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Cycling control

Control of trav and compartment equipment is usually maintained by control of the circulating-air temperature (and humidiy) and rarely by solids temperature. On vacuum units, control of the absolute pressure and heating-medium temperature is utihzed. In direct dryers, cycle controllers are frequently employed to vary the air temper-... [Pg.1190]

Cycle Control Valves are the heart of cycle control for cyclic adsorption systems. These on/off valves switch flows among beds so... [Pg.1551]

One control cycle (control diet) then one cycle on diet supplemented with 60 g Arcon F (n = 5)... [Pg.125]

Lowen.stein, J. M., ed., 1969. Citric Acid Cycle Control and Compartmentation. New York Marcel Dekker. [Pg.672]

Boiler selection Although not directly concerned with controls, the sizing of boilers is very important. There is a tendency for oversizing with consequent unnecessary cycling. Controls should ensure that if more than one boiler is installed then one boiler should act as lead . Consideration should be given to a higher-efficiency boiler, possibly a condensing type. [Pg.279]

Cell Cycle Control. Figure 1 Cell cycle regulation by Cyclin dependent kinases (CDKs). Different cyclins bound to different CDKs promote the transition from one cell cycle phase into another. CDK-dependent phosphorylation of Rb is required to release active E2F transcription factors, which promotes entry into S phase. [Pg.341]

Cell Cycle Control. Figure 3 The DNA damage checkpoint. In response to DNA damage cells activate p53 dependent and independent checkpoint pathways leading to cell cycle arrest at G1/S and G2/M allowing DNA repair. If the cellular damage cannot be repaired, cells can initiate apoptosis. [Pg.344]

Cell Cycle Control Diabetes Mellitus Retinoids... [Pg.945]

Since the SUMO pathway affects multiple pathways ranging from transcription, DNA repair, and intracellular trafficking over cell signaling and cell cycle control to basic metabolism, it is not suiprising that links to diseases and viral assaults are emerging. However, the field is not yet at a stage sufficiently developed for pharmacological intervention. Below we will describe selected examples for links of the SUMO pathway to diseases and viral functions. [Pg.1166]

Cell Adhesion Molecules Cell-cycle Arrest Cell Cycle Checkpoints Cell Cycle Control Cell Division Cycle Cell Multiplication Cell Proliferation Cellular Immmunity Central Core Disease (CCD)... [Pg.1488]

For more details on carbonate-cycle control limits, see Table 10.3. These control limits are for non-highly rated boilers and assume that modem polymeric sludge conditioners are employed (i.e., not starches, agar, etc., which tend to form colloidal suspensions and may be difficult to remove by BD). [Pg.417]


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Adsorption cycle control

CeU cycle control

Cell Cycle Control

Cell Cycle Control of DNA Replication

Cell cycle checkpoint control

Cell cycle temporal control

Cell-cycle and Checkpoint Control

Cell-cycle control system

Citric acid cycle citrate synthase, control

Citric acid cycle control

Citric acid cycle control points

Control of Selectivity through Kinetic Coupling between Heterogeneous Catalytic Cycles

Control of citric acid cycle

Control systems life cycle costs

Controlled variable cycling

Controller cycle time

Genes controlling the cell cycle

Life cycle stages process control

Menstrual cycle control

Metabolism control by substrate cycles

Nitrogen cycle control

Principles of Cell Cycle Control

Process control controlled-cycling operation mode

Process cycle controller

Quality control improvement cycle

The cell division cycle and its control

Tricarboxylic acid cycle control

Urea cycle control

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