create a professional looking presentation to introduced the data you found in your potential job.
1. minimum of 10 ( including title slice, introduction slice and concluding slice)
2. Formatted image
3. Formatted text
4. Animation
5. transition
6. include screen capture of flyer
7. include screen capture of spreadsheet
8. professional look of background
9. smartart
10. overall completeness

Answers

Answer 1

A strong title, appropriate formatting, the use of animation, and other elements are used to create a presentation that looks professional while introducing the data.

The presentation's title and other pertinent information should appear on the first slide. Make an overview slide for your presentation that sets the tone for the remainder of the presentation.

To make your presentation more engaging and aesthetically pleasing, use structured graphics throughout. Make your presentation more understandable and aesthetically appealing by using prepared text. To communicate your idea succinctly and clearly, use bullet points and short sentences.

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Related Questions

How many coordinates are required for a 3-dimensional force?

Answers

Hope this helps YEET
How many coordinates are required for a 3-dimensional force?

Which equipment is used to supply power to several connections from one supply source?

A. Adapters
B. Junction boxes
C. Multi-use cords
D. Twist-lock receptacles

Answers

B. Junction boxes equipment is used to supply power to several connections from one supply source.

Junction boxes are essential components in electrical systems that serve the purpose of distributing power from a single supply source to multiple connections. They are designed as electrical enclosures, typically made of metal or plastic, that house and protect the electrical connections and wiring within.

The main function of a junction box is to provide a centralized location where multiple electrical circuits or wires can come together and be connected. These circuits may be part of a larger electrical system, such as a building's wiring network, or they may be specific circuits for various devices or outlets.

By consolidating the connections in one place, junction boxes ensure a more organized and manageable electrical setup. They help in preventing loose or exposed wiring, which can be hazardous and prone to accidents. The enclosure of the junction box also provides protection against dust, moisture, and other external elements that could potentially damage the electrical connections.

When it comes to supplying power, the junction box acts as a hub. It receives the electrical supply from the main source, such as a circuit breaker panel, and then distributes that power to the connected circuits or devices. This distribution allows for multiple connections to receive power simultaneously and efficiently.

Junction boxes also play a crucial role in maintaining electrical safety. They often have covers or lids that can be securely fastened, preventing unauthorized access to the wiring and reducing the risk of electrical shocks or accidents. Additionally, junction boxes are designed to meet specific electrical codes and standards to ensure proper installation and compliance with safety regulations.

In summary, junction boxes are used to provide power to several connections from one supply source by serving as centralized enclosures for electrical connections. They facilitate the distribution of power, protect the wiring, and enhance electrical safety within an electrical system or installation.

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What car is this? I thinks its a nissan 240sx but i dont know

What car is this? I thinks its a nissan 240sx but i dont know

Answers

Answer:

your right I had to look a little bit but you are correct

9. The highest voltage typically encountered on the job by a residential electrician is
volts.
A. 120
B. 600
C. 240
D. 480

Answers

Answer:

240

Explanation:

9. The highest voltage typically encountered on the job by a residential electrician isvolts.A. 120B.

The highest voltage typically encountered on the job by a residential electrician is C. 240 volts.

What is voltage?

Voltage is the measure of the difference in electrical power between two points in a circuit.

It is like the force that pushes electric charges in a circuit and is measured in volts (V) and affects how strong the electric current flows in a wire.

In many countries, the United States included, residential electrical systems often use a split-phase setup with a voltage of 120/240 volts.

This voltage is widely used for things like household appliances, lights, and other electrical needs in homes.

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Which part of Johnson’s speech is MOST effective in persuading the audience to help build the Great Society?

Answers

Answer:

the total elimination of poverty and racial injustice.

The ____________________ is used to measure the power required to operate a device.

Answers

engineering what is used to measure the power required to operate a device?

A power analyser (not sure, I don’t do engineering) Imaoo

Answer:

multimeter

Explanation:

there's several devices that are used to measure power. the most common one is a multimeter. there's also the voltmeter and ammeter or the oscilloscope.

in an experimental study, a properly designed hypothesis will test a theory by predicting the?

Answers

A hypothesis for an experiment forecasts the changes that will occur in the variable when the predictor variables is altered.

How would you characterize hypothesis?

An assumption or notion is given as a hypothesis for the goal of debating it and testing whether it may be true. In the process of science, the hypothesis is developed before any primary active from a basic backdrop review—has been conducted.

What are the many kinds of hypotheses?

A thesis is a rough explanation for a collection of facts that may be put to the test by specific follow-up studies. The two major categories are alternative hypothesis and null hypothesis. A issue is how most research projects begin.

