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The hydrolysis starts with the enzyme PI 4-kinase alpha converting PI into PI 4-phosphate , which is then converted into PI (4,5) biphosphate (PI(4,5)P 2) by the enzyme PI 4-phosphate-5-kinase . PI(4,5)P 2 is then hydrolysed by phospholipase C ( PLC ) and forms the second messengers, inositol (1,4,5) triphosphate ( IP 3 ) and diacylglycerol ( DG ).
The basic quantities describing a sphere (meaning a 2-sphere, a 2-dimensional surface inside 3-dimensional space) will be denoted by the following variables r {\displaystyle r} is the radius, C = 2 π r {\displaystyle C=2\pi r} is the circumference (the length of any one of its great circles ),
More formulas of this nature can be given, as explained by Ramanujan's theory of elliptic functions to alternative bases. Perhaps the most notable hypergeometric inversions are the following two examples, involving the Ramanujan tau function τ {\displaystyle \tau } and the Fourier coefficients j {\displaystyle \mathrm {j} } of the J-invariant ...
IBM System/4 Pi, a family of avionics computers 4Pi microscope , a microscope that uses interference and fluorescence computers 4×π = 12.56637..., the solid angle of a complete sphere measured in steradians
A sphere of radius r has surface area 4πr 2.. The surface area (symbol A) of a solid object is a measure of the total area that the surface of the object occupies. [1] The mathematical definition of surface area in the presence of curved surfaces is considerably more involved than the definition of arc length of one-dimensional curves, or of the surface area for polyhedra (i.e., objects with ...
(In geometry, the term sphere properly refers only to the surface, so a sphere thus lacks volume in this context.) For an ordinary three-dimensional ball, the SA:V can be calculated using the standard equations for the surface and volume, which are, respectively, S A = 4 π r 2 {\displaystyle SA=4\pi {r^{2}}} and V = ( 4 / 3 ) π r 3 ...
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Molecular geometry influences several properties of a substance including its reactivity, polarity, phase of matter, color, magnetism and biological activity. [1] [2] [3] The angles between bonds that an atom forms depend only weakly on the rest of molecule, i.e. they can be understood as approximately local and hence transferable properties.
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