A graph with distance traveled on one axis and time on the other. Time will go on the x axis and distance on the y because distance depends on the time.
A dual-axis graph can be used to show both temperature (on one axis) and precipitation (on another axis) on the same graph. Alternatively, a line graph can be used with two different lines representing temperature and precipitation over time.
Acceleration is represented on a graph by the slope of the velocity-time graph. A positive slope indicates acceleration in the positive direction, while a negative slope indicates acceleration in the negative direction. A horizontal line on the graph represents constant velocity, with zero acceleration.
The red line on a climate graph typically represents the average temperature over a specific period of time, such as a month or a year. It helps to visualize the trend and fluctuations in temperature over time for a specific location.
A climograph uses a line graph to represent temperature and a bar graph to represent precipitation. This allows for a clear visualization of the temperature and precipitation patterns over a specific period of time. The combination of these two graphs makes it easier to compare and understand the relationship between temperature and precipitation in a given location.
The best time to travel to a rainforest is during the dry season, when there is less rainfall and better weather for outdoor activities and wildlife spotting. It is also advisable to avoid the rainy season when heavy rainfall can lead to flooding and difficult travel conditions. Consider checking the specific climate patterns of the rainforest you plan to visit to determine the ideal time to travel.
A travel time graph can be used to find the distance from the epicenter of an earthquake.
The answer depends on whether it is a distance-time graph, speed-time graph or something else.
the distance from a epicenter to an earthquake :)
i think that it tells about special history moments.
You graph showing how far you travel in that time. If it's a constant speed, it keeps a constant top right direction, when stopped, it goes flat
The time-distance graph of seismic waves shows the relationship between the time it takes for seismic waves to travel and the distance they travel. It helps in determining the speed at which seismic waves propagate through the Earth's interior and provides information about the structure and composition of the Earth's layers.
A distance vs time squared graph shows shows the relationship between distance and time during an acceleration. An example of an acceleration value would be 3.4 m/s^2. The time is always squared in acceleration therefore the graph can show the rate of which an object is moving
300000 ~APEX
Speed. Not "velocity" unless you also quote the direction of travel.
The momentum-time graph is the integral of the force-time graph. that is, it is the area under the curve of the f-t graph.The momentum-time graph is the integral of the force-time graph. that is, it is the area under the curve of the f-t graph.The momentum-time graph is the integral of the force-time graph. that is, it is the area under the curve of the f-t graph.The momentum-time graph is the integral of the force-time graph. that is, it is the area under the curve of the f-t graph.
distance time graph is a graph traveled in a graph which shows how much we have traveled in equal period of time.
A proper speed-time graph is one in which time is plotted on the horizontal axis and the speed of the object under study is plotted on the vertical axis.In fact, what you will come across is most likely to be a radial-speed time graph. In such a graph, the speed depicted is the speed away from of towards the origin (or point of reference) or the component of speed in the radial direction. Movement across that direction is likely to be ignored.Also, to be of real use, you need a velocity time graph, which takes account of the direction of travel.