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The twisting of a propeller blade from root to tip has been made to:A) to prevent excessive stress at the blade tip at high RPM.B) provide a constant angle of attack from root to tip.C) to ensure its optimum thrust is always achieved at take off.D) to provide its greatest thrust toward the blade root.

Answers

The twisting of a propeller blade from root to tip, also known as propeller pitch, serves multiple purposes. Firstly, it is done to prevent excessive stress at the blade tip at high RPM. As the propeller rotates faster, the air pressure at the blade tip increases, which can cause the blade to fail if it is not designed to handle such stresses.

Option A is correct

By twisting the blade, the angle of attack at the tip is reduced, allowing it to withstand these stresses more effectively.Secondly, the twisting of the blade provides a constant angle of attack from root to tip. This means that the blade can generate a consistent amount of lift throughout its entire length, improving the overall efficiency of the propeller.Thirdly, the twisting of the blade ensures that its optimum thrust is always achieved at take-off. By increasing the angle of attack at the blade root, where the propeller is attached to the engine, the blade is able to generate more lift and produce maximum thrust during take-off when it is most needed.Finally, the twisting of the blade provides its greatest thrust toward the blade root. As the blade rotates, it creates a swirling motion in the air, which helps to direct the airflow towards the center of the propeller. By increasing the angle of attack at the root, the blade is able to generate more lift and produce maximum thrust, helping to improve the overall performance of the propeller.

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three methods by which the value of the unknown resistance can be determined​

Answers

Answer:

The Meter bridge is the modification of Wheatstone's network used to determine the value of unknown resistance. The meter bridge consists of a thin, uniform, and homogenous conducting wire AC, rectangular wooden board between two thick L shaped metal strips C1 and C2 as shown in the diagram.

What is a sculpture that can be viewed from all sides?

Answers

A sculpture that can be viewed from all sides is called a "freestanding sculpture."

A freestanding sculpture is a three-dimensional artwork that is not attached to any wall or surface and can be viewed from all angles. It is also known as a sculpture in the round or an in-the-round sculpture. Freestanding sculptures have been around for thousands of years and are one of the oldest forms of artistic expression. They can be made from a variety of materials such as stone, metal, wood, clay, and even ice. They can vary in size from small handheld pieces to large outdoor installations.

One of the most famous freestanding sculptures is Michelangelo's David. The statue is over 17 feet tall and is made of marble. It depicts the biblical hero David before his battle with Goliath. It is considered one of the greatest works of art ever created and is admired for its intricate details and a lifelike appearance. Another famous example of a freestanding sculpture is Rodin's The Thinker. It is a bronze sculpture that depicts a man in deep thought. It is over 6 feet tall and has been replicated numerous times around the world. It is often used as a symbol of intellectualism and philosophy.

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Plumbing


The should indicate the materials, fixtures, and faucets to be
used.
A. specifications
B. plumbing code
C. mechanical code
D. plumbing instructor

PlumbingThe should indicate the materials, fixtures, and faucets to beused.A. specificationsB. plumbing

Answers

Answer:

B....................

FILL THE BLANK.
question 3 a(n) __________ license allows authors to set conditions for the free use and distribution of their work.

Answers

The Correct answer is A(n) open-source license allows authors to set conditions for the free use and distribution of their work.

An open-source license is a legal instrument that grants permission to individuals or organizations to use, modify, and distribute software or creative works. This type of license promotes collaboration and encourages the sharing of knowledge and innovations. Open-source licenses provide specific terms and conditions that outline the rights and responsibilities of users, ensuring that the original authors' intentions are respected.

Open-source licenses have played a pivotal role in the growth of the open-source movement, which fosters a culture of transparency, collaboration, and community-driven development. By granting freedoms to users, such licenses enable a wide range of individuals and organizations to benefit from and contribute to the development of software and creative works.

Open-source licenses have been adopted by numerous projects and communities worldwide, leading to the creation of robust ecosystems, increased innovation, and the democratization of technology. The use of open-source licenses has facilitated the development of renowned software projects like Linux, Apache, and MySQL, while also promoting the sharing and dissemination of knowledge in various fields

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the horizontal sections of a steel frame are the ____________

Answers

The horizontal sections of a steel frame are the beams.

What components form the horizontal sections of a steel frame?

Beams are essential elements in steel frames, providing horizontal support and distributing the load across the structure. They are typically made of steel and play a crucial role in maintaining the integrity and stability of the frame. Beams are designed to resist bending and shear forces, ensuring the overall structural strength.

