精華區beta NTU-Exam 關於我們 聯絡資訊
課程名稱︰普通物理甲下 課程性質︰必 課程教師︰趙治宇 開課學院:理學院 開課系所︰物理系 考試日期(年月日)︰4/28/100 考試時限(分鐘): 3hr 是否需發放獎勵金:yes (如未明確表示,則不予發放) 試題 : 滿分120 1. (a) Using the concept of energy band to describe the insulator, semiconductor, and metal. (b) Describe the n-type and p-type semiconductors. (6,4 points) 2. How to design the voltmeter and ammeter, and how they are connected with the circuits for application? (10 points) 3. Design an experimental setup that can measure thermal signal down to 10^-9 joule. (10 points) 4. Describe tje microscopic milecular model of dielectrics in capacitor, and briefly state why the capacitance of a capacitor should increase when a dielectric is inserted between the capacitor plates. (10 points) 5. A copper wire, which is 3.2 mm in diameter carries a current of 5 (A). Determone (a) drift velocity of the free electrons. (b) Estimate the root mean squre speed of electrons assuming they behave like ab ideal gas at 20 degree C. Assume that one electron per Cu atom is free to tmove. The mass density of copper is 8.8g/cm^3, and the atomic of Cu is 63.5g/mol. (7,3 ponts) 6. Describe the Hall effect and what important physics were found in the Hall's experiments? (10 points) 7. Two charged beads are on the plastic ring in Fig.1(a). Bead 2, which is not shown, is fixed in the place on the ring, which has radius R = 60 cm. Bead 1 is initially on the x axis at angle of 0. Tis is the moved to the opposite side, angle of pi, through the first and second quardrants of the xy coordinate ststem. Figure 1(b) gives the x component of the net electric field produced at the origin by the two beads as a function of the angle, and Figure 1(c) gives the y component. The vertical axis scales are set by Exs = -5.0 E4 N/C and Eys = -9.0 E4 N/C. (a) At what angle is bead 2 located? What are charges of (b) Bead 1 and (c) Bead 2? (4,3,3 points) Figure (a): 一個圓 R = 60 cm, 上標有 Bead 1 以及 the angle. Figure (b): at the angle = 0, Ex=-Exs; at the angle = pi/2, Ex=0; at the angle = pi, Ex=Exs. Figure (c): at the angle = 0 Ey = 4/9 Eys; at the angle = pi/2, Ey=Eys at the angle = pi, Ey=4/9 Eys (都是用圖形表示,可是BBS話不出來,因此用文字表示圖形重點所在 by 我) 8. A non-conducting solid sphere has a uniform volume charge density d. Let -> r be the vectir frin tge cebter if the sphere to a generak oiubt p within the sphere. (a) Determine the electric field E at P. (b) A psherical cavity is hollowed out of the sphere, as shown in Figure 2. Show that the electric field at all poonts within the cavity is uniform and equal to da/3*epson, where a is the position vector from the center of the sphere to the center of the cavity. (5,5 points) Figure 2: 一個球挖掉一部份 (同7. 說明,同理,epson的那個符號我打不出來。 9. Capaitor3 in Figure 3(a) is a varible capacitor. Figure 3(b) gives the electric potential V1 across capacitor 1 versus C3. The horizontal scale is set by C3s = 12.0 uF. Electric potential V1 approaches an asymptote of 8.0 V as C3 approaches infinity. What are (a) the electirc potential V across the battery, (b) C1, and (c) C2? (4,3,3 points) Figure 3(a): --- -------------| | | | === | === C1 | | | | | ------ ====== | | ==== V | | | C2 === === C3 | === === | | | | | | --------------------- (-, | 都表是導線) Figure 3(b): when C3 = 0, V1 = 2 V; when C3 = 5 uF, V1 = 5 V when C3 =10, V1 = 6 V; (說明同7.,圖形非線性) 10. In Figure 4, the resitances are R1 = 1.0 ohm and R2 = 2.0 ohm, and the ideal batteries have emfs E1 = 2.0 V and E2 = E3 = 4.0 V. What are the (a) size and (b) direction (up or down) of the current in battery 1, (c) size and (d) direction (up or down) of the current in battery 2, (e) size and (f) direction (up or down) of the current in battery 3.? (g) What is the potential fifference Va - Vb? (10 points) (p.s. 未說明各小題分配) Figure 4: --------R1----a--------R1-----| | | | | R | | 2 | | | | | | ======= ======= ======= ===== E3 ===== E1 ===== E2 | | | R | | 1 |------R1-----b---------------| (說明同9.) 11. Figure 5 shows a wood cylinder of mass m and length L, with N turns of wire wrapped around it longitudinally, so that the plane of the wure coild contains the long central axis of the cylinder. The cylinder is released on a plane inclined at an angle theta (希臘符號) to the horizontal, with the plane of the coil parallel to the plane. If there is a vertical uniform magnetic field of magnitude B (T), that is the least current i through the coil that keeps the cylinder from rolling down the plane? Describe it in terms of m, L, N, B, theta, g (gravity). (10 points) Figure 5: |\ | \ | \ | \ | \ | \ --------theta (非原圖,原圖是立體的,不好畫,不過敘述很清楚了。) 12. In unit-vetor notation, what is the magnetic field at point P in Figure 6? Please describe it in terms of a, i, mu0 (磁場的常數), and pi. (10 points) Figure 6: --------------- | | | p | | | ^ y | | | ^ i | | | | |----> x | | | | --------------- (說明: 邊長為a的正方形,上帶有電流i, p距離上與左導線均為a/4。) Exam ends here. -- 花退殘紅青杏小,燕子飛時,綠水人家繞。枝上柳棉吹又少,天涯何處無芳草。 牆裡鞦韆牆外道,牆外行人,牆裡佳人笑。笑漸不聞聲漸悄,多情卻被無情惱。 -- ※ 發信站: 批踢踢實業坊(ptt.cc) ◆ From: 140.112.218.123 考題純英文,中文是我自己說明,有些符號打不出來。 ※ 編輯: lukqwertyuio 來自: 140.112.218.123 (04/29 06:42)