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joiningnow鐵桿木蟲 (知名作家)
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[求助]
幫忙翻譯
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1.從圖中可以看出,隨著角度的增加,系統(tǒng)的化學(xué)勢逐漸升高,系統(tǒng)獲得了額外的能量。當(dāng)FAI=35時(shí),化學(xué)勢降低,存在一個(gè)極小值點(diǎn)。X被囚禁在左右兩邊的一個(gè)勢阱當(dāng)中,此時(shí)系統(tǒng)處于一個(gè)相對穩(wěn)定的狀態(tài)。當(dāng)FAI>35度時(shí),化學(xué)勢繼續(xù)升高,系統(tǒng)能量也繼續(xù)增加。 2.和圖1類似,隨著散射長度的增加,當(dāng)a=5時(shí),化學(xué)勢有一個(gè)極小值點(diǎn),此時(shí)X被囚禁在左右兩邊的一個(gè)勢阱當(dāng)中。體系能量降低,處于一個(gè)穩(wěn)定狀態(tài)。 3.從圖2中可以看出,隨著時(shí)間的增加,系統(tǒng)的化學(xué)勢升高,能量也隨之增加。當(dāng)T=2時(shí),化學(xué)勢突然下降,系統(tǒng)發(fā)生了從中間勢阱到兩邊的一個(gè)勢阱的轉(zhuǎn)變。此后,系統(tǒng)化學(xué)勢處于穩(wěn)定狀態(tài),X也處于一個(gè)平衡狀態(tài)。 4.從圖3中可以看出,隨著時(shí)間的增加,GAMMA值增大,與圖2類似,系統(tǒng)的化學(xué)勢升高,能量也隨之增加,GAMMA的臨界是2。 可選擇翻譯部分段落,將贈(zèng)送相應(yīng)的金幣,謝謝了。 |
銀蟲 (初入文壇)
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As shown in Figure 1, the chemical potential of the system increases as the angle becomes bigger, and extra energy is gained by the system. When FAI equals 35 degree, the chemical potential decrease to a minimum. X is trapped in a local potential well and the system is therefore in a relatively stable state. When FAI is more than 35 degree, the chemical potential continues to increase, indicating increasing energy of the system. ‘ 2. Similar to Figure 1, the chemical potential (decreases) with increasing scattering length till it reaches a local minimum at a = 5, when X is again trapped in a potential well. The energy of the system decreases to a relatively stable state. 3. As shown in Figure 2, the chemical potential as well as the energy of the system increases over time. When T equals 2, the chemical potential experiences a sudden drop, causing the system to jump from the middle potential well to one of the two potential wells at side. The chemical potential of the system as well as X is then in a stable state. 4. As indicated in Figure 3, the value GAMMA increases over time. Similar to Figure 2, the chemical potential as well as the energy of the system increases till GAMMA reaches the critical point of 2. lz我根據(jù)你的意思補(bǔ)充的詞用括號括起來了。第四句的最后我不是很清楚你是不是想說這個(gè)意思,不是的話需要你再解釋一下你要表達(dá)的意思。僅供參考。 |

至尊木蟲 (知名作家)
鐵桿木蟲 (正式寫手)
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1. It can be seen from the figure that, with increased angle, the system's chemical potential gradually increases, and the system has gained additional energy. When FAI=35 (degree?原文似乎漏掉了) , the chemical potential decreases and there exists a minimum. X is trapped in a potential well between the left and right hand side, while the system is in a relatively steady state. When FAI > 35 degree, the chemical potential continues to increase and so does the system's energy. 2. Similar to Figure 1, when the scattering length increases and a=5, the chemical potential has a minimum and X is trapped in a potential well between the left and right hand side. The system's energy decreases and remains a steady state. 3. From Figure 2 it can be seen that as time passes by, the system's chemical potential increases and so does its energy accordingly. When T=2, the chemical potential abruptly drops and the system makes a transition from a potential well in the middle, to one at the sides. Afterwards the system's chemical potential remains in a steady state and X is also in an equilibrium. 4. It can be observed that as time goes by, GAMMA value increases. Similar to Figure 2, the system's chemical potential increases and following this its energy increases, too. The critical value for GAMMA is 2. 供參考 |

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