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There is a big difference, science students focus on active thinking, and they will be very agile, while liberal arts students have a basic mindset and are dull and ......
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First: science students, logical thinking.
Strong, thoughtful, rational, understanding-oriented, likes to get to the bottom of things.
Second: liberal arts students, perceptual thinking, strong memory, like words, have good writing skills, writing is generally good, like to imagine.
Illustrate graphically, the way of thinking of liberal arts students.
It's tree-like and it's divergent. The thinking mode of science students is a ray and focuses on logical reasoning.
Attachment to cause and effect.
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If illustrated graphically, the way of thinking of liberal arts students is tree-like and divergent. The thinking mode of science students is a ray, focusing on logical reasoning and grasping cause and effect.
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Needless to say, I feel that it varies from person to person, science students are more active in rational thinking, and liberal arts students may be more detailed!
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I can only summarize myself (liberal arts student.
The difference with my brother (a science student). As a liberal arts student, I like to think about how to behave, how to do things, I like to know my own personality characteristics, and I like to read literature and art. And my brother thinks that the above things I like are meaningless and useless, every day is to learn, strengthen skills, and see that it is a brain-burning drama, a political drama, and a commercial film. Hope it helps, hope :)
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Liberal arts students are romantic, imaginative, and realistic, while science students are more realistic.
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1. Way of thinking:
Science students are a kind of conservation thinking, and in various science studies, they have learned various conservations. Therefore, in life, they also aspire to seek all kinds of conservation to make things simple.
But liberal arts students are a kind of propulsive thinking, like the research thinking in history, geography and politics, they are accustomed to the order in which things happen, solving one problem first and then another.
2. Experience in dealing with things:
An experience here refers to a series of actions that the brain sends out to prompt the human body to complete. Scientific thinking tends to be more results-oriented, and people tend to focus on results.
There is no infinite process of exploration and discovery, just to be able to prove all the answers in the end. And liberal arts thinking is the opposite, does it mean that the result is not important? Actually, no, but in contrast, liberal arts thinking is more inclined to think dialectically and practice.
If this road doesn't work, go to another path and turn the unknown into the known. Scientific thinking, on the other hand, is to answer questions within an existing framework.
3. Views on things:
Liberal arts thinking will be more comprehensive when looking at something, starting from different angles, right or wrong, radiating around, multiple ideas, different sayings. Scientific thinking may be more direct, it is necessary to connect two points, run through what you have learned in the process of connection, be able to solve the problem, and get an answer.
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There is a certain difference between scientific thinking and liberal arts thinking:
1.Scientific thinking pays more attention to the logic and analysis of Zen meditation, while liberal arts thinking pays more attention to comprehension and perceptuality: scientific thinking emphasizes grasping the essence of things and the relationship between cause and effect, and solving problems through logical thinking; Liberal arts thinking emphasizes more on perceiving things from multiple perspectives, focusing on understanding and understanding human nature, culture and thought.
2.Science thinking pays more attention to empirical evidence and practice, and liberal arts thinking pays more attention to synthesis and humanities: science thinking emphasizes more empirical and practical, and attaches importance to scientific analysis and practical analysis of problems; Liberal arts thinking emphasizes more synthesis and humanities, and pays attention to cultural accumulation and social and humanistic issues.
3.Scientific thinking emphasizes precision and regularity, while liberal arts thinking emphasizes speculation and innovation: scientific thinking pays more attention to accurately and regularly grasping the essence and characteristics of things; Liberal arts thinking, on the other hand, emphasizes innovation and critical thinking, and requires a certain degree of imagination and creativity to observe and think about problems.
There is no absolute superiority or inferiority between the two ways of thinking, both are related to the subject itself, so the corresponding way of thinking should be used in the learning in a timely manner. It is best to organically combine scientific thinking and liberal arts thinking in order to achieve better cognitive and application results.
