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Learning Goals combine Statements (what students know) with Actions (what students can do).

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Label Description Status Operations
IdentifyGreaterVelChangeDuration (Copy) Given equal net forces acting on equal-mass objects for different durations, the student identifies the object that experiences the greater change of velocity. Draft Edit
IdentifyGreaterVelChangeDuration (Copy) (Copy) Given equal net forces acting on equal-mass objects for different durations, the student identifies the object that experiences the greater change of velocity. Draft Edit
IdentifyGreaterVelChangeDuration (Copy) (Copy) Given equal net forces acting on equal-mass objects for different durations, the student identifies the object that experiences the greater change of velocity. Draft Edit
IdentifyGreaterVelChangeDuration (Copy) (Copy) (Copy) Given equal net forces acting on equal-mass objects for different durations, the student identifies the object that experiences the greater change of velocity. Draft Edit
K-PS2-1 Plan and conduct an investigation to compare the effects of different strengths or different directions of pushes and pulls on the motion of an object. Draft Edit
K-PS2-1 (Copy) Plan and conduct an investigation to compare the effects of different strengths or different directions of pushes and pulls on the motion of an object. Draft Edit
K-PS2-1 (Copy) (Copy) Plan and conduct an investigation to compare the effects of different strengths or different directions of pushes and pulls on the motion of an object. Draft Edit
KinEqn1CalcAccel For an object in one-dimensional motion with constant acceleration, given the initial velocity, final velocity, and time interval of the acceleration, the student calculates the object's acceleration. Draft Edit
KinEqn1CalcAccel (Copy) For an object in one-dimensional motion with constant acceleration, given the initial velocity, final velocity, and time interval of the acceleration, the student calculates the object's acceleration. Draft Edit
KinEqn1CalcAccel (Copy) For an object in one-dimensional motion with constant acceleration, given the initial velocity, final velocity, and time interval of the acceleration, the student calculates the object's acceleration. Draft Edit
KinEqn1CalcAccel (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given the initial velocity, final velocity, and time interval of the acceleration, the student calculates the object's acceleration. Draft Edit
KinEqn1CalcAny (Copy) For an object in one-dimensional motion with constant acceleration, given any three of the initial velocity $v_1$, final velocity $v_2$, acceleration $a$, and time interval of the acceleration $(t_2-t_1)$, the student calculates the fourth. Draft Edit
KinEqn1CalcAny (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given any three of the initial velocity $v_1$, final velocity $v_2$, acceleration $a$, and time interval of the acceleration $(t_2-t_1)$, the student calculates the fourth. Draft Edit
KinEqn1CalcAny (Copy) (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given any three of the initial velocity $v_1$, final velocity $v_2$, acceleration $a$, and time interval of the acceleration $(t_2-t_1)$, the student calculates the fourth. Draft Edit
KinEqn1CalcFinalVel For an object in one-dimensional motion with constant acceleration, given the initial velocity, acceleration, and time interval of the acceleration, the student calculates the object's final velocity. Draft Edit
KinEqn1CalcFinalVel (Copy) For an object in one-dimensional motion with constant acceleration, given the initial velocity, acceleration, and time interval of the acceleration, the student calculates the object's final velocity. Draft Edit
KinEqn1CalcFinalVel (Copy) For an object in one-dimensional motion with constant acceleration, given the initial velocity, acceleration, and time interval of the acceleration, the student calculates the object's final velocity. Draft Edit
KinEqn1CalcFinalVel (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given the initial velocity, acceleration, and time interval of the acceleration, the student calculates the object's final velocity. Draft Edit
KinEqn1CalcFinalVel (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given the initial velocity, acceleration, and time interval of the acceleration, the student calculates the object's final velocity. Draft Edit
KinEqn1CalcInitVel For an object in one-dimensional motion with constant acceleration, given the final velocity, acceleration, and time interval of the acceleration, the student calculates the object's initial velocity. Draft Edit
KinEqn1CalcInitVel (Copy) For an object in one-dimensional motion with constant acceleration, given the final velocity, acceleration, and time interval of the acceleration, the student calculates the object's initial velocity. Draft Edit
KinEqn1CalcInitVel (Copy) For an object in one-dimensional motion with constant acceleration, given the final velocity, acceleration, and time interval of the acceleration, the student calculates the object's initial velocity. Draft Edit
KinEqn1CalcInitVel (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given the final velocity, acceleration, and time interval of the acceleration, the student calculates the object's initial velocity. Draft Edit
KinEqn1CalcInitVel (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given the final velocity, acceleration, and time interval of the acceleration, the student calculates the object's initial velocity. Draft Edit
KinEqn1CalcInitVel (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given the final velocity, acceleration, and time interval of the acceleration, the student calculates the object's initial velocity. Draft Edit
KinEqn1CalcInitVel (Copy) (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given the final velocity, acceleration, and time interval of the acceleration, the student calculates the object's initial velocity. Draft Edit
