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FM 6-22 Leader Development "The tenets of Army leader development provide the essential principles that have made the Army successful at developing its leaders." FM 1, The Army – "establishes the fundamental principles for employing landpower." Together, it and FM 3–0 are considered by the U.S. Army to be the "two capstone doctrinal manuals."
This manual supersedes FM 3-0, dated 6 October 2017. James C. McConville: INACTIVE: ADP 3–0 (FM 3–0) ADP 3–0, Unified Land Operations: 10 October 2011 [13] This manual supersedes FM 3–0, dated 27 February 2008 and Change 1, dated 22 February 2011. Raymond T. Odierno: INACTIVE: FM 3–0 (incl. C1) FM 3–0, Operations (with included ...
The Army Publishing Directorate (APD) supports readiness as the Army's centralized publications and forms management organization. APD authenticates, publishes, indexes, and manages Department of the Army publications and forms to ensure that Army policy is current and can be developed or revised quickly.
The net reaction for the overall process of glycolysis is: [6] Glucose + 2 NAD+ + 2 P i + 2 ADP → 2 pyruvate + 2 ATP + 2 NADH + 2 H 2 O. Steps 1 and 3 require the input of energy derived from the hydrolysis of ATP to ADP and P i (inorganic phosphate), whereas steps 7 and 10 require the input of ADP, each yielding ATP. [7]
Phosphorylation takes place in step 3, where fructose-6-phosphate is converted to fructose 1,6-bisphosphate. This reaction is catalyzed by phosphofructokinase . While phosphorylation is performed by ATPs during preparatory steps, phosphorylation during payoff phase is maintained by inorganic phosphate.
Substrate-level phosphorylation exemplified with the conversion of ADP to ATP. Substrate-level phosphorylation is a metabolism reaction that results in the production of ATP or GTP supported by the energy released from another high-energy bond that leads to phosphorylation of ADP or GDP to ATP or GTP (note that the reaction catalyzed by creatine kinase is not considered as "substrate-level ...
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Adenosine diphosphate ribose (ADPR) is an ester molecule formed into chains by the enzyme poly ADP ribose polymerase. [1] ADPR is created from cyclic ADP-ribose (cADPR) by the CD38 enzyme using nicotinamide adenine dinucleotide (NAD +) as a cofactor. [1] ADPR binds to and activates the TRPM2 ion channel. [2] ADPR is the most potent agonist of ...