Question

Direct Variation

The distance traveled by a falling object varies directly as the square of the time it spends in falling. If a body falls 64ft in 2 seconds, find the distance that It will fall in 10 seconds.

0 0
Add a comment Improve this question Transcribed image text
Request Professional Answer

Request Answer!

We need at least 9 more requests to produce the answer.

1 / 10 have requested this problem solution

The more requests, the faster the answer.

Request! (Login Required)


All students who have requested the answer will be notified once they are available.
Know the answer?
Add Answer to:
Direct Variation
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Similar Homework Help Questions
  • DETAILS Find a function whose graph is a parabola with the given vertex and that passes...

    DETAILS Find a function whose graph is a parabola with the given vertex and that passes through the given point. Write your answer in vertex form: f(x)-a(x-)P+* Vertex (-2, -3); passes through the point (-1,-6) f(x) DETAILS Solve the problem. The distance that a freely falling body falls varies directly as the square of the time it falls. If a body falls 144 feet in 3 seconds, how far will it fall in 5 seconds? ft

  • 10. The time,t,in seconds varies directly with the square root of the distance, d, in feet...

    10. The time,t,in seconds varies directly with the square root of the distance, d, in feet that a dropped ball has fallen. It takes 2 seconds for a ball to fall 64 feet. a. Find a formula to model this situation. b. How long would it take for the ball to fall 100 feet?

  • Do not prompt the user for input during the execution of your program. Do not pause...

    Do not prompt the user for input during the execution of your program. Do not pause at the end of the execution waiting for the user's input. Important notes: from now on, function prototypes should be written before the main function. And function definitions should be written after the main function. 10% will be deducted if this is not observed. Zybooks MODULES: MODULE 6 a.) (Lab4a.cpp) Chapter 6, “Falling Distance." The following formula can be used to determine the distance...

  • C++ LANGUAGE The following formula can be used to determine the distance an object falls in...

    C++ LANGUAGE The following formula can be used to determine the distance an object falls in a specific time period: d = 1 2 g t 2 where d is the distance in meters, g is 9.8, and t is the amount of time, in seconds, the object has been falling. Write a function named fallingDistance that accepts an object's falling time in seconds as an argument. You must define a named constant for g using a meaningful name and...

  • 1. During the last 2 seconds of free fall the body covered the distance twice greater...

    1. During the last 2 seconds of free fall the body covered the distance twice greater than during previous time of falling. Find the height and the time of falling.

  • ra Nat Formula Sheet Previous Quest Free fall means that an object is falling freely with...

    ra Nat Formula Sheet Previous Quest Free fall means that an object is falling freely with no forces acting upon it except gravity. The distance the object falls, or height, h, is half the product of gravity and the square of the time falling Which of the following represents the equation in terms of t? 3 4 5 6 8 9

  • PYTHON HOMEWORK When an object is falling because of gravity, the following formula can be used...

    PYTHON HOMEWORK When an object is falling because of gravity, the following formula can be used ot determine the distance the object falls during a specific time period: d=1/2 g t^2 The variables in the formula are as follows: d is the distance in meters(m), g is the acceleration due to gravity, an and its value is 9.8 m/s^2, t is the time duration in seconds(s). Write a function named falling_distance() that accepts an object's falling duration(time) in seconds as...

  • Solving Direct Variation Problems For the following exercises, use Kepler's Law, which states that the square...

    Solving Direct Variation Problems For the following exercises, use Kepler's Law, which states that the square of the time, T (measured in Earth years), required for a planet to orbit the Sun varies directly with the cube of the mean distance, a (measured in billions of kilometers), that the planet is from the Sun. a. Use Uranus's time of 84 and mean distance of 2.871 billion kilometers, find the equation relating T and a. (Enter an equation in terms of...

  • Solving Direct Variation Problems For the following exercises, use Kepler's Law, which states that the square...

    Solving Direct Variation Problems For the following exercises, use Kepler's Law, which states that the square of the time, T (measured in Earth years), required for a planet to orbit the Sun varies directly with the cube of the mean distance, a (measured in billions of miles), that the planet is from the Sun. a. Use Jupiter's time of 12 and mean distance of 0.484 billion miles, find the equation relating T and a. (Enter an equation in terms of...

  • What is the best control in the prevention of slipping/tripping hazards? Question 8 options: 1) Floor...

    What is the best control in the prevention of slipping/tripping hazards? Question 8 options: 1) Floor mats 2) Flat surfaces 3) Proper footwear 4) Good housekeeping Save Question 9 (Mandatory) (1 point) Falls often cause injuries, so one of the significant aspects of falls is the displacement and motion of a body. It is defined as how far a body moves vertically during the fall. Accordingly, there are three important factors that should be known to compute the kinetic energy...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT