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Increasing temperatures directly raise body temperature, and increased humidity slows cooling of the body by decreasing sweat evaporation.
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Slow cooling rates after deposition (2 °C min− 1) prevented film delamination under this applied load.
Slow cooling from the freezing range results in a reduced amount of retained austenite and improved toughness properties.
Slow cooling after sintering, down to 900 °C, induced B-site ordering which increased the dielectric Q values.
Slow cooling at room temperature yields the θ polymorph in powder form (Schmidt & Mehltretter, 2006 ▶).
Slow cooling to 25 °C followed by a CD scan at 222 nm to assess the presence of secondary structures demonstrated that PIR1-C152S-coreFED PIR1-C152S-coreFED PIR1-C152S-coreFED
Samples were heated into the fully β phase condition and then slow cooled to allow diffusional transformation to α.
The reactions were heated at 90°C for 10 min and then slow cooled to room temperature.
IVT RNA was denatured at 65°C for 5 min and then slow-cooled to 4°C.
Ciotti et al. [ 68] also reported that spindle recovery was faster in vitrified oocytes compared to slow cooled ones [ 68].
For annealing, LEAD60 and 3BTNLAG20 were mixed in equimolar amounts, briefly heated to 95°C and slow-cooled to 4°C.
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