KinEqn1CalcInitVel (Copy) (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given the final velocity, acceleration, and time interval of the acceleration, the student calculates the object's initial velocity. Draft Edit
KinEqn1CalcTimeInterval For an object in one-dimensional motion with constant acceleration, given the initial velocity, final velocity, and acceleration, the student calculates the time interval. Draft Edit
KinEqn1CalcTimeInterval (Copy) For an object in one-dimensional motion with constant acceleration, given the initial velocity, final velocity, and acceleration, the student calculates the time interval. Draft Edit
KinEqn1CalcTimeInterval (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given the initial velocity, final velocity, and acceleration, the student calculates the time interval. Draft Edit
KinEqn2CalcAny (Copy) For an object in one-dimensional motion with constant acceleration, given any four of the initial position $x_1$, final position $x_2$, initial velocity $v_1$, final velocity $v_2$, and time interval $(t_2-t_1)$, the student calculates the fifth. Draft Edit
KinEqn2CalcAny (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given any four of the initial position $x_1$, final position $x_2$, initial velocity $v_1$, final velocity $v_2$, and time interval $(t_2-t_1)$, the student calculates the fifth. Draft Edit
KinEqn2CalcAny (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given any four of the initial position $x_1$, final position $x_2$, initial velocity $v_1$, final velocity $v_2$, and time interval $(t_2-t_1)$, the student calculates the fifth. Draft Edit
KinEqn2CalcAny (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given any four of the initial position $x_1$, final position $x_2$, initial velocity $v_1$, final velocity $v_2$, and time interval $(t_2-t_1)$, the student calculates the fifth. Draft Edit
KinEqn2CalcAny (Copy) (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given any four of the initial position $x_1$, final position $x_2$, initial velocity $v_1$, final velocity $v_2$, and time interval $(t_2-t_1)$, the student calculates the fifth. Draft Edit
KinEqn2CalcAny (Copy) (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given any four of the initial position $x_1$, final position $x_2$, initial velocity $v_1$, final velocity $v_2$, and time interval $(t_2-t_1)$, the student calculates the fifth. Draft Edit
KinEqn2CalcFinalPos For an object in one-dimensional motion with constant acceleration, given the initial position, initial velocity, final velocity, and time interval of the acceleration, the student calculates the object's final position. Draft Edit
KinEqn2CalcFinalPos (Copy) For an object in one-dimensional motion with constant acceleration, given the initial position, initial velocity, final velocity, and time interval of the acceleration, the student calculates the object's final position. Draft Edit
KinEqn2CalcFinalPos (Copy) For an object in one-dimensional motion with constant acceleration, given the initial position, initial velocity, final velocity, and time interval of the acceleration, the student calculates the object's final position. Draft Edit
KinEqn2CalcFinalVel For an object in one-dimensional motion with constant acceleration, given the initial position $x_1$, final position $x_2$, initial velocity $v_1$, and time interval $(t_2-t_1)$, the student calculates the final velocity $v_2$. Draft Edit
KinEqn2CalcFinalVel (Copy) For an object in one-dimensional motion with constant acceleration, given the initial position $x_1$, final position $x_2$, initial velocity $v_1$, and time interval $(t_2-t_1)$, the student calculates the final velocity $v_2$. Draft Edit
KinEqn2CalcFinalVel (Copy) For an object in one-dimensional motion with constant acceleration, given the initial position $x_1$, final position $x_2$, initial velocity $v_1$, and time interval $(t_2-t_1)$, the student calculates the final velocity $v_2$. Draft Edit
KinEqn2CalcFinalVel (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given the initial position $x_1$, final position $x_2$, initial velocity $v_1$, and time interval $(t_2-t_1)$, the student calculates the final velocity $v_2$. Draft Edit
KinEqn2CalcFinalVel (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given the initial position $x_1$, final position $x_2$, initial velocity $v_1$, and time interval $(t_2-t_1)$, the student calculates the final velocity $v_2$. Draft Edit
KinEqn2CalcInitPos For an object in one-dimensional motion with constant acceleration, given the final position, initial velocity, final velocity, and time interval of the acceleration, the student calculates the object's initial position. Draft Edit
KinEqn2CalcInitPos (Copy) For an object in one-dimensional motion with constant acceleration, given the final position, initial velocity, final velocity, and time interval of the acceleration, the student calculates the object's initial position. Draft Edit
KinEqn2CalcInitPos (Copy) (Copy) For an object in one-dimensional motion with constant acceleration, given the final position, initial velocity, final velocity, and time interval of the acceleration, the student calculates the object's initial position. Draft Edit
KinEqn2CalcInitVel For an object in one-dimensional motion with constant acceleration, given the initial position $x_1$, final position $x_2$, final velocity $v_2$, and time interval $(t_2-t_1)$, the student calculates the initial velocity $v_1$. Draft Edit
KinEqn2CalcInitVel (Copy) For an object in one-dimensional motion with constant acceleration, given the initial position $x_1$, final position $x_2$, final velocity $v_2$, and time interval $(t_2-t_1)$, the student calculates the initial velocity $v_1$. Draft Edit
KinEqn2CalcInitVel (Copy) For an object in one-dimensional motion with constant acceleration, given the initial position $x_1$, final position $x_2$, final velocity $v_2$, and time interval $(t_2-t_1)$, the student calculates the initial velocity $v_1$. Draft Edit

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