simulate
简明释义
v. 假装,冒充;模拟,模仿;看上去像;计算机模拟
adj. <古> 虚假的,假装的
第 三 人 称 单 数 s i m u l a t e s
现 在 分 词 s i m u l a t i n g
过 去 式 s i m u l a t e d
过 去 分 词 s i m u l a t e d
英英释义
模仿某物的外观或特征。 | |
To create a model or representation of a system or process for the purpose of studying its behavior. | 创建一个系统或过程的模型或表现,以研究其行为。 |
单词用法
模拟一种情况 | |
模拟行为 | |
模拟一个过程 | |
模拟一个环境 | |
模拟飞行 | |
模拟条件 |
同义词
模仿 | The scientist used a computer program to simulate the weather patterns. | 科学家使用计算机程序来模拟天气模式。 |
反义词
实现 | 我们需要通过努力工作来实现我们的目标。 | ||
真实的 | 真正的物品比复制品更有价值。 | ||
实际化 | 是时候将你的想法变为实际项目了。 |
例句
1."By linking directly to our nervous system, computers could pick up whatwe feel and, hopefully, simulate feeling too so that we can start to developfull sensory environments," he says.
他说:“通过直接连接到我们的神经系统,计算机可以收集我们的感觉,并希望能够模拟我们的感觉,这样我们就可以开始开发完整的感觉环境。”
2.Try to simulate an Ice Age climate in their greenhouse and grow some trees in there?
他们是在温室里尝试模小冰河期气候并在里面种了一些树吗?
3.He bought an aquarium, installed the wipers in it, filled the tank with a mixture of oil and sawdust to simulate a load on the wiper.
他买了一个养鱼缸,在上面安装了雨刷,并填充了油和锯末的混合物,以模拟负载的雨刷器。
4.Moreover, there are processes that influence climate, such as modifications in land use, that scientists do not know how to simulate.
此外,还有一些影响气候的过程,如科学家们不知道如何模拟的土地利用的变化。
5.You can now simulate your process with multiple inputs and outputs.
现在您可以对具有多个输入和输出的流程进行模拟了。
6.This choice is concerned with the device you want to simulate on.
这一选择关系到您将在什么样的设备上进行模拟。
7.They were then asked to simulate the task while lying - awake - in bed.
他们随后要求被研究者躺在床上醒着模仿这些动作。
8.The blade type anemograph is used to measure and simulate the turbulence speed.
使用叶片式风速仪测量模拟气缸内的涡流转速。
9.The engineers use computer models to simulate 模拟 the effects of different materials on the structure.
工程师们使用计算机模型来模拟不同材料对结构的影响。
10.In the training program, we simulate 模拟 emergency situations to prepare staff for real-life scenarios.
在培训项目中,我们模拟紧急情况以准备员工应对真实场景。
11.The flight simulator is designed to simulate 模拟 various flying conditions for pilots.
飞行模拟器旨在模拟各种飞行条件供飞行员训练。
12.Scientists can simulate 模拟 climate change effects using advanced computer algorithms.
科学家们可以使用先进的计算机算法来模拟气候变化的影响。
13.The software allows users to simulate 模拟 different investment strategies before making decisions.
