Asymmetric Stretching

Asymmetric stretching is a molecular vibration in which chemically similar bonds, such as those in a functional group, lengthen and shorten out of phase, making it an important feature of infrared spectroscopy. During this motion, one bond may elongate while another contracts, often producing a changing dipole moment that allows the molecule to absorb infrared radiation at a characteristic frequency. Chemists use asymmetric stretching bands to identify functional groups, interpret molecular structure, and distinguish related compounds in infrared spectra. Comparing these bands with symmetric stretching and other vibrational modes supports qualitative analysis and helps connect spectral patterns with bonding, geometry, and molecular environment.

Asymmetric Stretching - Related Videos

Research

JoVE Journal - Engineering

Microfluidic Imaging Flow Cytometry by Asymmetric-detection Time-stretch Optical Microscopy (ATOM)

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Cited by 5 •

2017

This protocol describes the implementation of an asymmetric-detection time-stretch optical microscopy system for single-cell imaging in ultrafast microfluidic flow and its applications in imaging flow cytometry.

Asymmetric Walkway: A Novel Behavioral Assay for Studying Asymmetric Locomotion

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Cited by 4 •

2016

Here, we present a protocol to quantify precise stepping in rodents. Cortical and the spinal central pattern generator signals are required for precise foot-placement during obstructed locomotion. We report here the novel constrained walking task that directly examines precise stepping behavior.

Live Cell Imaging during Mechanical Stretch

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Cited by 12 •

2015

A novel imaging protocol was developed using a custom motor-driven mechanical actuator to allow the measurement of real time responses to mechanical strain in live cells. Relevant to mechanobiology, the system can apply strains up to 20% while allowing near real-time imaging with confocal or atomic force microscopy.

Education

JoVE Core - Physics

Rotation of Asymmetric Top

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2023

By definition, a spherically symmetric body has the same moment of inertia about any axis passing through its center of mass. This situation changes if there is no spherical symmetry. Since most rigid bodies are not spherically symmetric, these require special treatment. The relationship between the angular momentum of any rigid body and its angular velocity, both of which are vectors, involves the moment of inertia. The moment of inertia is a scalar quantity only for spherically symmetric...

Stretching Micropatterned Cells on a PDMS Membrane

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Cited by 6 •

2014

This manuscript presents a technique to apply or release forces on adherent cells or tissues using unidirectional stretching.

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