physical identifier - definição. O que é physical identifier. Significado, conceito
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O que (quem) é physical identifier - definição

ATTRIBUTE OF A PHYSICAL SYSTEM OR BODY; OR NON-CHEMICAL PROPERTY OF A MATERIAL
Physical properties; Physical Property; Property (physical)

Unique identifier         
IDENTIFIER WHICH IS UNIQUE AND PERMANENT WITHIN A SUBSET OF SPACE AND TIME
Unique Identification Number; Unique identifiers; Unique Identifier(UID); Unique Object Identifier; Unique identifying code
A unique identifier (UID) is an identifier that is guaranteed to be unique among all identifiers used for those objects and for a specific purpose. The concept was formalized early in the development of Computer science and Information systems.
CLSID         
128-BIT NUMBER USED TO IDENTIFY INFORMATION IN COMPUTER SYSTEMS
GUID; Globally unique identifier; UUID; Clsid; Guid; CLSID; Uuid; REFIID; UUIDs; Globally Unique Identifier; Universally Unique Identifier; Libuuid; CUID; Cuid; Universal unique identifier; Globally unique universal identifier; Globally unique; Universally unique
CLasS IDentifier (Reference: COM)
Guid         
128-BIT NUMBER USED TO IDENTIFY INFORMATION IN COMPUTER SYSTEMS
GUID; Globally unique identifier; UUID; Clsid; Guid; CLSID; Uuid; REFIID; UUIDs; Globally Unique Identifier; Universally Unique Identifier; Libuuid; CUID; Cuid; Universal unique identifier; Globally unique universal identifier; Globally unique; Universally unique
·noun A flower. ·see Gold.

Wikipédia

Physical property

A physical property is any property that is measurable, whose value describes a state of a physical system. The changes in the physical properties of a system can be used to describe its changes between momentary states. Physical properties are often referred to as observables. They are not modal properties. A quantifiable physical property is called physical quantity.

Physical properties are often characterized as intensive and extensive properties. An intensive property does not depend on the size or extent of the system, nor on the amount of matter in the object, while an extensive property shows an additive relationship. These classifications are in general only valid in cases when smaller subdivisions of the sample do not interact in some physical or chemical process when combined.

Properties may also be classified with respect to the directionality of their nature. For example, isotropic properties do not change with the direction of observation, and anisotropic properties do have spatial variance.

It may be difficult to determine whether a given property is a material property or not. Color, for example, can be seen and measured; however, what one perceives as color is really an interpretation of the reflective properties of a surface and the light used to illuminate it. In this sense, many ostensibly physical properties are called supervenient. A supervenient property is one which is actual, but is secondary to some underlying reality. This is similar to the way in which objects are supervenient on atomic structure. A cup might have the physical properties of mass, shape, color, temperature, etc., but these properties are supervenient on the underlying atomic structure, which may in turn be supervenient on an underlying quantum structure.

Physical properties are contrasted with chemical properties which determine the way a material behaves in a chemical reaction.