该软件允许用户在做出决策之前模拟不同的投资策略。
作文
In today's rapidly evolving technological landscape, the ability to simulate various scenarios has become increasingly important. The term simulate (模拟) refers to the act of imitating or replicating a process or system in order to understand its behavior under different conditions. This concept is widely applied across various fields, including science, engineering, and even social sciences. By creating models that simulate real-world situations, researchers and professionals can make predictions, test hypotheses, and develop solutions without the risks associated with real-life experimentation. For example, in the field of climate science, scientists often simulate climate patterns using complex computer models. These simulations allow them to predict future climate changes based on current data and various environmental factors. By adjusting parameters within the simulation, they can observe potential outcomes and better understand how different variables, such as greenhouse gas emissions, impact global temperatures. This is crucial for developing effective policies aimed at combating climate change. Similarly, in the realm of engineering, simulations play a vital role in the design and testing of new products. Engineers use computer-aided design (CAD) software to create virtual prototypes that simulate the physical properties of materials and structures. This allows them to identify potential flaws and optimize designs before moving to the expensive and time-consuming phase of physical prototyping. For instance, aerospace engineers simulate the aerodynamics of an aircraft to ensure it meets safety and performance standards before it ever takes flight. In education, simulation techniques are increasingly being used to enhance learning experiences. Medical students, for instance, often train using high-fidelity mannequins that simulate real patients. These mannequins can replicate various medical conditions, allowing students to practice their diagnostic and treatment skills in a controlled environment. This hands-on experience is invaluable, as it prepares them for actual patient interactions in their future careers. Moreover, simulations are also employed in social sciences to study human behavior. Researchers might create virtual environments that simulate social interactions or economic systems to observe how individuals or groups respond to different stimuli. This can provide insights into consumer behavior, decision-making processes, and even the dynamics of social networks. Despite the many advantages of simulation, it is important to recognize its limitations. A simulation is only as good as the model it is based on; if the underlying assumptions are flawed, the results can be misleading. Therefore, it is crucial for practitioners to continually validate and refine their models to ensure accuracy and reliability. In conclusion, the ability to simulate scenarios is an invaluable tool across various disciplines. Whether in climate science, engineering, education, or social research, simulation allows us to explore possibilities, test theories, and prepare for real-world challenges. As technology continues to advance, the potential applications of simulation will only expand, further enhancing our understanding of complex systems and improving our decision-making capabilities.
在当今快速发展的技术环境中,能够< span >模拟< /span >各种场景变得越来越重要。术语模拟(模拟)指的是模仿或复制一个过程或系统,以便理解其在不同条件下的行为。这一概念广泛应用于科学、工程甚至社会科学等多个领域。通过创建模型来< span >模拟< /span >现实世界的情况,研究人员和专业人士可以进行预测、测试假设,并在不承担现实实验风险的情况下开发解决方案。 例如,在气候科学领域,科学家们常常使用复杂的计算机模型来< span >模拟< /span >气候模式。这些模拟使他们能够根据当前数据和各种环境因素预测未来的气候变化。通过调整模拟中的参数,他们可以观察潜在结果,更好地理解不同变量(如温室气体排放)如何影响全球温度。这对制定有效的应对气候变化的政策至关重要。 同样,在工程领域,< span >模拟< /span >在新产品的设计和测试中发挥着至关重要的作用。工程师使用计算机辅助设计(CAD)软件创建虚拟原型,这些原型< span >模拟< /span >材料和结构的物理特性。这使他们能够在进入昂贵且耗时的物理原型阶段之前,识别潜在缺陷并优化设计。例如,航空工程师< span >模拟< /span >飞机的空气动力学,以确保其在实际飞行之前符合安全和性能标准。 在教育中,< span >模拟< /span >技术越来越多地用于增强学习体验。例如,医学生通常使用高保真模拟人进行培训,这些模拟人< span >模拟< /span >真实患者。这些模拟人可以复制各种医疗状况,使学生能够在受控环境中练习诊断和治疗技能。这种实践经验是无价的,因为它为他们未来的职业生涯中与患者的实际互动做好准备。 此外,< span >模拟< /span >也被社会科学用于研究人类行为。研究人员可能会创建虚拟环境,这些环境< span >模拟< /span >社会互动或经济系统,以观察个人或群体如何对不同刺激做出反应。这可以提供对消费者行为、决策过程甚至社交网络动态的深入见解。 尽管< span >模拟< /span >有许多优点,但重要的是要认识到它的局限性。模拟的效果仅与其基础模型的质量有关;如果基本假设存在缺陷,结果可能会产生误导。因此,实践者必须不断验证和完善他们的模型,以确保准确性和可靠性。 总之,能够< span >模拟< /span >场景是各个学科中一项无价的工具。无论是在气候科学、工程、教育还是社会研究中,< span >模拟< /span >使我们能够探索可能性、测试理论,并为现实世界的挑战做好准备。随着技术的不断进步,< span >模拟< /span >的潜在应用只会扩大,进一步增强我们对复杂系统的理解,提高我们的决策能力。
文章标题:simulate的意思是什么
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