A particle of mass m moves along the x axis. Its position varies with time according to x = in seconds. Determine the velocity v(t) of the particle as a function of t. Determine the acceleration a(t) of the particle as a function of t. Determine the power P(t) delivered to the particle as a function of t. Determine the work W done on the particle by the net force from t = 0 tot = t₁ in terms of defined variables and numerical constants. v(t) = a(t) = P(t) = Incorrect W = Incorrect 187² – - 12t 36t - 12 6t³ - 61², where x is in meters and t is (36t – 12) (18t² – 12t) 1624-2162+72

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter7: Conservation Of Energy
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A particle of mass m moves along the x axis. Its position varies with time according to x = 6t³ - 6t², where x is in meters and t is
in seconds.
Determine the velocity u(t) of the particle as a function of t.
Determine the acceleration a(t) of the particle as a function
of t.
Determine the power P(t) delivered to the particle as a
function of t.
Determine the work W done on the particle by the net force
from t = 0 to t = t₁ in terms of defined variables and
numerical constants.
v(t) =
a(t): =
P(t): =
Incorrect
W =
Incorrect
187² - 12t
36t - 12
(36t – 12) (187² - 12t)
162-216³+724
Transcribed Image Text:A particle of mass m moves along the x axis. Its position varies with time according to x = 6t³ - 6t², where x is in meters and t is in seconds. Determine the velocity u(t) of the particle as a function of t. Determine the acceleration a(t) of the particle as a function of t. Determine the power P(t) delivered to the particle as a function of t. Determine the work W done on the particle by the net force from t = 0 to t = t₁ in terms of defined variables and numerical constants. v(t) = a(t): = P(t): = Incorrect W = Incorrect 187² - 12t 36t - 12 (36t – 12) (187² - 12t) 162-216³+724
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