EXAMINATION
DURATION: 180 MIN No. of Students: 830
Department Name, Course Number & Section: ECOR 1034 A/B/C
Course Instructor(s): Dr. Derek I Gransden; Dr. Mehdi Eshaghi; Dr. Ed Cyr
AUTHORIZED MEMORANDA
Non-programmable calculators
Students MUST count the number of pages in this examination question paper before
beginning to write and report any discrepancy to a proctor. This question paper has 16
pages INCLUDING this cover sheet.
This examination question paper MAY NOT be taken from the examination room.
In addition to this question paper, students require: an examination booklet yes ☐ no ☒
a Scantron Sheet yes ☒ no ☐
Scrap paper yes ☒ no ☐
NAME:
STUDENT NUMBER:
Grading (Instructor/TA use only):
Section 1 /20 Section 2 /20 Section 3 /30
There are 3 sections to this exam. Formula sheets are on the last page, which you may
remove (answers on it will not be graded). Good luck and watch your time!
,ECOR 1034: Final exam December 13, 2025
Multiple Choice (Fill in the correct answer on the scantron form):
For the next four questions, see Figure 1: A student performs an
experiment with three light, frictionless wheeled carts as shown to the
right. Each cart is loaded with blocks of equal mass, and labelled I, II,
and III as shown.
1. The same force F is applied to each cart and they move equal
distances d. In which one of these three cases is more work
done by force F?
a. Cart I
b. Cart II
c. Cart III
d. the same work is done on each cart
Figure 1: Experiment with
2. The same force F is applied to each cart and they move equal three carts
distances d. Which cart will have more kinetic energy at the end
of distance d?
a. Cart I
b. Cart II
c. Cart III
d. all three will have the same kinetic energy
3. The same force F is applied to each cart and they move equal distances d. Which cart will move
faster at the end of distance d?
a. Cart I
b. Cart II
c. Cart III
d. all three will move with the same velocity
4. Approximately, what is the natural frequency of Cart III, if the spring has a stiffness of 100 N/m
and m = 1 kg?
a. 0.53 Hz
b. 0.92 rad/s
c. 3.3 Hz
d. 3.3 rad/s
e. 5.7 rad/s
For Questions 5 and 6, refer to Figure 2:
5. A particle strikes the smooth surface with a speed of 30 m/s.
If e = 0.8, 𝑣𝑥 2 is _____ after the collision.
a. Zero
b. Less than 𝑣𝑥1
c. Greater than 𝑣𝑥1 Figure 2: A particle strikes the
d. Equal to 𝑣𝑥1 smooth surface
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Gransden, Eshaghi, Cyr
, ECOR 1034: Final exam December 13, 2025
6. A particle strikes the smooth surface with a speed of 30 m/s. If e = 0.8, 𝑣𝑦 2 is _____ after the
collision.
a. 15 m/s
b. 21 m/s
c. 24 m/s
d. 26 m/s
Use Figure 3 for the following two questions: A large truck breaks down out on the road and receives a
push back into town by a small compact car as shown in the figure below.
Figure 3: Car pushing a truck
7. While the car, still pushing the truck, is speeding up to get up to cruising speed:
a. the amount of force with which the car pushes on the truck is equal to that with which
the truck pushes back on the car.
b. the amount of force with which the car pushes on the truck is smaller than that with which
the truck pushes back on the car.
c. the amount of force with which the car pushes on the truck is greater than that with which
the truck pushes back on the car.
d. the car's engine is running so the car pushes against the truck, but the truck's engine is
not running so the truck cannot push back against the car. The truck is pushed forward
simply because it is in the way of the car.
e. neither the car nor the truck exert any force on the other. The truck is pushed forward
simply because it is in the way of the car.
8. After the car reaches the constant cruising speed at which its driver wishes to push the truck:
a. the amount of force with which the car pushes on the truck is equal to that with which
the truck pushes back on the car.
b. the amount of force with which the car pushes on the truck is smaller than that with which
the truck pushes back on the car.
c. the amount of force with which the car pushes on the truck is greater than that with which
the truck pushes back on the car.
d. the car's engine is running so the car pushes against the truck, but the truck's engine is
not running so the truck cannot push back against the car. The truck is pushed forward
simply because it is in the way of the car.
e. neither the car nor the truck exert any force on the other. The truck is pushed forward
simply because it is in the way of the car.
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Gransden, Eshaghi, Cyr