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Possible effects of EFAs in the pain situation on endocrine, immunological, and opiate molecules. Solid line indicates a stimulatory effect broken line indicates an inhibitory effect.

Possible effects of EFAs in the stress situation on endocrine, immunological, and opiate molecules. Solid line indicates a stimulatory effect broken line indicates an inhibitory effect.

Possible Effects of Foam on Gas Steam Flow in a Porous Medium.

Possible effects of n bonding on Aoi when ligand n orbitals are filled.

Possible effects of n bonding on AqI when ligand n orbitals are filled.

Possible effects of nitric oxide on the mitochondrial respiratory chain, Krebs cycle, and glycolysis. NO- induces H-RAS activation and activated H-RAS , thus favoring the reduction of pyruvate to lactate

Possible effects of processing a surface skin morphology is formed. An isotropic microstructure can be observed in the center core interior. Adopted with permission from

Possible effects of removal of cholesterol from erythrocyte membrane by diethyl ether .

Possible effects of stress and composition listed using invariants . For a two-component material, effects on the joint behavior of the two components are shown in row 2, and effects on the interdiffiision of components are shown in row 3.

Possible effects on curvature of a plane interfacial film when foreign molecules are inserted, This can be compensated during chain swelling by oil molecules

Possible effects that animal viruses may have on cells they infect, humans has, in most cases, been uncertain. It is difficult to prove the viral origin of a human cancer because of the difficulties of carrying out the necessary experimentation. However, it is now well established that certain specific kinds of human tumors do have a viral origin. A summary of some of the human cancers with definite viral origins is given in Table.

Possible Electrochemical Oxidation Path for PC

Possible electrochemical reactions at a corrosion fatigue crack tip.

Possible electron and heavy particle trajectories.

Possible electron arrangements in the split 3d orbitals in an octahedral complex of Co , the electrons occupy all five orbitals before any pairing occurs.

Possible electron bifurcation mechanism at the Qp site. See text for details.

Possible electron transfer mechanism for NOS utilizing a pterin radical. The oxy-complex in 2 is shown as the ferric -superoxide complex. The role of the pterin then is to donate an electron to the iron, thus giving the peroxy dianion in 3. The dianion is a potent base that abstracts a proton from the substrate, giving 4. The system is now set up for a peroxidase-like heterolytic cleavage of the 0-0 bond to give the active hydroxylating intermediate in 5 and, finally, the first product in 6.

Possible electron transition schemes in EuSe.

Possible electron-pair arrangements for Xep4. Since arrangement , where the lone pairs are at 180 degrees.

Possible electron-transfer pathway between the hemes of CCp and yeast cyt c determined from the X-ray crystal structure of the protein-protein complex.

Possible electronic circuit for deriving one-dimensional position information from a position-sensitive detector with a resistive strip anode. The two charges Q, and Q2 on the ends of the anode are amplified, shaped and converted to a digital signal. The mathematical operations of Q Qt Q2 and Q2 Qj are performed electronically, and the result is stored in a histogramming memory from which it is read into the computer. Q2 Q carries the information first that an electron has been detected and second at which position this electron has hit the detector. From .

Possible electronic transitions between bonding, antibonding, and nonbonding molecular orbitals.

Possible electronic transitions in the semiconducting clusters. SE and ME transitions can occur in all the systems and conductions band transitions, become possible when the material is modified from the ideal cluster. Combinations of IB and SE ME transitions can also occur.

Possible electronic transitions of 7t, cr, and n electrons.

Possible elemental process behind dehydrogenative double phosphinylation



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