Which car has the greatest acceleration during the time interval 10 seconds to 15 seconds

Answers

Answer 1
Answer:
Whichever one has the greatest gain in speed during that time period has.

If I could see the picture or the rest of the information that goes with that
question, I could tell you exactly which one it is.


Answer 2
Answer:

The dragster, which can accelerate at 26 m/s², is likely to have a higher acceleration between 10 to 15 seconds compared to a typical sports car with an Acceleration rate of 5 m/s².

To determine which car has the greatest acceleration between 10 seconds to 15 seconds, it is necessary to understand the concept of acceleration.

Acceleration is defined as the rate of change of velocity per unit of time. In this context, it refers to how quickly a car can increase its speed.

In the data provided, the sports car and the dragster are pointed out.

The dragster is capable of an acceleration of 26 m/s², whereas a typical sports car can only accelerate at about 5 m/s².

Therefore, it can be inferred that the dragster would have a higher acceleration in the time period given (10 seconds to 15 seconds), as compared to the sports car.

For a more specific comparison, speed or velocity data of the cars at the start (10 seconds) and end (15 seconds) of this period would be required.

The change in velocity divided by the time period gives the acceleration. Unfortunately, such data is not available in the provided context.

Learn more about Acceleration here:

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#SPJ6

The probable question may be:

Which car has the greatest acceleration dragster or typical sports car  during the time interval 10 seconds to 15 seconds.


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This scientist focused his study on planetary motion. One of his laws is the planets orbit the Sun in elliptical patterns.Hubble
Kepler
Newton
Copernicus

Answers

You may be familiar with something denoted as Kepler's Laws of Planetary Motion. Though Copernicus argued that the Earth revolved around the sun, against widely accepted knowledge at the time, I believe you are looking for Kepler.

B.) Kepler is the answer, it's correct

When unbalanced forces act on an object, __________________. the object accelerates friction becomes greater than the net force the objects speeds up the net force is zero?

Answers

When an unbalanced force acts on an object, the object accelerates. We can immediately rule out B and D, as friction changes based on the material and by applying a force the net force can’t be zero. It can be easy to say that the object will speed up after the force is applied (and it often does!), but take a braking car, for example. An external force of friction is applied to the brakes, causing an acceleration but in such a fashion that the car slows down. So, although an object can speed up after a force is applied, it isn’t always guaranteed.

Hope this helps!

As you move toward a warning siren, the pitch _____.increases
decreases
stays the same
disappears

Answers

Answer: Increases.

Explanation:

Warning siren is generally used to make people alert of danger. Danger can be anything associated with the health and hazard.

Warning siren can be due to tsunami, earthquake, fire, flood, et cetera. The pitch of siren is low when a person is afar from the siren.

As the person moves close to the siren, the pitch of siren increases.

Answer:

As you move toward the siren the pitch should get louder

Explanation:

Calculate the average time it took the car to travel 0.25 and 0.50 meters with four washers attached to the pulley. Record the averages, rounded to two decimal places, in Table C of your Student Guide.What is the average time it took the car to travel 0.25 meters?

seconds

What is the average time it took the car to travel 0.50 meters?

seconds

Answers

Answer:

0.88 seconds

1.33 seconds

on edge (when four washers are attached)

Explanation:

Answer:

0.88 seconds

1.33 seconds

Explanation:

In 3.0 seconds, a wave generator produces 15 pulses that spread over a distance of 45 centimeters. Calculate its period.0.022 s

0.066 s

0.20 s

0.33 s

Answers

Period = (time) / (number of pulses)

= (3 sec) / (15 pulses)

= 0.2 sec/pulse

Which of the following is a characteristic of elements A. They are always metals
B. They cannot be divided into simpler substances
C. They break down when reacting with acids
D. They can be altered with and electric current

Answers

Answer:

B

Explanation:

They are the BASE elements. Cannot make them any simpler.