Answer:
Rate of change of length as a function of time is given by
Explanation:
The length as function of time is given by
Differentiating with respect to time we get
Choose 1 answer:
(Choice A) A kilogram is larger than a pound, so the scale could measure more massive rocks.
(Choice B) Accurate measurements cannot be made in pounds.
(Choice C) Pounds cannot be converted to kilograms.
(Choice D) It is easier to compare measurements when using the same unit system.
Answer:
(D). It is easier to compare measurements when using the same unit system.
Explanation:
Kilograms are the standard unit of mass in the metric system, while pounds are the standard unit of mass in the imperial system.
The two systems are not directly convertible, so it would be difficult to compare measurements made in different units.
Therefore, the teacher requires that the students make their measurements in kilograms to simplify the comparison of their results.
So, answer (D). It is easier to compare measurements when using the same unit system.
Let's see the other option:
For verified answers and to learn more:
Answer:
Choice D
Explanation:
The correct answer is (Choice D) It is easier to compare measurements when using the same unit system.
When conducting scientific experiments or measurements, it is crucial to maintain uniformity in the units of measurement to facilitate accurate comparisons and analysis. By requiring all students to measure the masses of rocks in kilograms, the teacher ensures consistency and eliminates any potential confusion that may arise from using different unit systems.
Using the same unit system allows for straightforward comparisons and calculations without the need for converting between units. It simplifies data analysis and interpretation, which is crucial for scientific accuracy and understanding. By standardizing the unit of measurement to kilograms, the students can directly compare the masses of rocks and draw meaningful conclusions from their data.
2) Will the image be erect or inverted?
3) Will the image be enlarged, diminished, or the same size?
4) What kind of mirror is this?
Answer:
1) Image is formed at B
2) The image is an inverted real image
3) The image is a diminished image
4) The mirror is a concave mirror.
Explanation:
According to the diagram, object placed at this point in front of the curved mirror (concave) is placed beyond the center of curvature of the mirror.
To form images by an object placed in front of a curved mirror, ray diagrams are used.
According to the diagram, the first ray from the object incidented on the mirror and parallel to the principal axis converges at the focus (f) after reflection. The second incident ray pass through the focus and then reflect back with reflected ray parallel to the principal axis.
The two reflected ray intersects back at a point B according to the diagram and the image will be formed at that point B with the image head pointing towards the point of intersection.
According to the diagram above, the image will be formed at B and the nature of the image will be inverted, real, diminished (smaller than the object) and formed between the center of curvature and the focus of the mirror.
The mirror in the diagram is a concave mirror since the plane surface of the mirror is bent inwards.
Answer: The correct answer is electromagnetic wave.
Explanation:
Electromagnetic wave is wave in which the electric field and the magnetic field are perpendicular to each other. Both fields are directed to the direction of the propagation of the wave.
Electromagnetic wave is transverse in nature. It travels with the speed of the light. It does not need medium to travel. It can be transmitted through the vacuum of space.
Therefore, the correct answer is electromagnetic wave.