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Σύντομη ζωή δυναμικός Ενδοξος recalibration of gap test pachman Διαφανής αντιστέκομαι Αλλα μέρη

Characterization of the Detonation Pressure of a PETN Based PBX with the  Optical Active Method - Quaresma - 2021 - Propellants, Explosives,  Pyrotechnics - Wiley Online Library
Characterization of the Detonation Pressure of a PETN Based PBX with the Optical Active Method - Quaresma - 2021 - Propellants, Explosives, Pyrotechnics - Wiley Online Library

PDF) Improved experimental procedure for the large scale gap-test
PDF) Improved experimental procedure for the large scale gap-test

PDF) Improved experimental procedure for the large scale gap-test
PDF) Improved experimental procedure for the large scale gap-test

Jiri PACHMAN | Professor (Associate) | associate professor | University of  Pardubice, Pardubice | Institute of Energetic Materials | Research profile
Jiri PACHMAN | Professor (Associate) | associate professor | University of Pardubice, Pardubice | Institute of Energetic Materials | Research profile

A flexible MEMS ionization-conducted probe sensor for evaluating detonation  velocity of microcharges - ScienceDirect
A flexible MEMS ionization-conducted probe sensor for evaluating detonation velocity of microcharges - ScienceDirect

PDF) Calibrating Time-Use Estimates for the British Household Panel Survey
PDF) Calibrating Time-Use Estimates for the British Household Panel Survey

Numerical Modelling of Shock Initiation of a HNIW‐Based Explosive - Lee -  2020 - Propellants, Explosives, Pyrotechnics - Wiley Online Library
Numerical Modelling of Shock Initiation of a HNIW‐Based Explosive - Lee - 2020 - Propellants, Explosives, Pyrotechnics - Wiley Online Library

Analysis on shock attenuation in gap test configuration for characterizing  energetic materials
Analysis on shock attenuation in gap test configuration for characterizing energetic materials

PDF) Improved experimental procedure for the large scale gap-test
PDF) Improved experimental procedure for the large scale gap-test

PDF) Improved experimental procedure for the large scale gap-test
PDF) Improved experimental procedure for the large scale gap-test

Jiri PACHMAN | Professor (Associate) | associate professor | University of  Pardubice, Pardubice | Institute of Energetic Materials | Research profile
Jiri PACHMAN | Professor (Associate) | associate professor | University of Pardubice, Pardubice | Institute of Energetic Materials | Research profile

Analysis on shock attenuation in gap test configuration for characterizing  energetic materials
Analysis on shock attenuation in gap test configuration for characterizing energetic materials

Jiri PACHMAN | Professor (Associate) | associate professor | University of  Pardubice, Pardubice | Institute of Energetic Materials | Research profile
Jiri PACHMAN | Professor (Associate) | associate professor | University of Pardubice, Pardubice | Institute of Energetic Materials | Research profile

SPRO74 78 94 98 Series J PDF | PDF | Printer (Computing) | Electronic  Component
SPRO74 78 94 98 Series J PDF | PDF | Printer (Computing) | Electronic Component

Properties and Promise of Catenated Nitrogen Systems As High-Energy-Density  Materials | Chemical Reviews
Properties and Promise of Catenated Nitrogen Systems As High-Energy-Density Materials | Chemical Reviews

Analysis on shock attenuation in gap test configuration for characterizing  energetic materials
Analysis on shock attenuation in gap test configuration for characterizing energetic materials

PDF) Analysis on shock attenuation in gap test configuration for  characterizing energetic materials
PDF) Analysis on shock attenuation in gap test configuration for characterizing energetic materials

PDF) Improved experimental procedure for the large scale gap-test
PDF) Improved experimental procedure for the large scale gap-test

Analysis on shock attenuation in gap test configuration for characterizing  energetic materials
Analysis on shock attenuation in gap test configuration for characterizing energetic materials

Numerical Modelling of Shock Initiation of a HNIW‐Based Explosive
Numerical Modelling of Shock Initiation of a HNIW‐Based Explosive