A hammer has an input distance of 9 cm and an output distance of 3 cm. What is its ideal
mechanical advantage?

Answers

Answer 1

Answer:

3cm should be the answer correct me if I'm wrong

Explanation:

Divide the input by the output

Answer 2

The ideal mechanical advantage of the hammer is the ratio of its input distance to the output distance . The ideal mechanical advantage of the hammer with input distance of 3 cm and output distance of 9 cm is 3 cm.

What is mechanical advantage?

Mechanical advantage of an machine or an equipment is the measure that how much input force is changed to output. It is the ratio of output force to the input force.  This ratio is the actual mechanical advantage of the machine.

The actual mechanical force also accounts for the frictional force also. The amount of input force needed to overcome the friction is considered here.

The ideal mechanical advantage the distance measurements are used since it is difficult to measure the input/output force.

given that, input distance = 9 cm

output distance = 3 cm.

ideal mechanical advantage = input distance/ output distance

=  9 /3 = 3 cm.

Therefore, the ideal mechanical advantage of the hammer is 3 cm.

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Related Questions

what do you think a divergent (constructive) boundary is? How do plates interact with each other?

Answers

Divergent boundaries are areas where plates move away from each other, forming either mid-oceanic ridges or rift valleys. These are also known as constructive boundaries. ... This causes the oceanic plate to buckle and usually results in a new mid-ocean ridge forming and turning the obduction into subduction.


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The three ways waves change direction are reflection, refraction, diffraction.

In 3-5 complete sentences, compare those three ways that waves change direction.

Answers

Reflection is a change in direction of a wave between two different objects that is the Wave returns to the medium from which it begins.
Refraction is When a light travels from air into water it slows down causing it to change direction slightly.

Diffraction Involves a change in direction of waves as they pass-through and opening.
Reflection is a change in direction of a wave between 2 different objects that is the wave returns to the medium from which it begins.
Refraction is when a light travels from air into the water it slows down causing it to change direction slightly.
Diffraction involves a change in direction of waves as they pass through an opening.

Which process would correctly calculate the frequency of a wave?


dividing speed by wavelength

dividing frequency by wavelength

multiplying frequency by period

dividing wavelength by period
SOMEBODY PLEASE ANSWER! This test determines my grade.

Answers

Answer:

dividing speed by wavelength

Explanation;

frequency=speed:wavelenght

Answer:

A- Dividing speed by wavelength

Explanation:

Just took the test

In 3-5 complete sentences, compare the three ways that waves change direction.

Answers

Answer:

There are many ways to compare waves and how they change direction. The most common way is through the wind. This is different from human force because of direct contact in the wind and human force. However they both intact something physically moving the ocean. This compares how different waves move.

Explanation:

i tried my best to help!

Answer:

Reflection is the change in direction of a wave between two different objects such that the wave returns to the medium from which it began. In other words, the waves are sent back towards the source. Sound waves, light waves, and water waves can all be reflected.

Explanation:

Incident Ray – the wave/ray traveling towards a surface

Angle of Incidence – the angle at which the traveling wave/ra

y hits a surface

Equal (or Normal) – divides the two rays (incident / reflected) into two equal angles

Angle of Reflection – the angle at which the reflected wave returns towards the original medium

Reflected Ray – the wave/traveling away from the “hit” surface, and now traveling towards the original medium

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