The slope of a curved line at a point is the slope of the tangent to the curve at that point. If you know the equation of the curve and the curve is well behaved, you can find the derivative of the equation of the curve. The value of the derivative, at the point in question, is the slope of the curved line at that point.
The slope of the curve at each point on thegraph is the speed at that point in time. (Not velocity.)
if the slope of offer curves is constant, the terms of trad will
In mathematics, a constant rate of change is called a slope. For linear functions, the slope would describe the curve of the function. The world "constant" in this context means the slope and therefore angle of the curve will not change.
No. The slope on a speed vs time graph tells the acceleration.
indifference curve analysis is not much in use because it only tells us that demand curve has a negative slope except when they don't ....
The gradient of the tangents to the curve.
The principle of diminishing marginal utility explains the slope of the demand curve by letting us be able to see which direction the slope is in, which is always downward.
mainly the slope of Is curve depends on ; -the slope of investment schedule -the size of the multiplier
You find the slope of the tangent to the curve at the point of interest.
Slope of a Curve A number which is used to indicate the steepness of a curve at a particular point.The slope of a curve at a point is defined to be the slope of the tangent line. Thus the slope of a curve at a point is found using the derivative
If the curve is on the xy-plane, finding an expression for dy/dx will give you the slope of a curve at a point.
You find the tangent to the curve at the point of interest and then find the slope of the tangent.
The slope of a curved line at a point is the slope of the tangent to the curve at that point. If you know the equation of the curve and the curve is well behaved, you can find the derivative of the equation of the curve. The value of the derivative, at the point in question, is the slope of the curved line at that point.
The slope of a curved line changes as you go along the curve and so you may have a different slope at each point. Any any particular point, the slope of the curve is the slope of the straight line which is tangent to the curve at that point. If you know differential calculus, the slope of a curved line at a point is the value of the first derivative of the equation of the curve at that point. (Actually, even if you don't know differential calculus, the slope is still the value of the function's first derivative at that point.)
The slope of the tangent line at the maximum point of the curve is zero. So we say that as a curve point approaches to the maximum point, the slope of the tangent line at that point approaches to zero.
due to negative slope