免費試聽
gibs的音標是[?d??bz],基本翻譯是吉布斯。速記技巧可以是將其發(fā)音聯(lián)想為“吉布斯是”,幫助記憶單詞拼寫。
GIBS這個詞源可以追溯到古英語,它來自中古英語中的gibs,意為“蓋子”或“蓋子狀物”。這個詞源在英語中一直沿用至今。
變化形式:在英語中,GIBS的形式?jīng)]有發(fā)生太大的變化,它保持了原始的形式和發(fā)音。
相關單詞:
1. Gibbet - 一種用于示眾的吊架,源自GIBS(蓋子)和et(表示某種動作)。
2. Gibber - 意為“胡言亂語”,源自gibberish(胡言亂語)和GIBS(蓋子)。
3. Gibbs - 這是一個姓氏,也指一種特殊的機械裝置,用于處理和提取石油,它也與GIBS這個詞源有關。
4. Gibble-gobble - 意為“咕嚕咕嚕的聲音”,源自gibberish(胡言亂語)和gobble(咕嚕聲)。
5. Gibberish - 意為“胡言亂語”,源自gibber(胡言亂語)和-ish(表示某種狀態(tài)或行為)。
6. Gibus - 一種用于制作禮帽的布料,源自GIBS(蓋子)和-us(表示某種狀態(tài)或行為)。
7. Gibbous - 意為“半圓的”,源自GIBS(蓋子)和-ous(表示某種性質或狀態(tài))。
8. Gibbeted - 意為“示眾的”,源自GIBS(蓋子)和-ed(表示某種狀態(tài)或結果)。
9. Gibberingly - 意為“胡言亂語地”,源自GIBS(蓋子)和-ingly(表示某種方式或狀態(tài))。
10. Gibberishly - 意為“胡言亂語地”,源自GIBS(蓋子)和-ly(表示某種方式或狀態(tài))。
以上這些單詞都與GIBS這個詞源有著密切的聯(lián)系,并且都反映了其在英語中的廣泛應用和演變。
常用短語:
1. Gibbs phenomenon
2. Gibbs phenomenon of the Laplace operator
3. Gibbs measure
4. Gibbs state
5. Gibbs phenomenon in differential equations
6. Gibbs-type phenomena
7. Gibbs-like phenomenon
例句:
1. The function is piecewise smooth, and there is a Gibbs phenomenon around the discontinuity points.
2. When solving the boundary value problem of the heat equation, there often appears a kind of oscillatory behavior, which is called Gibbs phenomenon.
3. The Gibbs phenomenon occurs when the numerical method is applied to the numerical solution of differential equations.
4. The Gibbs phenomenon of the Laplace operator is a typical example of the singular integral equation.
5. The Gibbs phenomenon of the variational method is a kind of oscillation phenomenon in the numerical solution of differential equations.
6. The Gibbs phenomenon is a typical example of the oscillation phenomenon in numerical methods for partial differential equations.
7. The Gibbs phenomenon is a kind of complex oscillation phenomenon in numerical methods for partial differential equations, which needs to be carefully analyzed and solved.
英文小作文:
Gibbs Phenomenon: An Important Challenge in Numerical Analysis
Gibbs phenomenon is a typical example of complex oscillation phenomena in numerical methods for partial differential equations, which often causes numerical instability and inaccuracy in numerical solutions. Therefore, it is an important challenge for numerical analysts to analyze and solve the Gibbs phenomenon effectively and accurately. In practice, it is necessary to carefully choose the mesh size and other factors to avoid the occurrence of the Gibbs phenomenon, and to use appropriate numerical methods to improve the accuracy and stability of numerical solutions. Understanding and solving the Gibbs phenomenon is crucial for improving the accuracy and stability of numerical simulations and applications in science and engineering.
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