• We have destructive interference here.

    这里是相消干涉。

    youdao

  • This situation is called destructive interference.

    这种情形称作相消干涉。

    youdao

  • In this case is it constructive or destructive interference?

    在这种情况是相长干涉还是相消干涉?

    youdao

  • What are the first two frequencies at which destructive interference occurs?

    前两个是什么在这毁坏性的干扰频率发作?

    youdao

  • So if we're subtracting the interference term, what we have here now is destructive interference.

    如果我们减去干涉项,我们得到的就是相消干涉。

    youdao

  • All right. So we see constructive interference, of course, we can also see destructive interference.

    好了,我们看到的是相长干涉,当然我们也会看到相消干涉。

    youdao

  • Just like we see destructive interference with water waves or with light waves, we can also see destructive interference with orbitals.

    就像我们看到水波,和光波的相消干涉,我们也可以看到轨道的相消干涉。

    youdao

  • But besides the many potential advantages of ultra-high field MRI, there are also some methodological challenges like the destructive interference of transmit RF fields within typical volume coil.

    此类超高场强MRI带来了许多可预见的优势,然而技术上的难题也随之产生,例如在一些特殊的线圈中RF发射场会产生相消性干涉现象。

    youdao

  • According to the SPR sensor has the much advantage of label-free detection, real-time monitoring, high-sensitivity, non-destructive, non-purified, and without background interference.

    基于SPR技术的传感器具有免标记、实时检测、灵敏度高、非破坏性、样品不需要纯化和抗背景干扰等优点。

    youdao

  • According to the SPR sensor has the much advantage of label-free detection, real-time monitoring, high-sensitivity, non-destructive, non-purified, and without background interference.

    基于SPR技术的传感器具有免标记、实时检测、灵敏度高、非破坏性、样品不需要纯化和抗背景干扰等优点。

    youdao

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