To find the proportional limit on a stress-strain graph, locate the point where the graph transitions from a straight line to a curve. This point represents the maximum stress at which the material behaves elastically, meaning it returns to its original shape after the stress is removed.
To find acceleration from a speed-time graph, you need to calculate the slope of the speed-time graph. The slope at any point on the speed-time graph represents the acceleration at that specific time. If the speed-time graph is linear, then the acceleration will be constant. If the speed-time graph is curved, you can find the acceleration by calculating the slope of the tangent line at a specific point.
To find the area under a graph, you can use calculus by integrating the function that represents the graph. This involves finding the definite integral of the function over the desired interval. The result of the integration will give you the area under the graph.
You can find the speed of an object from its distance-time graph by calculating the slope of the graph at a specific point. The slope represents the object's velocity at that particular moment. By determining the slope, you can find the speed of the object at that point on the graph.
To find resistance from a graph of voltage vs. current, you can calculate the slope of the graph. Resistance is equal to the slope, so you can divide the voltage by the current to determine the resistance. The unit of resistance is ohms (Ω).
To find the velocity of a position-time graph, you calculate the slope of the graph at a specific point. The slope represents the rate of change of position with respect to time, which is the velocity. The steeper the slope, the greater the velocity.
Find the shortest bar and read what state it represents. (In a bar graph, the length of each bar is proportional to the number it represents. )
There is no need for a scale on a pie chart because the sizes of the slices are proportional to the percentage of the quantity pictured by the graph.
You find the equation of a graph by finding an equation with a graph.
Find directed graph that has the adjacency matrix Find directed graph that has the adjacency matrix
we can cross multiply the two equivalent equations and then find the fourth proportional
To find the constant of proportionality using a graph, identify two points on the line that represents the proportional relationship. Calculate the ratio of the values of the dependent variable (y) to the independent variable (x) at these points, which is given by the formula ( k = \frac{y}{x} ). This ratio remains constant for all points on the line, representing the constant of proportionality. If the graph passes through the origin, the slope of the line also represents this constant.
You can print free graph paper if you have a printer. You can find the free graph paper templates available online at the Print Free Graph Paper website.
if they are proportional
Dijkstra's algorithm fails to find the shortest path in a graph when the graph has negative edge weights.
The answer depends on what variables the graph shows.
u find the common denominator
sine graph will be formed at origine of graph and cosine graph is find on y-axise