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The stagnation temperature is mainly controlled by inject temperature, while inject pressure and ambient pressure do not affect it seriously.
With inject temperature rising from 310 K to 340 K, the stagnation pressure changes little and ambient temperature increases by 4.85%.
GC settings were: carrier gas: helium; column flow: 2.0 ml/min; splitless; inject temperature: 230°C The analyzing temperature program used was: 50-230°C 50-230°Cn; 230°C for 2 min.
The inject temperature was 150°C and the GC-MS transfer line temperature was 280°C, ion source 230°C, quadrupole 150°C.
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The oven temperature was controlled initially at 40°C for 4 min, then increased at the rate of 10°C per min to 250°C, and held for 15 min. The injecting temperature was set to 280°C with the injection volume of 1 μl under splitless injection conditions.
In our study, 56 primiparous or multiparous Large White and cross-bred sows, taking part in an experiment on injected temperature transponders and water intake [ 16], were investigated.
The FID detector temperature was 320°C and 1 μL was injected at an injection temperature of 250°C and a split level of 1 2.
The important parameters were as follows: well depth of 3,980 m, dominating radius of 88 m, initial reservoir pressure, Pi, of 40.8 MPa, casing pressure of 43.2 MPa, casing diameter of 14.6 cm, well spacing of 200 m, injection pressure, Pe, of 45 MPa, water injection rate of 150 m3, injection time of 5610 h, and injected water temperature of 18.5 °C.
Of the extract, 1 μl was injected; the inlet temperature was 230 °C.
Lower injected air temperatures also reduce the required storage volume, but increase the cooling costs.
F. novicida is lethal to mice, but when the researchers injected the temperature-sensitive strains, the animals didn't get sick and they were protected from an otherwise fatal dose of the unaltered F. novicida given 3 weeks later.
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