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There are many differences between scientific thinking and liberal arts thinking, which are mainly reflected in the following aspects:
First of all, scientific thinking pays more attention to analysis and induction, and attaches importance to the objective characteristics and causal relationships of things. Scientific thinking often requires analysis based on specific data, experiments and observations, and conclusions are drawn through logical reasoning and inductive summaries. In contrast, liberal arts thinking pays more attention to human and social factors, attaches importance to emotions, experiences and subjectivity, and often uses descriptions and metaphors.
Secondly, scientific thinking is more detail-oriented and precise, requiring precise expression and calculation. Since the objectivity and precision of science research objects are often higher, scientific thinking needs to ensure the correctness of methods and the accuracy of experiments. On the contrary, liberal arts thinking focuses more on emotions and subjective feelings, allowing for more imagination and expression.
Finally, scientific thinking is more problem-solving and application-oriented. Science work often needs to solve practical problems and challenges, such as the exploration of the natural environment and life sciences, which need to be reflected through theoretical verification and practical application. In contrast, liberal arts thinking focuses more on cultural understanding, value judgment, and ideological enlightenment, and is more humanistic and broad.
In general, the difference between science and liberal arts thinking is also due to some differences based on methods, data, objects, applications, etc., each with its own unique texture, which complements and influences each other.
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Science and liberal arts thinking are different ways of thinking that use different methods and techniques when dealing with problems.
Science thinking focuses on observation, experimentation, analysis, and reasoning in order to study the natural world and scientific phenomena. It relies on quantitative data and mathematical models in pursuit of precision and reproducibility. Scientific thinkers typically use a systematic, logical, and analytical approach to problem solving.
Liberal arts thinking focuses on emotions, values, history, and culture to study human society and human behavior. It relies on qualitative and subjective data, and pursues rational understanding and interpretation. Liberal arts thinkers typically use an integrative, critical, and creative approach to problem-solving.
Therefore, the differences between scientific thinking and liberal arts thinking are mainly reflected in the following aspects:
1.The objects of study are different: scientific thinking is concerned with the natural world and scientific phenomena, while liberal arts thinking is concerned with human society and human behavior.
2.Analytical approaches differ: Scientific thinkers use systematic, logical, and analytical approaches to problem-solving, while liberal arts thinkers typically use integrative, critical, and creative approaches to problem-solving.
3.The types of data are different: scientific thinking relies on quantitative data and mathematical models, while liberal arts thinking relies on qualitative and subjective data.
4.The results pursued are different: the scientific mind pursues precision and repeatability, while the liberal arts mind pursues understanding and interpretation.
It is important to note that science thinking and liberal arts thinking are not mutually exclusive, they can complement and intersect with each other. When solving practical problems, it is often necessary to use a combination of science thinking and liberal arts thinking to achieve better results.
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1.Different degrees of abstraction: Science students are usually better at abstract thinking and starting with abstract concepts, and they are accustomed to translating problems into symbols or formulas to derive and solve.
Liberal arts students, on the other hand, are usually better at starting with concrete things, valuing examples and cases, and preferring to use specific language and visual expressions.
2.Reasoning logic is different: Science students are generally better at using deductive reasoning and are good at using formal logic and mathematical methods to solve problems. Liberal arts students, on the other hand, are generally better at inductive reasoning and tend to reason using rules of thumb and analogies.
3.Different knowledge structure: In addition to mastering the knowledge of their own majors, science students also need to master the knowledge of mathematics, physics, chemistry and other related scientific disciplines, so as to form a more systematic and scientific knowledge structure.
Liberal arts students, on the other hand, usually need to master knowledge in multiple fields such as philosophy, history, and literature, and often present a high degree of comprehensiveness and intersectionality.
4.Different degrees of acceptance of new things: science students are generally more receptive to new and unknown things and concepts, and are better at expanding their horizons and thinking; Liberal arts students, on the other hand, tend to pay more attention to real-life human and social experiences, and are more receptive to known or experience-based concepts and theories.
The above are some basic differences between the thinking logic of some science students and liberal arts students, but it does not mean that a person's thinking logic is completely affected by their own field, and different aspects of thinking and ability can also learn from and complement each other.
