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  2. Hardware stress test - Wikipedia

    en.wikipedia.org/wiki/Hardware_stress_test

    Stress testing a CPU over the course of 24 hours at 100% load is, in most cases, sufficient to determine that the CPU will function correctly in normal usage scenarios such as in a desktop computer, where CPU usage typically fluctuates at low levels (50% and under).

  3. Overclocking - Wikipedia

    en.wikipedia.org/wiki/Overclocking

    The purpose of overclocking is to increase the operating speed of a given component. [3] Normally, on modern systems, the target of overclocking is increasing the performance of a major chip or subsystem, such as the main processor or graphics controller, but other components, such as system memory or system buses (generally on the motherboard), are commonly involved.

  4. CPU-bound - Wikipedia

    en.wikipedia.org/wiki/CPU-bound

    The term can also refer to the condition a computer running such a workload is in, in which its processor utilization is high, perhaps at 100% usage for many seconds or minutes, and interrupts generated by peripherals may be processed slowly or be indefinitely delayed. [citation needed]

  5. Stress testing - Wikipedia

    en.wikipedia.org/wiki/Stress_testing

    The wing was tested for a total of 47500 flights which is 2.5 times the number of flights in 25 years of operation. Each 16 hour flight took 11 minutes to simulate on the fatigue test rig. [3] Fatigue testing is a specialised form of mechanical testing that is performed by applying cyclic loading to a coupon or structure.

  6. Floating point operations per second - Wikipedia

    en.wikipedia.org/wiki/Floating_point_operations...

    The 80-core chip can raise this result to 2 teraFLOPS at 6.26 GHz, although the thermal dissipation at this frequency exceeds 190 watts. [ 40 ] In June 2007, Top500.org reported the fastest computer in the world to be the IBM Blue Gene/L supercomputer, measuring a peak of 596 teraFLOPS. [ 41 ]

  7. Amdahl's law - Wikipedia

    en.wikipedia.org/wiki/Amdahl's_law

    According to the law, even with an infinite number of processors, the speedup is constrained by the unparallelizable portion. In computer architecture , Amdahl's law (or Amdahl's argument [ 1 ] ) is a formula that shows how much faster a task can be completed when you add more resources to the system.

  8. Benchmark (computing) - Wikipedia

    en.wikipedia.org/wiki/Benchmark_(computing)

    A graphical demo running as a benchmark of the OGRE engine. In computing, a benchmark is the act of running a computer program, a set of programs, or other operations, in order to assess the relative performance of an object, normally by running a number of standard tests and trials against it.

  9. Frequency scaling - Wikipedia

    en.wikipedia.org/wiki/Frequency_scaling

    In computer architecture, frequency scaling (also known as frequency ramping) is the technique of increasing a processor's frequency so as to enhance the performance of the system containing the processor in question. Frequency ramping was the dominant force in commodity processor performance increases from the mid-1980s until roughly the end ...