They are commonly used in various construction projects, including buildings, bridges, and industrial structures. Beams come in different shapes and sizes, such as I-beams, H-beams, and C-beams, each with specific advantages depending on the application.

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which statement best explains the reason that the middle part of the seatbelt is a better thermal conductor than the plastic part?

Answers

Probably because it’s metal and metal is a better thermal conductor

Answer:

Yeah the metal part of the seat belt is a better thermal conductor than the plastic part of the seat belt.

Explanation:

two plates with fluids in between them. the top plates moves at a constant velocity of 1.5 m/s and the bottom plate remains at rest. profile is linear. oil is sae 30. find the shear stress and shear force

Answers

The velocity of the top plate is known, while the velocity of the bottom plate is zero.

The solution to the given problem is as follows;

Given values:

Top plate velocity,

V = 1.5 m/s

Separation between two plates,

d = 1mm = 0.001m

Fluid, oil is SAE 30 Analysis:

Hence we can find out the velocity gradient for this case.

If the velocity gradient is known, then the shear stress can be calculated.

Once the shear stress is known, we can find out the shear force acting on the top plate.

Now, let us proceed with calculations.

Firstly, let us calculate the velocity gradient.

For linear profile, Velocity gradient,

dv/dy = V/d = 1.5/0.001 = 1500 s^-1

Now, let us calculate the shear stress.

Shear stress, τ = µ(dv/d y)

Here, the viscosity of the fluid is required to calculate the shear stress.

The value of the viscosity for SAE 30 oil is not provided.

However, let us assume a value of 0.002 Ns/m^2 (viscosity for SAE 30 oil).

Shear stress,

τ = 0.002 x 1500 = 3 N/m^2

Finally, let us calculate the shear force acting on the top plate.

Shear force,

F = A τ

Here, A is the area of the plate.

Let us assume a square plate of 0.1 m x 0.1 m dimensions.

A = 0.1 x 0.1 = 0.01 m^2 Shear force,

F = 0.01 x 3 = 0.03 N

Hence the shear stress and shear force acting on the top plate are 3 N/m^2 and 0.03 N respectively.

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When a current carrying coil is placed between the magnetic poles a force acts on it that causes it to rotate what can be done to make the coil rotate faster

Answers

Answer:

increase the field strengthincrease the currentdecrease the moment of inertia of the coil

Explanation:

The rotation speed depends on the force applied to the coil, and on the mass (moment of inertia) of the coil. The force can be increased by ...

  increasing the magnetic field strength

  increasing the coil current

And the moment of inertia can be decreased by ...

  making the coil lighter

  making the coil more compact.

Any of these changes will increase the rotation speed.

Schrodinger equation is a ........... Equation

Answers

Answer:

linear partial differential

Explanation:

The Schrödinger equation is a linear partial differential equation that describes the wave function or state function of a quantum-mechanical system. It is a key result in quantum mechanics, and its discovery was a significant landmark in the development of the subject.

A company sent prototypes of a newly designed hair dryer for trial use to 100 homes along with a satisfaction survey. A month later the company received 82 completed surveys. This process is part of which step of the engineering design process?

Answers

Answer:

The answer is "evaluating outcomes ".

Explanation:

The assessment of the results shows that maybe a program has achieved its goals. The assessment with results measures the results of the program and decides whether intended results were achieved. Its results allow you to achieve people by the measurable changes made through participating in your project by students enrolled. It is a form of assessment that examines if changes occur for students enrolled or if these adjustments are related to a program.

Hotel Fire Safety Directors shall do all EXCEPT:

A. train and supervise Fire Brigade
B. conduct fire drills
C. order full building evacuation of guests
D. distribute applicable parts of the Fire Safety Plan to all employees

Answers

Hotel Fire Safety Directors are not authorized to order a full building evacuation of guests. Therefore, option (C) is correct.

Who are Hotel Fire Safety Directors?

Hotel Fire Safety Directors are individuals who are responsible for ensuring the safety of guests and employees in the event of a fire emergency in a hotel or other hospitality establishment.

They are typically appointed by the hotel management and must have knowledge of fire safety regulations and protocols, as well as the ability to lead and manage a team during an emergency.

Hotel Fire Safety Directors are responsible for implementing and maintaining the Fire Safety Plan, which includes conducting fire drills, training and supervising the Fire Brigade, and distributing applicable parts of the Fire Safety Plan to all employees. They must also work closely with the local fire department to ensure compliance with local fire safety regulations and protocols.

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A sample of the representative outcomes or sequences of events for all possible consequences of a model is called a(n) __________.

Engineering and Product Dev Quiz 2
¯\_(ツ)_/¯

Answers

Answer: A sample of the representative outcomes or sequences of events for all possible consequences of a model is called a scenario.

