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相关概念视频

¹H NMR: Long-Range Coupling01:27

¹H NMR: Long-Range Coupling

1.7K
The coupling interactions of nuclei across four or more bonds are usually weak, with J values less than 1 Hz. While these are usually not observed in spectra, the presence of multiple bonds along the coupling pathway can result in observable long-range coupling.
In alkenes, spin information is communicated via σ–π overlap, as seen in allylic (four-bond) and homoallylic (five-bond) couplings. These coupling interactions are stronger when the σ bond is parallel to the alkene...
1.7K
Spin–Spin Coupling: Two-Bond Coupling (Geminal Coupling)01:20

Spin–Spin Coupling: Two-Bond Coupling (Geminal Coupling)

974
Two NMR-active nuclei bonded to a central atom can be involved in geminal or two-bond coupling. Geminal coupling is commonly seen between diastereotopic protons in chiral molecules and unsymmetrical alkenes, among others.
The central atom need not be NMR-active because its electrons are affected by the electron polarization of the spin-active atoms. However, spin information is transmitted less effectively than in one-bond coupling, and 2J values are usually weaker than 1J values. The energy of...
974
Spin–Spin Coupling: Three-Bond Coupling (Vicinal Coupling)01:22

Spin–Spin Coupling: Three-Bond Coupling (Vicinal Coupling)

1.0K
Vicinal or three-bond coupling is commonly observed between protons attached to adjacent carbons. Here, nuclear spin information is primarily transferred via electron spin interactions between adjacent C‑H bond orbitals. This generally favors the antiparallel arrangement of spins, so 3J values are usually positive.
The extent of coupling depends on the C‑C bond length, the two H‑C‑C angles, any electron-withdrawing substituents, and the dihedral angle between the...
1.0K
Spin–Spin Coupling Constant: Overview01:08

Spin–Spin Coupling Constant: Overview

889
In bromoethane, the three methyl protons are coupled to the two methylene protons that are three bonds away. In accordance with the n+1 rule, the signal from the methyl protons is split into three peaks with 1:2:1 relative intensities. The methylene protons appear as a quartet, with the relative intensities of 1:3:3:1.
Qualitatively, any spin plus-half nucleus polarizes the spins of its electrons to the minus-half state. Consequently, the paired electron in the hydrogen–carbon bond must...
889
Magnetic Field Due to Two Straight Wires01:18

Magnetic Field Due to Two Straight Wires

2.4K
Consider two parallel straight wires carrying a current of 10 A and 20 A in the same direction and separated by a distance of 20 cm. Calculate the magnetic field at a point "P2", midway between the wires. Also, evaluate the magnetic field when the direction of the current is reversed in the second wire.
2.4K
Circular Shaft - Stresses in Linear Range01:13

Circular Shaft - Stresses in Linear Range

232
Consider a scenario where a circular shaft is subject to torque that remains within the boundaries of Hooke's Law, avoiding any permanent deformation. So, the formula for shearing strain is revisited. This formula is multiplied by the modulus of rigidity, and then Hooke's Law for the shearing stress and strain is applied. As a result, the equation for shearing stress in a shaft can be derived.
232

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Terahertz Microfluidic Sensing Using a Parallel-plate Waveguide Sensor
07:28

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Published on: August 30, 2012

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两个螺旋圆形波导的合.

Mingjie Cui, Zhuo Wang, Changyuan Yu

    Optics letters
    |November 1, 2024
    PubMed
    概括

    本研究探讨了使用有限元法 (FEM) 的光学波导合. 我们揭示了螺旋合圆形波导的新见解,包括模式交叉和不对称分布,扭转率增加.

    科学领域:

    • 光子学和波导技术 波导技术
    • 计算电磁学 计算机电磁学
    • 光学通信是指光学通信.

    背景情况:

    • 光学波导之间的合对于设备性能至关重要.
    • 之前的研究还没有完全探索螺旋波导合的复杂性.

    研究的目的:

    • 为了研究两个螺旋合的圆形波导的合特性.
    • 分析扭转率对模态行为和合的影响.
    • 用先进的数值方法发现波导合中的新奇现象.

    主要方法:

    • 使用有限元法 (FEM) 进行数值分析.
    • 采用螺旋形坐标系统进行准确的建模.
    • 模拟各种旋转对称情况来观察合行为.

    主要成果:

    • 确定了有效索引曲线中的交点,用于双重旋转对称的情况下,扭转率增加.
    • 连接模式的交叉点与螺旋路径长度的不同增长以及新出现的高阶波.
    • 随着扭转率的增加,观察到在单折旋转对称结构中的不对称模式分布,表明非等效合.

    结论:

    • 该研究提供了对螺旋波导的合的详细了解.

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  • 已经发现了新的现象,例如模式交叉和不对称合.
  • 研究结果为设计和优化先进光学波导器件提供了宝贵的见解.