To determine the distance traveled from a position-time graph, calculate the area under the curve. This can be done by finding the area of each individual section and adding them together. The total area represents the total distance traveled.
To determine the wavelength from a graph, you can measure the distance between two consecutive peaks or troughs on the graph. This distance represents one full wavelength.
To determine the total displacement on a position-time graph, you can find the area under the curve. This involves calculating the total distance traveled in a specific direction, taking into account both positive and negative values.
To get speed from a distance-time graph, you would calculate the slope of the graph at a given point, as the gradient represents speed. To calculate total distance covered, you would find the total area under the graph, as this represents the total distance traveled over time.
The trend in the graph is that the distance traveled by the car increases steadily over time. This indicates that the car is moving and covering more ground as time progresses. The slope of the graph represents the speed or rate at which the car is traveling.
To determine acceleration from a distance-time graph, calculate the slope of the graph at a specific point. The steeper the slope, the greater the acceleration. The formula for acceleration is acceleration change in velocity / time.
distance time graph is a graph traveled in a graph which shows how much we have traveled in equal period of time.
Line graph. I would suggest a scatter graph. That would allow you to determine the line of best fit.
A distance time graph would show the distance traveled.
To determine speed from a distance-time graph, you can calculate the slope of the line on the graph. The slope is defined as the change in distance (vertical axis) divided by the change in time (horizontal axis). A steeper slope indicates a higher speed, while a flat line indicates no movement. The speed can be expressed as the ratio of distance traveled to the time taken, and it remains constant for linear sections of the graph.
To determine the wavelength from a graph, you can measure the distance between two consecutive peaks or troughs on the graph. This distance represents one full wavelength.
To determine the total displacement on a position-time graph, you can find the area under the curve. This involves calculating the total distance traveled in a specific direction, taking into account both positive and negative values.
Line graph
X axis is time. Y-axis is distance traveled
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A bobsled's distance-time graph indicates that it traveled 100 m in 25 s. What is the bobsled's speed
A travel time graph shows the relationship between the distance traveled and the time taken for a journey. It helps to visualize how travel time changes as distance increases, and can be useful for planning routes and estimating arrival times. The slope of the graph represents the speed of travel.
To get speed from a distance-time graph, you would calculate the slope of the graph at a given point, as the gradient represents speed. To calculate total distance covered, you would find the total area under the graph, as this represents the total distance traveled over time.