3.0 meters, and then returns to first base.
Compared to the total distance traveled by the
player, the magnitude of the player’s total
displacement from the batter’s box is
(1) 3.0 m shorter (3) 3.0 m longer
(2) 6.0 m shorter (4) 6.0 m longer
Distance is a measure of the length of space covered over a certain period of time. While displacement is the change in position of an object from its starting point. Displacement is 6.0 meters shorterthan distance.
Total distance covered :
(Batter's box - > first base) + (beyond first base) + (return to first base)
Total Displacement :
(Batter's box - > first base) + (beyond first base) - (return to first base)
Difference in magnitude of Distance and Displacement :
Therefore, displacement is 6m shorter
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Answer:
(2) 6.0 m shorte.
Explanation:
Total distance = Distance from batter’s base to first base + Distance covered in overrunning + Distance covered in returning to first base
Total Distance = 27.4 + 3 + 3 = 33.4 m
Total displacement = Displacement from batter’s base to first base + Displacement covered in overrunning + Displacement covered in to returning first base
The 2nd and 3rd term will have same magnitude but opposite direction so, they will cancel out each other. Hence,
Total Displacement = 27.4 m
Hence, displacement will be 6.0 m shorter than distance.
b. The Maunder minimum is unrelated to climate.
c. Changes in the Earth’s tilt correlate to changes in climate.
d. Changes in the Earth’s orbit correlate to changes in climate.
Maunder minimum is related to climate due to the unusually low sunspot activity correlates to unusually cold climatic events. The answer is letter A. It happened around 1645 and 1715 and also coincided with the phenomena ‘Little Ice Age’ (1500 – 1850) in the Northern Hemisphere.
B) one Neutron
C) six Electrons
D) These masses are too tiny to measure
to point C at a constant velocity of 32 km/hr east. The blue car travels for 0.25 hours from
points B to point D at a constant velocity of 48 km/hr. How far has each car traveled from
point B? What is the position of each car relative to the origin, point A?
Using the speed - time relation, the distance moved by the cars from point B are 8 kilometers and 12 kilometers respectively.
Distance of car 1from Point B :
Distance traveled from point B = 32 × 0.25 = 8km
Distance of car 2from Point B :
Distance traveled from point B = 48 × 0.25 = 12km
The diagram isn't attached, hence question 2 cannot be answered accurately.
Therefore, the distance traveled from point B by car 1 and 2 is 8km and 12 km respectively.
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The red car has traveled 8 km east of point B, while the blue car has traveled 12 km west of point B.
To determine how far each car has traveled, we need to use the formula: distance = speed × time. The red car travels for 0.25 hours at a constant velocity of 32 km/hr, so the distance it travels is: distance = 32 km/hr × 0.25 hr = 8 km. The blue car travels for the same amount of time at a constant velocity of 48 km/hr, so the distance it travels is: distance = 48 km/hr × 0.25 hr = 12 km.
The position of each car relative to the origin, point A, is as follows: The red car is 8 km east of point A (since its velocity is in the east direction). The blue car is 12 km west of point A (since its velocity is in the opposite direction to the east).
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