

Presentasi Tanpa Judul
Presentation
•
Physics
•
11th Grade
•
Practice Problem
•
Hard
Erna Aprilia
FREE Resource
18 Slides • 14 Questions
1
2
Multiple Choice
What does the logo of Bailmu represent?
Education
Technology
Health
Finance
3
4
5
Multiple Choice
What number is represented in the image?
1
2
3
4
6
7
8
9
Multiple Choice
What does it mean for an object to be in motion according to the text?
It is stationary
It is moving relative to another object
It is at rest
It is accelerating
10
11
Multiple Choice
Berapa besar jarak yang ditempuh dan perpindahan Rudi?
20 m
50 m
80 m
30 m
12
13
Multiple Choice
What is the difference between scalar and vector quantities as described in the text?
Scalar quantities have direction
Vector quantities have only magnitude
Distance is a scalar quantity
Displacement is a scalar quantity
14
15
Multiple Choice
What is the definition of displacement according to the image?
It depends on the path taken.
It only depends on the initial and final positions.
It is always positive.
It is always negative.
16
17
18
Multiple Choice
What is the formula for average acceleration?
a = (v2 - v1) / (t2 - t1)
a = v / t
a = (v1 + v2) / 2
a = v2 - v1
19
20
Multiple Choice
What does GLB stand for in the context of motion?
Gerak Lurus Beraturan
Gerak Lurus Berubah
Gerak Lurus Bervariasi
Gerak Lurus Bebas
21
22
Multiple Choice
What is the equation for the motion of an object in uniform linear motion (GLB)?
v = Δs/Δt
s = vt + s0
v = s - s0
s = Δs/t
23
24
Multiple Choice
What is the equation for the final velocity in uniformly accelerated linear motion?
v_t = v_0 + at
v_t = v_0 - at
v_t = v_0 * at
v_t = v_0 / at
25
26
Multiple Choice
What is the equation for the position of an object in free fall?
h = v0t + 1/2gt^2
h = v0t - 1/2gt^2
h = 1/2gt^2
h = v0t + gt
27
28
Multiple Choice
What is the equation for the velocity of an object in free fall?
v = gt
v = g/h
v = h/g
v = g*t
29
30
Multiple Choice
What are the equations of motion for an object moving in a straight line with uniformly decreasing speed?
vt = v0 + at
Δs = v0t + 1/2 at^2
vt = v0 - at
vt^2 = v0^2 + 2aΔs
31
32
Multiple Choice
What are the equations that apply to vertical motion upwards?
vt = v0 - gt
h = v0t - 1/2 gt^2
tmax = v0/g
hmax = v0^2/2g
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