相关实验视频
Updated: Jun 5, 2025

06:42
Generation and Coherent Control of Pulsed Quantum Frequency Combs
Published on: June 8, 2018
8.9K
通过物理工作的证明实现分散共识的物理单向函数
Marvin Winkler1, Catharina Peither1, Simon Petrick2,3
1Institute of Mechanical Process Engineering and Mechanics (MVM), KIT, Strasse am Forum 8, 76131, Karlsruhe, Germany.
Advanced science (Weinheim, Baden-Wurttemberg, Germany)
|December 16, 2024
概括
这项研究引入了一个物理单向函数,以取代比特币共识中的能源密集型工作证明. 这一创新承诺,去中心化系统的碳足迹显著降低.
科学领域:
- 加密技术和区块链技术
- 材料科学 材料科学 材料科学
- 环境科学 环境科学
背景情况:
- 比特币的工作证明等分散的共识机制依赖于数字单向函数.
- 目前的工作证明系统由于高的电力消耗而对环境产生重大影响.
研究的目的:
- 概念化和研究物理单向函数作为数字共识机制的替代方案.
- 探索区块链技术减少环境足迹的可行性.
主要方法:
- 一个物理单向函数的概念化.
- 使用基于印刷和颜料载体复合材料光学分析的设置进行实验研究.
- 分析安全要求,包括不可克隆性,稳定性,可重复性,抗碰撞性和不可逆转性.
主要成果:
- 证明了物理单向功能的可行性.
- 实验设置表现出诸如数学非克隆性和非反转性等属性.
- 物理环境中的安全要求的确定的边界条件.
结论:
- 一个物理单向函数为共识机制提供了一个潜在的途径,以大幅降低二氧化碳足迹.
- 这项研究启动了一个跨学科领域,探索区块链共识的物理过程.
- 需要进一步研究替代设置,安全定义和对抗策略.
相关概念视频
Positive, Negative, and Zero Work
18.3K
Work is done on an object when energy is transferred to the object. In other words, work is done when a force acts on a body that undergoes a displacement from one position to another. By definition, the work done by a force is the integral of the force with respect to the displacement along its path. Forces can vary as a function of position, and displacements can occur along various paths between two points. The magnitude of a force multiplied by the cosine of the angle that the force makes...
18.3K
Virtual Work for a System of Connected Rigid Bodies
370
Virtual work is a powerful method used to solve problems involving several connected rigid bodies. When the system is in equilibrium, virtual work is zero. This allows the calculation of the resulting forces when a system undergoes a virtual displacement. When attempting to analyze such a system, first, use a free-body diagram, where an independent coordinate represents the configuration of the links, and mark its deflected position resulting from the positive virtual displacement.
Next,...
Next,...
370
Work-energy Theorem
22.1K
According to Newton’s second law of motion, the sum of all the forces acting on a particle (net force) determines the rate of change in the momentum of the particle (motion). Therefore, we should consider the work done by all forces acting on a particle, or the net work, to see its effect on the particle’s motion.
The work-energy theorem equates work done by all the forces on an object to the change in its kinetic energy. The theorem can be used to calculate work done by a force...
The work-energy theorem equates work done by all the forces on an object to the change in its kinetic energy. The theorem can be used to calculate work done by a force...
22.1K
Conservative Forces
12.0K
According to the law of conservation of energy, any transition between kinetic and potential energy conserves the total energy of the system. Hence, the work done by a conservative force is completely reversible. It is path independent, which means that we can start and stop at any two points in the transition, and the total energy of the system (kinetic plus potential energy at these points) will remain conserved. This is characteristic of a conservative force. Some important examples of...
12.0K
Principle of Virtual Work: Problem Solving
1.1K
The principle of virtual work is an essential concept in the field of mechanics and engineering. This is used to solve problems related to the equilibrium of a structure or system. It is based on the assumption that if a system is in equilibrium, the work done by all the forces during a virtual displacement is zero. This principle is applied by considering virtual displacements of the system and the corresponding work done by internal and external forces.
To apply the principle of virtual work,...
To apply the principle of virtual work,...
1.1K
Virtual Work
798
The principle of virtual work states that if a body is in static and dynamic equilibrium, then the sum of all the virtual work done by all external forces and couple moments for any given virtual displacement must be zero.
In static equilibrium, a body can experience an imaginary or virtual movement, such as displacement or rotation. The virtual work done by a force is equal to the dot product of force and virtual displacement in the direction of the force. When it comes to virtually rotating a...
In static equilibrium, a body can experience an imaginary or virtual movement, such as displacement or rotation. The virtual work done by a force is equal to the dot product of force and virtual displacement in the direction of the force. When it comes to virtually rotating a...
798

