CCITT Group 4 - définition. Qu'est-ce que CCITT Group 4
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Qu'est-ce (qui) est CCITT Group 4 - définition

GROUP OF CHEMICAL ELEMENTS
Titanium family; Group 4 elements; User:Double sharp/Group 4 element; Titanium group; Group 4 (periodic table)

Group 4 compression         
BITSTREAM ENCODING FORMAT FOR STILL IMAGES
CCITT Group IV; CCITT Group 4; Modified Modified READ
CCITT Group 4 compression, also referred to as G4 or Modified Modified READ (MMR), is a lossless method of image compression used in Group 4 fax machines defined in the ITU-T T.6 fax standard.
Group 4 element         
Group 4 is the second group of transition metals in the periodic table. It contains the four elements titanium (Ti), zirconium (Zr), hafnium (Hf), and rutherfordium (Rf).
NASA Astronaut Group 4         
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ASTRONAUTS SELECTED BY NASA IN JUNE 1965
Astronaut Group 4
NASA Astronaut Group 4 ("The Scientists") was a group of six astronauts selected by NASA in June 1965. While the astronauts of the first two groups were required to have an undergraduate degree or the professional equivalent in engineering or the sciences (with several holding advanced degrees), they were chosen for their experience as test pilots.

Wikipédia

Group 4 element

Group 4 is the second group of transition metals in the periodic table. It contains the four elements titanium (Ti), zirconium (Zr), hafnium (Hf), and rutherfordium (Rf). The group is also called the titanium group or titanium family after its lightest member.

As is typical for early transition metals, zirconium and hafnium have only the group oxidation state of +4 as a major one, and are quite electropositive and have a less rich coordination chemistry. Due to the effects of the lanthanide contraction, they are very similar in properties. Titanium is somewhat distinct due to its smaller size: it has a well-defined +3 state as well (although +4 is more stable).

All the group 4 elements are hard, refractory metals. Their inherent reactivity is completely masked due to the formation of a dense oxide layer that protects them from corrosion, as well as attack by many acids and alkalis. The first three of them occur naturally. Rutherfordium is strongly radioactive: it does not occur naturally and must be produced by artificial synthesis, but its observed and theoretically predicted properties are consistent with it being a heavier homologue of hafnium. None of them have any biological role.