How to use a more intuitive discipline to understand the difference and impact of the thinking style of liberal arts and science students, I think for a more comprehensive understanding of the two fields, interdisciplinary may be the best choice.
Here are some examples of interdisciplinarity:
1.Biophysics: Combines knowledge of biology and physics to study physical processes and biological phenomena within an object, such as neural signal transmission, enzyme catalysis, protein folding, and more.
2.Social Psychology: Combines the knowledge of social science and psychology to study the interrelationship between human behavior and psychology, such as group behavior, emotional contagion, interpersonal interaction, and more.
3.Chemical Physics: Combines the knowledge of chemistry and physics to study the physical properties and chemical reactions of molecules and macroscopic objects, such as fields such as quantum chemistry and physical chemistry.
4.Cognitive Neuroscience: Combines knowledge of neuroscience and psychology to study the relationship between the brain and cognition, such as consciousness, memory, learning, language, and more.
Of course, these interdisciplinary disciplines also need to learn the basic knowledge of the corresponding single subject, so learning interdisciplinary disciplines may require more time and effort. However, the intersection of disciplines may lead to richer knowledge and broader perspectives, which can help people understand and solve problems more comprehensively.
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Liberal arts thinking is the use of intuition, feelings, and imagination to recognize, understand, and express the world; The main use is "heart", and the discussion of things is all exclamation; Scientific thinking is to use data, resources, and logical reasoning to see the world and solve problems; The main thing is the "brain", and the discussion of things is the pursuit of truth. Liberal arts thinking generally uses the combination of historical events and practical problems to judge, and solving problems is often gradual; Scientific thinking generally uses scientific common sense, data analysis and logical thinking to make judgments, and to solve problems in the hope of perfection. The liberal arts and science thinking here does not mean that you are studying the liberal arts and sciences, but that it refers to a mode of thinking.
Different thinking patterns will lead to different "views on problems, ways to solve problems, and effects on solving problems". In fact, whether it is liberal arts thinking or science thinking, it has its limitations. Let's take a look at an example first - take a dispute over the right to use a rural homestead as an example:
Scientific thinking: find the root cause of the problem, measure the foundation, take the law as the criterion, find data materials and basis, conduct on-site surveys, and form a written mediation letter. In the end, the mediation was successful, although it was unhappy, but there was no dispute in the future.
Liberal arts thinking: do ideological work, learn village rules and conventions, move with affection, know with reason, advocate moral standards, link up and down, work together, mobilize the masses, and mediate between the two sides. In the end, the mediation was successful, everyone was happy, and the villagers were very excited and burst into tears.
Before leaving, the leader also took away a basket of eggs sent by the villagers. The general view is that any way of thinking that is conducive to solving things fundamentally is the best way of thinking; Whether it is intuitive, perceptual, abstract, macroscopic thinking, or analytical judgment, rational, logical, and microscopic thinking, its starting point is to effectively solve problems. Whether it's a liberal arts mindset or a science mindset, effective problem-solving is the goal.
The fundamental ability to solve problems still depends on various common sense and logical thinking ability. It is necessary to be both pragmatic and pragmatic; It is necessary to pay attention not only to on-site investigation to improve insight and understanding of complex influencing factors, but also to the evaluation of the whole process and the quantitative analysis of the rate of change.
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Science thinking and liberal arts thinking are the same in some ways, such as both need to think clearly and logically, think independently, and think critically. However, in some aspects, there is a big difference between scientific thinking and liberal arts thinking, which is mainly manifested in the following three aspects:
Difference Between Abstract Thinking and Figurative Thinking: Science thinking is more inclined to abstract thinking, and they need to analyze, understand, and apply abstract concepts. Liberal arts thinking, on the other hand, is more figurative thinking, they pay more attention to specific descriptions and descriptions, and are better at using prose and literary works to express their opinions.
