Negative acceleration on a graph can be represented by a downward slope on a velocity-time graph, indicating that the velocity of an object is decreasing over time. Alternatively, on a position-time graph, negative acceleration can be shown as a curve that becomes less steep, indicating that the object is slowing down as it moves. Additionally, the acceleration value itself being negative can be indicated in the graph's legend or axis labels.
The area under an acceleration-time graph is equal to the object's velocity (not change in velocity).
A graph showing deceleration typically features a negative slope, indicating a reduction in velocity over time, while a graph showing acceleration displays a positive slope, indicating an increase in velocity. In a deceleration graph, the values of velocity decrease, often approaching zero, while in an acceleration graph, the velocity values increase. The shapes of the curves can also differ; a deceleration graph may show a smooth decline, while an acceleration graph might show a steep incline. Additionally, the axes may represent time and velocity in both cases, but the interpretation differs based on the direction of change.
By using the distance, speed, and acceleration, to show on the graph the constant speed of each car
A period of constant positive acceleration;a second period of zero acceleration; a third period of constant negative acceleration.
acceleration.
This depends on what the graph represents. If it is a graph of velocity on the vertical and time on the horizontal, then if acceleration is at a constant rate, the graph will be a straight line with positive slope (pointing 'up'). If acceleration stops, then the graph will be a horizontal line (zero acceleration or deceleration). If it is deceleration (negative acceleration), then the graph will have negative slope (pointing down).
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.
When a negative acceleration is graphed, the line slopes downward on a velocity-time graph. This is because negative acceleration causes a decrease in velocity over time, resulting in a negative slope on the graph.
A negative acceleration position-time graph indicates that the object is slowing down or decelerating.
Acceleration is negative.
On a graph of acceleration vs. time, during deceleration the line is below zero. On a graph of speed vs. time, during deceleration the line has a negative slope (sloping downward from left to right).
acceleration is the slope of the v t graph... so the acceleration is constant and negative. In other words, the object is slowing down at a constant rate.
The slope of a velocity vs. time graph represents acceleration. A positive slope indicates acceleration in the positive direction, a negative slope indicates acceleration in the negative direction, and a horizontal line indicates constant velocity.
True
The acceleration vs. time graph would show how an object's acceleration changes over time. A horizontal line at zero acceleration would indicate constant velocity. A straight line with a positive or negative slope would represent constant acceleration. A curved line would indicate changing acceleration.
The acceleration of an object.
False. A negative slope on a velocity vs. time graph indicates that the object is decelerating, not that it is not accelerating. Acceleration and deceleration are both forms of acceleration, but in opposite directions.