memory compaction - ορισμός. Τι είναι το memory compaction
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Τι (ποιος) είναι memory compaction - ορισμός

PROCESS OF SINTERING METAL POWDERS
Powder compaction; Greenform; Infiltrated; Cold compaction; Axial powder compaction; Isostatic powder compaction; Axial Powder Compaction; Powder Metallurgy; Powdered metal; Powdered metals; Metallurgical powder; Powdered metallurgy
  • [[Iron powder]] is commonly used for [[sintering]]
  • Powder compaction press
  • [[Rhodium]] metal: powder, pressed pellet (3×10<sup>5</sup> psi) remelted.

Soil compaction         
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  • Vibratory rammer in action.
PROCESS IN GEOTECHNICAL ENGINEERING TO INCREASE SOIL DENSITY
Turf compaction; Compacted soil; Soil compactor; Vibro compaction
In geotechnical engineering, soil compaction is the process in which stress applied to a soil causes densification as air is displaced from the pores between the soil grains. When stress is applied that causes densification due to water (or other liquid) being displaced from between the soil grains, then consolidation, not compaction, has occurred.
memory management         
  • An example of external fragmentation
COMPUTER RESOURCE MANAGEMENT OF MEMORY, INVOLVING ALLOCATION AND DEALLOCATION
Memory allocation; Dynamic memory allocation; Heap-based memory allocation; Heap (programming); Heap-Based Memory Allocation; Dynamic storage; Dynamic Memory Allocation; Heap space; Heap management; Dynamic memory; HP-UX Memory Management; Allocation algorithms; Allocation Algorithms; Heap memory; Dynamic memory management; Heap compaction; Free store (programming); Free a memory location; Freeing memory; Allocate a memory location; Memory deallocation; Dynamic memory deallocation; Stack and heap; Memory allocator; Fixed-size blocks allocation; Fixed-size-blocks allocation; Deallocation; Free store (computing); Heap (memory management); Allocating and deallocating memory; Dynamically-allocated memory; Not enough memory; Insufficient memory; Memory usage; Heap memory allocation
<memory management, storage> A collection of techniques for providing sufficient memory to one or more processes in a computer system, especially when the system does not have enough memory to satisfy all processes' requirements simultaneously. Techniques include swapping, paging and virtual memory. Memory management is usually performed mostly by a hardware memory management unit. (1995-01-23)
Memory management         
  • An example of external fragmentation
COMPUTER RESOURCE MANAGEMENT OF MEMORY, INVOLVING ALLOCATION AND DEALLOCATION
Memory allocation; Dynamic memory allocation; Heap-based memory allocation; Heap (programming); Heap-Based Memory Allocation; Dynamic storage; Dynamic Memory Allocation; Heap space; Heap management; Dynamic memory; HP-UX Memory Management; Allocation algorithms; Allocation Algorithms; Heap memory; Dynamic memory management; Heap compaction; Free store (programming); Free a memory location; Freeing memory; Allocate a memory location; Memory deallocation; Dynamic memory deallocation; Stack and heap; Memory allocator; Fixed-size blocks allocation; Fixed-size-blocks allocation; Deallocation; Free store (computing); Heap (memory management); Allocating and deallocating memory; Dynamically-allocated memory; Not enough memory; Insufficient memory; Memory usage; Heap memory allocation
Memory management is a form of resource management applied to computer memory. The essential requirement of memory management is to provide ways to dynamically allocate portions of memory to programs at their request, and free it for reuse when no longer needed.

Βικιπαίδεια

Powder metallurgy

Powder metallurgy (PM) is a term covering a wide range of ways in which materials or components are made from metal powders. PM processes can reduce or eliminate the need for subtractive processes in manufacturing, lowering material losses and reducing the cost of the final product.

Powder metallurgy is also used to make unique materials impossible to get from melting or forming in other ways. A very important product of this type is tungsten carbide (WC). WC is used to cut and form other metals and is made from WC particles bonded with cobalt. It is very widely used in industry for tools of many types and globally ~50,000 tonnes/year (t/y) is made by PM. Other products include sintered filters, porous oil-impregnated bearings, electrical contacts and diamond tools.

Since the advent of industrial production–scale metal powder–based additive manufacturing (AM) in the 2010s, selective laser sintering and other metal AM processes are a new category of commercially important powder metallurgy applications.