lab report jet momentum

I’m working on a aerospace engineering report and need an explanation and answer to help me learn.

please write a lab report based on the template. I will attach Lab report template, lab data, lecture note shows the calculations needed, and lap report example .

Answer & Explanation
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please use the template to write the report. please follow the instructions. please use the data I attached to write the report. please use the lecture note to do the calculations. please use the example report to see how the report should be written.

The purpose of this lab is to determine the Young’s modulus of a material by measuring the deflection of a beam.

Theory

The deflection of a beam can be calculated using the following equation:

δ=PL/YI

Where δ is the deflection (m), P is the applied load (N), L is the length of the beam (m),

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Step-by-step explanation
Y is the Young’s modulus of the material (Pa), and I is the moment of inertia of the beam (m4).

The Young’s modulus of a material can be calculated using the following equation:

Y=PL/δI

Where Y is the Young’s modulus of the material (Pa), P is the applied load (N), L is the length of the beam (m), δ is the deflection of the beam (m), and I is the moment of inertia of the beam (m4).

The moment of inertia of a beam can be calculated using the following equation:

I=bh3/12

Where I is the moment of inertia (m4), b is the width of the beam (m), and h is the height of the beam (m).

Procedure

1. Measure the dimensions of the beam.

2. Calculate the moment of inertia of the beam.

3. Apply a load to the beam and measure the deflection.

4. Calculate the Young’s modulus of the material.

Data

Beam dimensions:

Width (b): _____m

Height (h): _____m

Length (L): _____m

Moment of inertia (I): _____m4

Applied load (P): _____N

Deflection (δ): _____m

Calculations

1. Calculate the moment of inertia of the beam.

I=bh3/12

I=_____m4

2. Calculate the Young’s modulus of the material.

Y=PL/

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