50 research outputs found
Plot of the force on the edge loaded by a constant speed <i>v</i> versus time.
<p>Plot of the force on the edge loaded by a constant speed <i>v</i> versus time.</p
Effective one-dimensional model for cantilever vibration in air.
<p>Effective one-dimensional model for cantilever vibration in air.</p
Frequency responses of four common AFM cantilevers: a) NP-A b) NP-C c) NSC14 d) SCM.
<p>Frequency responses of four common AFM cantilevers: a) NP-A b) NP-C c) NSC14 d) SCM.</p
Plot of the force on the edge loaded by different speeds (<i>v</i>) versus time:a) v = 0.1m/s b)v = 0.2m/s c)v = 0.4m/s d)v = 0.8m/s.
<p>Plot of the force on the edge loaded by different speeds (<i>v</i>) versus time:a) v = 0.1m/s b)v = 0.2m/s c)v = 0.4m/s d)v = 0.8m/s.</p
Simulation results for the fluid structure interactions: a) Viscous force versus speed, b) Effective spring constant versus speed.
<p>Simulation results for the fluid structure interactions: a) Viscous force versus speed, b) Effective spring constant versus speed.</p
Root-mean-square amplitude curves as a function of frequency for a one-dimensional oscillator with damping.
<p>Root-mean-square amplitude curves as a function of frequency for a one-dimensional oscillator with damping.</p
Pictures and diagrams of the AFM cantilevers: a) NP-A b) NP-C c) NSC14 d) SCM.
<p>Pictures and diagrams of the AFM cantilevers: a) NP-A b) NP-C c) NSC14 d) SCM.</p
