بدائل البحث:
increase decrease » increased release (توسيع البحث), increased crash (توسيع البحث)
point decrease » point increase (توسيع البحث)
increase decrease » increased release (توسيع البحث), increased crash (توسيع البحث)
point decrease » point increase (توسيع البحث)
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1141
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1145
Activity of xylanase in mixed feed and liver (mg saccharide/g sample/h), n = 12/treatment.
منشور في 2024الموضوعات: -
1146
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1147
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1148
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1149
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1151
Summary of related studies.
منشور في 2024"…Additionally, the DBDAA introduces a primary unsafe sequence mechanism that enhances the acceptability and efficiency of the algorithm by allowing processes to participate in safety checks repeatedly after a predetermined amount of system-defined time. Experimental comparisons with existing algorithms demonstrate the superiority of the DBDAA in terms of reduced safe state prediction time and increased efficiency, making it a robust solution for deadlock avoidance in real-time systems.…"
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1152
Time complexity of different safety algorithms.
منشور في 2024"…Additionally, the DBDAA introduces a primary unsafe sequence mechanism that enhances the acceptability and efficiency of the algorithm by allowing processes to participate in safety checks repeatedly after a predetermined amount of system-defined time. Experimental comparisons with existing algorithms demonstrate the superiority of the DBDAA in terms of reduced safe state prediction time and increased efficiency, making it a robust solution for deadlock avoidance in real-time systems.…"
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1153
Process execution halted due to deadlock.
منشور في 2024"…Additionally, the DBDAA introduces a primary unsafe sequence mechanism that enhances the acceptability and efficiency of the algorithm by allowing processes to participate in safety checks repeatedly after a predetermined amount of system-defined time. Experimental comparisons with existing algorithms demonstrate the superiority of the DBDAA in terms of reduced safe state prediction time and increased efficiency, making it a robust solution for deadlock avoidance in real-time systems.…"
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1154
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1155
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1156
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1157
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1158
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1160
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
منشور في 2024"…We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"