Cooling Baths

Cooling baths are temperature-controlled mixtures used to remove heat from chemical reactions, samples, or equipment, helping maintain conditions that improve safety and reproducibility. They work through thermal contact between the reaction vessel and a cold medium; melting or sublimation can absorb latent heat, while the bath’s composition and phase equilibrium determine its achievable temperature and stability. In chemistry, cooling baths control exothermic reactions, slow temperature-sensitive processes, promote crystallization, and support low-temperature distillation or sample handling. Selecting an appropriate bath and monitoring its temperature helps prevent runaway reactions, product degradation, and inconsistent experimental results.

Cooling Baths - Related Videos

Education

JoVE Core - Chemistry

Heating and Cooling Curves

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2020

When a substance—isolated from its environment—is subjected to heat changes, corresponding changes in temperature and phase of the substance is observed; this is graphically represented by heating and cooling curves. For instance, the addition of heat raises the temperature of a solid; the amount of heat absorbed depends on the heat capacity of the solid (q = mcsolidΔT). According to thermochemistry, the relation between the amount of heat absorbed or released by a substance, q, and its...

Research

JoVE Journal - Biology
Free Sample

Measurement of Smooth Muscle Function in the Isolated Tissue Bath-applications to Pharmacology Research

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Cited by 68 •

2015

This protocol describes the measurement of isometric contraction in an isolated smooth muscle preparation, using an isolated tissue bath system and computer-based data acquisition.

Reversible Cooling-induced Deactivations to Study Cortical Contributions to Obstacle Memory in the Walking Cat

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Cited by 3 •

2017

Complex locomotion in naturalistic environments requiring careful coordination of the limbs involves regions of the parietal cortex. The following protocol describes the use of reversible cooling-induced deactivation to demonstrate the role of parietal area 5 in memory-guided obstacle avoidance in the walking cat.

Cooling an Optically Trapped Ultracold Fermi Gas by Periodical Driving

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Cited by 1 •

2017

We present a parametric driving method to cool an ultracold Fermi gas in a crossed-beam optical dipole trap. This method selectively removes high-energy atoms from the trap by periodically modulating the trap depth with frequencies that are resonant with the anharmonic components of the trapping potential.

Ice Generation and the Heat and Mass Transfer Phenomena of Introducing Water to a Cold Bath of Brine

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Cited by 1 •

2017

Here, we present a protocol to demonstrate the generation of ice when water is introduced to a cold bath of brine, as a secondary refrigerant, at a range of temperatures well below the freezing point of water. It can be used as an alternative way of producing ice for industry.

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