Jonathan Hopkins

About Jonathan Hopkins

Jonathan Hopkins, With an exceptional h-index of 27 and a recent h-index of 22 (since 2020), a distinguished researcher at University of California, Los Angeles, specializes in the field of Flexible structures, compliant mechanisms, architected metamaterials, additive fabrication, optical tweezers.

His recent articles reflect a diverse array of research interests and contributions to the field:

Intelligent mechanical metamaterials towards learning static and dynamic behaviors

Guest Editorial: Focused Section on Compliant Mechanisms for Mechatronics

Compliant Intramedullary Stems for Joint Reconstruction

Mechanical neural networks: architected materials that learn behaviors

Desired Stiffness Verification on Programmable MEMS Metamaterial

Compliant self-anchoring screw with auxetic properties

Comparing Mechanical Neural-Network Learning Algorithms

Numerical determination of freedom spaces from any set of twists

Jonathan Hopkins Information

University

Position

(UCLA)

Citations(all)

3096

Citations(since 2020)

1971

Cited By

1800

hIndex(all)

27

hIndex(since 2020)

22

i10Index(all)

50

i10Index(since 2020)

39

Email

University Profile Page

Google Scholar

Jonathan Hopkins Skills & Research Interests

Flexible structures

compliant mechanisms

architected metamaterials

additive fabrication

optical tweezers

Top articles of Jonathan Hopkins

Intelligent mechanical metamaterials towards learning static and dynamic behaviors

arXiv preprint arXiv:2404.11785

2024/4/17

Guest Editorial: Focused Section on Compliant Mechanisms for Mechatronics

IEEE/ASME Transactions on Mechatronics

2024/2/21

Compliant Intramedullary Stems for Joint Reconstruction

IEEE Journal of Translational Engineering in Health and Medicine

2024/2/12

Mechanical neural networks: architected materials that learn behaviors

2024/1/25

Desired Stiffness Verification on Programmable MEMS Metamaterial

2024/1/21

Jonathan Hopkins
Jonathan Hopkins

H-Index: 18

Compliant self-anchoring screw with auxetic properties

2024/1/9

Comparing Mechanical Neural-Network Learning Algorithms

Journal of Mechanical Design

2023/7/1

Numerical determination of freedom spaces from any set of twists

Mechanism and Machine Theory

2023/7/1

Design of configuration indifferent compliant building blocks

Precision Engineering

2023/5/1

Signal Propagation in Resettable Mechanical Logic

2023/2/3

Hilary Johnson
Hilary Johnson

H-Index: 1

Jonathan Hopkins
Jonathan Hopkins

H-Index: 18

Design, material, function, and fabrication of metamaterials

APL Materials

2023/2/1

Using binary-stiffness beams within mechanical neural-network metamaterials to learn

Smart Materials and Structures

2023/2/1

Compliant mechanisms that achieve binary stiffness along multiple degrees of freedom

Journal of Composite Materials

2023/2

Cross-Axis Flexural Pivots in Mechatronic Applications: Stress-Based Design for Combined Tension and Bending

IEEE/ASME Transactions on Mechatronics

2023/12/5

Large-Range Rotation-to-Translation Compliant Transmission Mechanism

Journal of Mechanical Design

2023/12/1

JMEMS Letters. 1pt Response Speed Characterization of a Thermally Actuated Programmable Metamaterial

Journal of Microelectromechanical Systems

2023/11/22

Numerical Identification of Freedom Spaces Using the Canonical Basis

2022/8/14

Jonathan Hopkins
Jonathan Hopkins

H-Index: 18

Hexblade positioner: a fast large-range six-axis motion stage

Precision Engineering

2022/7/1

Multi-stable compliant-mechanism mattress for bed sore prevention

2022/6/9

System and method for multi-dof cross-pivot flexure bearing with enhanced range and enhanced load capacity

2022/5/19

See List of Professors in Jonathan Hopkins University(University of California, Los Angeles)

Co-Authors

academic-engine