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Although there are many possible actuator designs, this paper will focus on the direct chemical to mechanical energy conversion through the control of the hydrogen ion content in the muscle fibers.
To study the stability behavior of such structural designs, this paper presents an efficient finite element buckling analysis of unitized stiffened composite panel stiffened by arbitrarily shaped stiffeners.
For comparing random designs and Latin hypercube designs, this paper con- siders a wrap-around version of the L2-discrepancy (WD).
With a focus on physical model-making of kinematic designs, this paper considers how these activities and processes can be articulated using formal generative rules.
Based on the theory of complementary designs, this paper provides some theoretical results which are useful for constructing FFSP designs with weak minimum aberration.
Through nonlinear analyses of several floor diaphragm designs, this paper examines the influence that the floor diaphragm stiffness, strength, and configuration have on the seismic response of SC-MRFs.
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With the aid of Lyapunov stability design, this paper presents control approach for asymptotical tracking.
In the context of sample rate conversion (SRC) filter design; this paper makes two key contributions.
Around the "3R" principles in Green design, this paper discusses the "3R" thought of energy recovery.
Linking scenario thinking and fashion design this paper explores connections to design scenarios, highlighting the role of ephemerality.
Based on the theory of incentive mechanism design, this paper reveals that the current allocation institution has no incentive compatibility.
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