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Nonlinear Dynamics and Control of Moving Slender Continua Subject to Periodic Excitations
Stefan Kaczmarczyk
Technology
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Dive into the research topics of 'Nonlinear Dynamics and Control of Moving Slender Continua Subject to Periodic Excitations'. Together they form a unique fingerprint.
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Mathematics
Active Control
17%
Actuator
15%
Buildings
15%
Cable
30%
Continuum
74%
Damper
16%
Dynamic Response
16%
Excitation
86%
Fundamental Frequency
17%
Interaction
17%
Low Frequency
14%
Minimise
9%
Motion
8%
Natural Frequency
29%
Nonlinear Control
100%
Nonlinear Dynamics
90%
Nonlinear Resonance
19%
Numerical Simulation
9%
Passive Control
21%
Performance
14%
Predict
11%
Range of data
7%
Simulation Model
14%
Vertical
33%
Wind Loads
24%
Engineering & Materials Science
Actuators
21%
Cables
45%
Compensation and Redress
21%
Computer simulation
15%
Dynamic response
24%
Natural frequencies
47%
Tall buildings
33%