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Which of the following equations represents the resultant vector of two forces F_1 and
F_2 acting at an angle
\theta apart starting from the same origin? i.e. calculate F1 + F2. Refer to the image below for an illustration. Remember that when adding vectors, the tail of one vector needs to connect to the head of another.
Which of the following statements is false?
Consider the following equation: A= BC \frac{\text{d}^2D}{\text{d}E^2} It is known that the dimension of A is [M]/([L][T]2), the dimension of C is [L], the dimension of D is [L]/[T], and the dimension of E is [L]. Note that for the analysis, you can ignore the derivatives \text{d} do not have any dimensions.
Which of the following represents the dimension(s) of B if the equation is dimensionally homogeneous?
Which of the following combinations of SI base units represents a force?
Match the following dimensions with the correct terms
Which one of the following statements is not described by Newton’s laws of motion?
Which of the following is true regarding zero acceleration?
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