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The die set is designed to withstand fluid counter pressures up to 200 MPa.
This reactor operates with high power densities and at pressures up to 300 torr.
Our current actuator prototypes are able to operate at pressures up to 1.6 MPa without leakage.
Acoustic pressures up to 300 kPa and flow rates up to 18 mL/s were investigated.
Experiments were conducted in a 101.6 mm diameter column operating at pressures up to 6.5 MPa.
Under these conditions pressures up to 4666.4 kPa (676.8 psia) were obtained.
ATRP of methyl methacrylate (MMA) under pressures up to 500 MPa was investigated at 60 °C.
For leak tests at pressures up to 2000 psi, a standard nitrogen bottle was used and for higher pressures up to 10,000 psi, a boost pump was employed.
An experimental system was designed to stabilize steady counterflow methane diffusion flames at elevated pressures, up to 3 MPa.
Data are presented from tests using mineral oil at temperatures and pressures up to 140 °C and 10 bara, respectively.
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Wu et al. [9] investigated the elastic and thermodynamic properties of Ta at high-pressures up to 350 GPa.
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