[試題] 106-1 邱雅萍 普通物理學甲上 期末考

作者: TunaVentw (dB9)   2020-09-27 01:27:58
課程名稱︰普通物理學甲上
課程性質︰物理系大一必帶
課程教師︰邱雅萍
開課學院:理學院
開課系所︰物理學系
考試日期(年月日)︰2018/01/09
考試時限(分鐘):110分鐘
是否需發放獎勵金:是
(如未明確表示,則不予發放)
試題 :
國立臺灣大學物理系106-1學年度普通物理學期末考 2018.01.09
答題須知:
一、作答時,請標明題號,考試時間為10:20~12:10。
二、請詳列相關公式及計算過程,記得寫上單位,並以M.K.S制表示。
1.(5%)[Coriolis Force] This week, as the "bomb cyclone" hits the Northest in
the United States, conditions steadily worsen in Long Island, New York.(See
Figure.1) The air moves and the rotation of the Earth creates a cyclone
effect. Explain why the air rotates by the counterclockwise direction in
the Northern hemisphere (when viewed from above) by the Coriolis Force.
2.(10%)[The motion of liquid: Bernoulli's equation]
(1)(10%) You can use a hairdryer to do the following experiment. A strong
wind blows two pieces of papers. However, the space between these two
pieces of papers will close. Explain the phenomenon. (See movie 1)
3.(20%)[Rolling and Precession]
(1)(5%) Why does a rolling bicycle have greater stability than one at rest?
(2)(5%) Explain why in precessional motion, the torque changes the direction
of the spin angular momentum without changing its magnitude.
(3)(10%) Cylinder C (mass 10.0 kg and radius 0.070 m) rolls without slipping
on hill H as shwon in Figure 2. THe string does not strtch and is wrapped
around the cylinder C. What are the magnitude and direction of the accel-
eration?
4.(20%)[Oscillation]
(1)(10%) A long rod (length= L) is pivoted freely about an axis that does
not pass through its center of mass. Such an arrangement forms a physical
pendulum that executes SHM for small angular displacements. Compare the
period of the oscillation when we have a simple pendulum (length= L) and
set into oscillation. (See movie 2)
(2)(10%) When displaced and released, the 2kg mass in Figure 3 oscillates on
the frictionless horizontal surface with period π/6 seconds. If a small
mass is placed on the 2kg block and the coefficient of static friction
between the small mass and the 2kg block is 0.1, what is the maximum amp-
litude of oscillation before the small mass slips? (Assume the period is
unaffected by adding the small mass.)
│ ┌─┐
│ │ m│
│ k ┌┴─┴┐ Fig.3

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