nanoHUB-U: Fundamentals of Atomic Force Microscopy, Part 2: Dynamic AFM Methods

nanoHUB-U: Fundamentals of Atomic Force Microscopy, Part 2: Dynamic AFM Methods

Offering: 01a Section: Self Paced

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  • Lecture 3.1: Introduction to VEDA / Dynamic Approach Curves I 1. Lecture 3.1: Introduction to V… 0
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  • From the last lecture 2. From the last lecture 263.5
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  • Running VEDA 3. Running VEDA 265.96666666666664
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  • Running VEDA 4. Running VEDA 315.76666666666665
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  • Running VEDA 5. Running VEDA 320.86666666666667
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  • Running VEDA 6. Running VEDA 338.4
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  • Problem 1: Attractive and repulsive regimes 7. Problem 1: Attractive and repu… 483.43333333333334
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  • Problem 1 8. Problem 1 698.9666666666667
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  • Problem 1 9. Problem 1 782.86666666666667
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  • Problem 1 10. Problem 1 838.3
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  • AMAC Example 2: Retraction curves 11. AMAC Example 2: Retraction cur… 879.1
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  • Amplitude vs Z (Approach and retract) 12. Amplitude vs Z (Approach and r… 909.4
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  • Amplitude vs Z (Approach and retract) 13. Amplitude vs Z (Approach and r… 969.0333333333333
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  • Indentation vs Z (Approach and retract) 14. Indentation vs Z (Approach and… 1069.6333333333334
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  • Observed deflection vs time (for a setpoint ratio of 0.55) 15. Observed deflection vs time (f… 1114.3666666666666
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L3.1: Simulating Dynamic AFM using VEDA - Introduction to VEDA/Dynamic Approach Curves I

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