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The Smaller the Curvature in a Bend of a Road

Question 42

Multiple Choice

The smaller the curvature in a bend of a road, the faster a car can travel. Assume that the maximum speed around a turn is inversely proportional to the square root of the curvature. A car moving on the path The smaller the curvature in a bend of a road, the faster a car can travel. Assume that the maximum speed around a turn is inversely proportional to the square root of the curvature. A car moving on the path   (x and y are measured in miles)  can safely go 30 miles per hour at   . How fast can it go at   ? Round your answer to two decimal places. A)    mi/h B)    mi/h C)    mi/h D)    mi/h E)    mi/h (x and y are measured in miles) can safely go 30 miles per hour at The smaller the curvature in a bend of a road, the faster a car can travel. Assume that the maximum speed around a turn is inversely proportional to the square root of the curvature. A car moving on the path   (x and y are measured in miles)  can safely go 30 miles per hour at   . How fast can it go at   ? Round your answer to two decimal places. A)    mi/h B)    mi/h C)    mi/h D)    mi/h E)    mi/h . How fast can it go at The smaller the curvature in a bend of a road, the faster a car can travel. Assume that the maximum speed around a turn is inversely proportional to the square root of the curvature. A car moving on the path   (x and y are measured in miles)  can safely go 30 miles per hour at   . How fast can it go at   ? Round your answer to two decimal places. A)    mi/h B)    mi/h C)    mi/h D)    mi/h E)    mi/h ? Round your answer to two decimal places.


A) The smaller the curvature in a bend of a road, the faster a car can travel. Assume that the maximum speed around a turn is inversely proportional to the square root of the curvature. A car moving on the path   (x and y are measured in miles)  can safely go 30 miles per hour at   . How fast can it go at   ? Round your answer to two decimal places. A)    mi/h B)    mi/h C)    mi/h D)    mi/h E)    mi/h mi/h
B) The smaller the curvature in a bend of a road, the faster a car can travel. Assume that the maximum speed around a turn is inversely proportional to the square root of the curvature. A car moving on the path   (x and y are measured in miles)  can safely go 30 miles per hour at   . How fast can it go at   ? Round your answer to two decimal places. A)    mi/h B)    mi/h C)    mi/h D)    mi/h E)    mi/h mi/h
C) The smaller the curvature in a bend of a road, the faster a car can travel. Assume that the maximum speed around a turn is inversely proportional to the square root of the curvature. A car moving on the path   (x and y are measured in miles)  can safely go 30 miles per hour at   . How fast can it go at   ? Round your answer to two decimal places. A)    mi/h B)    mi/h C)    mi/h D)    mi/h E)    mi/h mi/h
D) The smaller the curvature in a bend of a road, the faster a car can travel. Assume that the maximum speed around a turn is inversely proportional to the square root of the curvature. A car moving on the path   (x and y are measured in miles)  can safely go 30 miles per hour at   . How fast can it go at   ? Round your answer to two decimal places. A)    mi/h B)    mi/h C)    mi/h D)    mi/h E)    mi/h mi/h
E) The smaller the curvature in a bend of a road, the faster a car can travel. Assume that the maximum speed around a turn is inversely proportional to the square root of the curvature. A car moving on the path   (x and y are measured in miles)  can safely go 30 miles per hour at   . How fast can it go at   ? Round your answer to two decimal places. A)    mi/h B)    mi/h C)    mi/h D)    mi/h E)    mi/h mi/h

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