How to study efficiently? Start with the method of least resistance

If the method is wrong, hard work will be in vain; if the method is right, you will get twice the result with half the effort! In the process of learning, we will encounter various difficulties and obstacles, how to discover and optimize our own learning methods becomes particularly important. You can share the efficient learning methods accumulated in study and work from the following aspects! Preface – Bed Length Artificial Intelligence Tutorial

The method of least resistance is an economic concept, which means that when people make decisions, they tend to choose the path or method that follows the least resistance. The method of least resistance often leads people to choose the easiest or most comfortable method rather than the optimal or most desirable method.

In economics and sociology, the method of least resistance is often used to explain people's behavioral patterns in various decisions and behaviors. For example, the method of least resistance can be used to explain why people tend to buy cheap and low-quality products instead of higher-quality products; why people tend to stick to their own opinions instead of accepting different opinions, etc.

In our daily life and study, what we need to do is to look for tasks that we don’t seem to need to use our brains, but can be done immediately, so that we can gradually enter a deeper state, with the least resistance The fundamental starting point is to allow us to achieve a small amount of achievement faster by doing simple things, and then gradually explore in depth. Therefore, the least resistance is especially suitable for a pre-learning program when we are not in a high mood and in a state of inattention.

In practice, the method of least resistance is also used to solve some practical problems. For example, in process design, the method of least resistance can be used to help design more efficient workflows to minimize the resistance and stress that people experience when performing work tasks; in sales, the method of least resistance can be used to help design more efficient work processes. Sales strategies to minimize customer resistance and dissatisfaction with the sales process.

It should be noted that although the method of least resistance can be used to explain and solve many practical problems, it is not always the best solution. Therefore, when making a decision, it is necessary to consider a variety of factors, not just follow the path or method of least resistance.

Direction 1: Sharing of efficient learning methods

Efficient learning methods can help you master new knowledge faster and easier:

  1. Make a plan: Before studying, make a detailed plan. This will help you complete tasks within the allotted time, and it will allow you to study with more focus.

  2. Concentration: When you study, try to focus as much as possible. Put your phone and other distractions aside and stay focused.

  3. Combination of multiple learning methods: Different people have different inclinations for learning methods, so you can try different learning methods, such as listening to lectures, watching videos, reading books, etc., to find the most suitable method for you.

  4. Thinking and retelling: In the process of learning, it is not only necessary to simply read or listen to lectures, but also try to retell or summarize the knowledge learned, which helps to better grasp the knowledge points.

  5. Practice and Practice: In the process of learning, practice in time and try to apply the knowledge you have learned to practical problems, which will help you better grasp the knowledge points.

  6. Seek help and feedback: As you learn, don't be afraid to ask others for help or feedback. This will help you solve problems faster, correct mistakes, and help you better grasp what you learn.

  7. Persistence: Learning is a long-term process that requires perseverance. Even if you encounter setbacks, don't give up easily, keep patience and confidence.

These methods can help you study more efficiently, but everyone has their own way of learning, so you need to constantly try and adjust to find the method that suits you best.

Direction 2: Efficient learning tools/platform recommendation

  1. Anki: Anki is a powerful flashcard app that helps you easily create, share and study flashcards. Anki's algorithm can automatically adjust the review time according to your learning progress to help you master the knowledge faster.

  2. Quizlet: Quizlet is a learning tool platform that helps you create and study various types of flashcards, including words, definitions, images, and more. It also offers lots of fun games and quizzes to help you better grasp what you've learned.

  3. Coursera: Coursera is an online learning platform that provides high-quality courses from around the world, including computer science, business, art, science, and more. You can learn and obtain certificates for free through this platform to help you improve your professional capabilities.

  4. Khan Academy: Khan Academy is a non-profit educational organization dedicated to providing free educational resources to all students around the world. The platform offers courses in a variety of fields including mathematics, science, and programming, including short videos, interactive exercises, and quizzes.

  5. Pomodoro Technique: The Pomodoro Technique is a time management technique that can help you better manage your study time. This method divides study time into 25-minute study blocks and 5-minute break blocks to help you focus better and avoid fatigue.

These tools and platforms can help you study more efficiently and improve learning outcomes. But please note that everyone has their own learning style and needs, so it takes constant experimentation and adjustments to find the tools and platforms that work best for you.

For now, our cloud-based technology will be more popular, and it will be easier to improve work and study efficiency, because if we want to truly realize the efficiency change from bicycles to airplanes, most of the time we cannot do without the cloud platform. Especially all kinds of cloud platforms. Therefore, how to learn to deal with computing and scientific issues on cloud platforms is worthy of our in-depth study.

  1. Elastic computing capacity: The cloud platform provides elastic computing capacity, which can quickly adjust the scale of computing resources to adapt to changes in workload. This means that during peak periods, you can easily scale up computing resources, and during low peak periods, you can also scale down computing resources to reduce costs. This increases work efficiency and reduces costs.

  2. Distributed storage capabilities: The cloud platform provides distributed storage capabilities, which can store large amounts of data and provide fast and reliable data access services. This allows you to easily store and manage data and access it quickly to increase productivity.

  3. Automated deployment and management: The cloud platform provides automated deployment and management capabilities to easily deploy, manage, and monitor applications and services. This allows you to quickly deploy and manage applications and services to increase productivity and reduce costs.

  4. Multi-person collaboration and sharing: The cloud platform provides multi-person collaboration and sharing functions, which can easily share files, data and resources with team members, and collaborate to complete tasks. This increases productivity and promotes teamwork.

  5. Access anytime and anywhere: The cloud platform can be accessed anytime and anywhere, without installing and maintaining software and hardware, and only needs a network connection to use. This allows you to access work resources anytime, anywhere, increasing productivity and reducing costs.

To sum up, cloud platform technology can improve work efficiency, provide elastic computing capabilities, distributed storage capabilities, automated deployment and management, multi-person collaboration and sharing, and access anytime, anywhere, making work more efficient and convenient.

 

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