If the volume is tripled while the density remains constant, the mass would also triple. This relationship is based on the formula: ( \text{Density} = \frac{\text{Mass}}{\text{Volume}} ). Triple the volume would result in triple the mass if density stays the same.
EXPLANATION:- We know that:- K.E = 1/2 m v^2 => K.E is directly proportional to the square of velocity. Conclusion:- If velocity becomes tripled than K.E. becomes Nine times to its initial value.
A position vs. time graph showing positive acceleration would be a straight line sloping upwards from left to right.
To calculate displacement from a displacement graph, find the area under the curve. If the graph is a straight line, you can subtract the initial position from the final position. If the graph is not a straight line, calculate the integral of the graph to determine the total displacement.
You can determine when an object is moving faster by looking at the steeper slopes on the graph. Steeper slopes represent greater changes in speed over time, indicating faster motion. Additionally, peaks in the graph may represent moments of maximum speed.
The displacement vs. time graph would show a curve that is increasing in a positive direction, meaning that the object is moving forward. The slope of the graph would be positive, indicating that the object is speeding up.
According to the ideal gas law, pressure times volume is constant. We'll call that constant c. PV=C, P=c/V, so pressure is inversely related to volume, so it would look like the graph y=1/x multiplied by a constant.
the graph should look like this:. . . . . . . .
When other variables are held constant in ideal gas law, volume and pressure have an inversely proportional relationship, which means that as volume increases, pressure decreases and as volume decreases, pressure increases. Look at desmos and put in y=1/x and look at the positive part of the graph to get a better idea of what I'm talking about.
What does a Step Graph look like?
Since the volume of a cone is proportional to the square of the radius (look at the formula), double the radius would mean four times the volume.
It would help if you look at the chart graph or table!
The first step in reading a graph is to look at the title to learn what the graph is about.
Use those speacial reading graphs You should have a hydrograph to look at. Look at the curve on this graph, the highest point on this curve is the peak flow. It cannot be calculated, just read off a graph. Peak Flow = Tidal Volume x 60 / I-time
The answer depends on what is plotted on the graph and what is happening with the acceleration then.
a data i like a graph it could be any kind of graph pie,bar,line graph
look and see
look like a ball