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B D Gardner

Publications and source records attributed to B D Gardner.

3 recordsLinked to original sources

Simple geometry gridless ion mirror.

A gridless variation of the cylindrical ion mirror has been designed to create an electric field that is nonlinear in the axial direction and nearly homogeneous in the radial direction. The designs may include one or two chambers that consist of truncated cones. This new design concept yields ion mirrors with improved energy focusing over conventional single-field and multiple-field mirrors. Conventionally, ion mirrors with nonlinear field gradient use multiple diaphragm electrodes to which distinct voltages are applied. In this work, optimized nonlinear field distributions are achieved through shaping only two or three electrodes and applying only one or two voltages on the electrodes. The designs presented here offer high resolving power and low ion dispersion. SIMION simulations of performance from the ion source to the detector demonstrate resolving powers of 11,000 and 1,750 for ions with kinetic energy variations of 7.5% and 23.6%, respectively.

Chemical Phenomena↗

Benefits management beyond the adding machine: using integrated, worker-specific analysis.

Modern employee benefits practices have not taken advantage of modern information technology largely because of an implicit reliance on "adding machine" approaches to health care benefits. This article argues that an integrated, worker-specific approach to benefits management is needed in a modern benefits environment. Quantitative illustrations of the integrated approach are provided in terms of a benefits Pareto analysis. The empirical results presented suggest that human resource/risk management practices can have a significant impact on worker benefits costs.

Actuarial Analysis↗

Regulation of fatty acid biosynthesis in rats by physical training.

Physical training in the form of long-term nonexhaustive daily exercise was studied as a means of regulating fatty acid biosynthesis. Male rats were required to swim for periods up to 90 min/day. The exercise was carried out 6 days/wk for approximately 11 wk. Hepatic fatty acid biosynthesis and acetyl-CoA carboxylase [acetyl-CoA: CO2 ligase (EC 6.4.1.2)] activities were compared with nonexercised rats. At the end of the training period the exercised rats had a lower rate of fatty acid biosynthesis activity and a lower rate of acetyl-CoA carboxylase activity. The difference in acetyl-CoA carboxylase activity was due to a change in maximal velocity with no significant change in the Michaelis constant for acetyl-CoA. Untrained rats were subjected to a single bout of exercise. They also exhibited lower rates of fatty acid biosynthesis and acetyl-CoA carboxylase activities compared with nonexercised rats. However, the lower rates of these enzyme activities were sustained longer in the physically trained rats compared with the exercised untrained rats after the cessation of exercise. These results implicate acetyl-CoA carboxylase as a control site in the regulation of hepatic fatty acid biosynthesis by both physical training and acute exercise in rats. Possible inhibitory mechanisms are discussed.

Acetyl-CoA Carboxylase↗