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AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at

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Page 1: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 2: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 3: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 4: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 5: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at

問 題 訂 正

科目名(筆答試験)について、問題訂正があります。受験生に「問題訂正があります。」

と口頭で伝えたうえ、四角の枠内を板書してください。

板書が見えない旨の申し出があった場合は、この用紙を直接、見せてください。交付は

しないこと。

【化学 Chemistry】

問題 1

2.

(誤)b) この分子は共有結合をいくつもつか?

(正)b) この分子は共有結合を幾つもつか?

5.

(誤)most simple ketone

(正)most simple ketones

Page 6: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 7: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 8: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 9: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 10: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 11: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 12: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at

問 題 訂 正

科目名(筆答試験)について、問題訂正があります。受験生に「問題訂正があります。」

と口頭で伝えたうえ、四角の枠内を板書してください。

板書が見えない旨の申し出があった場合は、この用紙を直接、見せてください。交付は

しないこと。

【機械工学 Mechanical Engineering】

問題 5

〔追加〕

(1)ジャイロの部品に記号A,B,C,D,X,Yが示されている。部品の同じ記号

の部分を合わせる様に概略図を描きなさい。

(1)Symbols A,B,C,D,X,Y are showing in components of gyroscope. Draw an outline to

fit the same symbols of components.

Page 13: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 14: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 15: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 16: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 17: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 18: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 19: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 20: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 21: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 22: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 23: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 24: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 25: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 26: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 27: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 28: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 29: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 30: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 31: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 32: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 33: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 34: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 35: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 36: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 37: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 38: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 39: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 40: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 41: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at

問 題 訂 正

科目名(筆答試験)について、問題訂正があります。受験生に「問題訂正があります。」

と口頭で伝えたうえ、四角の枠内を板書してください。

板書が見えない旨の申し出があった場合は、この用紙を直接、見せてください。交付は

しないこと。

【物理学 Physics】

問題 27

(誤)過程AB:

過程BC:

過程CD:

過程DA:

(正)過程A→B:

過程B→C:

過程C→D:

過程D→A:

Page 42: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 43: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 44: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 45: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 46: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 47: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at
Page 48: AE = cvAT nRT ptJ£ñ 9 w- 100 w Question 6 (I ) Describe the entropy S Of an ideal gas using the first law of thermodynamics, AE TAS - pav, and the equation for heat capacity at