多。

    They are expected to have an unusual decay signature, and a strong one, since they decay much more slowly than many subatomic particles.

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  • 科学家曾预测CHAMPs会有强烈的不同寻常的衰减现象,因为它们衰减速度比很多亚原子粒子慢很多。

    They are expected to have an unusual decay signature, and a strong one, since they decay much more slowly than many subatomic particles.

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