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Create
no acceleration?
x = x
_{0}
+
^{1}
/
_{2}
(
v
+
v
_{0}
)
t
no position?
v = v
_{0 }
+ at
no final velocity?
x = x
_{0}
+ v
_{0}
t +
^{1}
/
_{2}
at
^{2}
no initial velocity?
x = x
_{0 }
+ vt

^{1}
/
_{2}
at
^{2}
no time variable?
v
^{2}
= v
_{o}
^{2}
+ 2a(x  x
_{o}
)
What does
v, or v
_{f }
stand for?
A) initial velocity
B) average velocity
C) final velocity
D) change in velocity
E) displacement
C) final velocity
the correct answer is final velocity, and can be used in an equation:
v
=
v
_{o}
+ at
what does
x
stand for?
A) initial y integer logarithmic value
B) initial y value for position
C) initial x integer logarithmic value
D) final displacement
E) initial x value for position
E) initial x value for position
the correct answer is initial x value for position, and can be used in the equation
x = x
_{0}
+
^{1}
/
_{2}
(v + v
_{o}
)t
what does
v
_{0}
stand for?
A) final velocity
B) average velocity
C) initial velocity
D) eventual velocity
C) initial velocity
the correct answer is initial velocity, and can be used in the equation
v = v
_{0 }
+ at
or
v
_{0}
= at

v
what does
a
stand for?
acceleration
what does
t
stand for
time
Author
ebeagles17
ID
17165
Card Set
kinematics
Description
5 essential kinematics formulas
Updated
20100502T04:54:05Z
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