Difference between mathematical thinking and verbal thinking: Scientific thinking requires the use of mathematical thinking in many cases, such as being able to understand and apply mathematical formulas to solve problems. Liberal arts thinking, on the other hand, focuses more on linguistic thinking, and they need to have strong language skills and be able to express their thoughts, opinions and emotions through language.
The difference between scientific thinking and humanistic thinking: When solving problems, scientific thinking pays more attention to scientific methods and models, and they will use scientific thinking methods to analyze and solve problems. The liberal arts thinking emphasizes humanistic care and respect, and they solve human problems through the study of culture, history, art, society, etc.
It should be pointed out that science thinking and liberal arts thinking complement each other and need to be used comprehensively to better solve problems. In real life, many issues are complex, and it is necessary to comprehensively consider the elements of science, humanities, technology and other aspects in order to draw more comprehensive and accurate conclusions.
Machinery should be regarded as engineering, to the university major is divided into five aspects: arts, science, engineering, agriculture and medicine, arts and sciences for your current liberal arts can be, there is not much requirement, and engineering is like you said machinery, civil engineering, materials, these are a little difficult for liberal arts students, because for physics, chemistry requirements are relatively high, just like I studied civil engineering, there are three subjects are mechanics, fluid mechanics, structural mechanics, material mechanics, but it is not excluded that there are geniuses, you can leave science for several years can also learn very well, and like agriculture and medicine, for chemistry requirements, some medicine has requirements for physics, of course, if you want to apply for the examThere is no requirement now, but many colleges and universities recruit fewer liberal arts students for engineering majors.
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Judging from the employment situation of students and college graduates in recent years, there are several popular and popular majors: International Economics and Marketing, Finance, Law, Chinese as a Foreign Language, Sculpture, Performance, Broadcasting and Hosting Arts, Radio and Television Choreography and Directing, Art Design, Drama, Film and Television Art Design, Photography, Animation, Applied Physics, Astronomy, Applied Meteorology, Marine Science, Electronic Information Science and Technology, Optical Information Science and Technology, Environmental Science, Applied Psychology, Polymer Materials and Engineering, Thermal and Power Engineering, Electronic Information Engineering, Communication Engineering, Biomedical and Engineering, Urban Planning, Environmental Engineering, Pharmaceutical Engineering, Food Science and Engineering, Light Chemical Engineering, Clothing Design and Engineering, Biological Engineering, Agricultural Electrification and Automation, Horticulture, Aquaculture, Marine Fishery Science and Technology, Preventive Medicine, Stomatology, Nursing, Information Management and Information Systems, Engineering Management, Financial Management, Human Resource Management, Labor and Social Security, Rural Regional Development, Finance, International Politics, Diplomacy, Public Security, Border Management, Radio and Television Journalism, Advertising, Publishing, Choreography, Mathematics and Applied Mathematics, Information and Computing Science, Applied Chemistry, Resources, Environment and Urban and Rural Planning and Management, Ecology, Statistics, Survey Technology and Engineering, Inorganic Non-metallic Materials Engineering, Mechanical Design and Manufacturing and Automation, Material Forming and Control Engineering, Automation, Computer Science and Technology, Civil Engineering, Port and Waterway and Coastal Engineering, Surveying and Mapping Engineering, Safety Engineering, Traffic Engineering, Water Supply and Drainage Engineering, Water conservancy and hydropower engineering, flight technology, navigation technology, packaging engineering, criminal science and technology, fire engineering, grass science, animal science, anesthesiology, medical laboratory, traditional Chinese medicine, acupuncture and massage, forensic medicine, traditional Chinese medicine, pharmaceutical preparations. Among them, there are many science majors, such as international economics and science, marketing, traditional Chinese medicine, pharmaceutical preparations, mathematics and applied mathematics, information and computing science, applied chemistry, resource environment and urban and rural planning and management, preventive medicine, stomatology, nursing, information management and information systems, engineering management, financial management, human resource management, fashion design and engineering, biological engineering, food science and engineering, light chemical engineering, clothing design and engineering, biological engineering, etc. >>>More