) A 20 ft horizontal beam is attached to a wall with a fixed support. If the beam is subjected to the distributed loads indicated, determine the reaction at A.

Answers

Answer:

Ra = 3,000 lb

Ma = 26,125 lb-ft

Explanation:

Solution:-

- We are given a cantilever horizontal beam with a span of 20 ft subjected to distributed loads.

- We will use the following conventions and define our coordinate system:

- Denote positive direction ( + ) directed "vertically upward" and "anticlockwise".

- Denote negative direction ( - ) directed "vertically downward" and "clockwise".  

- We will denote a reaction force ( Ra ) and reaction moment ( Ma ) exerted by the wall support at point A on the beam in positive directions, respectively. These reactions are consequence of the distributed load acting on the horizontal beam.

-  First step is to analyze the distributed load. We will make 4 sections of the distributed loads and write down the shapes of each distributions as follows:

     Section                    Load ( Lb/ft)                     Distribution

           1                               750                             Rectangular

           2                              750                         Right angle triangle

           3                              450                         Right angle triangle

           4                              450                             Rectangular

- We will proceed with load-transformation. In load transformation we convert the distributed load into a " point load "  and determine the "location of transformed load " using distribution pattern of each section.

- We will now determine the point load and location of each point load for the respective section from point ( A ) as follows:

       Section 1:

                        P1 = Load_1 * distribution span_1

        From above table, Load_1 = 750 lb/ft.

        Distribution is rectangular, spanning L1 = 3ft

                         P1 = ( 750 lb/ft ) * ( 3ft )

                         P1 = 4500 lb

         For rectangular distributions, the point load acts at the geometric center of the distribution pattern; hence, center of rectangle x1 = 3ft from point A.  

       

          Section 2:

                        P2 = Load_2 * distribution span_2*0.5

        From above table, Load_2 = 750 lb/ft.

        Distribution is right angle triangle, spanning ( L2 )

                         P2 = 0.5* ( 750 lb/ft ) * ( L2 )

                         P2 = 375*L2 lb

         For rectangular distributions, the point load acts at the geometric center of the distribution pattern; hence, center of right angle triangle is x2 = 6ft + L2/3 from point A.              

          Section 3:

                         P3 = Load_3 * distribution span_2*0.5

        From above table, Load_3 = 450 lb/ft.

        Distribution is right angle triangle, spanning ( L3 )

                         P3 = 0.5* ( 450 lb/ft ) * ( L3 )

                         P3 = 375*L3 lb

         For rectangular distributions, the point load acts at the geometric center of the distribution pattern; hence, center of right angle triangle is x3 = 6ft + L2 + 2*L3/3 from point A.              

- Before we proceed further, we need to determine the spanning lengths of right angle triangles for distributed loads for sections 2 and 3. From the given figure we can form two equations as follows:

                       L2 + L3 = 9 ft    .... Eq 1

- The second equation can be determined by the concept of similar triangles to relate L2 and L3 as follows:

                       L2 = L3* ( 750 / 450 )

                       L2 = 5*L3 / 3   ... Eq 2

- Solve the two equations simultaneously for L2 and L3, we get:

                       L2 = 4.625 ft, L3 = 4.375 ft

- The corresponding point loads and locations are as such:

                      P2 = 1734.375 lb , x2 = 7.5416667 ft

                      P3 = 984.375 lb , x3 = 13.541667 ft

Note: The division of 750 lb/ft and 450 ft/lb loads in section 2 and section 3 can be mistaken to be equal and setting L2 = L3 = 4.5 ft. Remember to take care of such situations.

        Section 4:

                        P4 = Load_4 * distribution span_4

        From above table, Load_4 = 450 lb/ft.

        Distribution is rectangular, spanning L4 = 5ft

                         P4 = ( 450 lb/ft ) * ( 5ft )

                         P4 = 2,250 lb

         For rectangular distributions, the point load acts at the geometric center of the distribution pattern; hence, center of rectangle x4 = 6ft + 9ft + L4/2 = 17.5 ft from point A.  

- Second step: Apply the static equilibrium conditions on the horizontal beam.

       Force Balance: Sum of forces in vertical direction = 0

                       

                   ∑ \(F_y,net = 0 = R_A + P3 + P4 - P1 - P2\)

                    \(R_A = 4,500 + 1,734.375 - 984.375 -2,250\\\\R_A = 3,000 Lb\)

      Moment Balance: Sum of moments about A = 0

      ∑ \(M_n_e_t = 0 = M_A + P3*x3 + P4*x4 - P1*x1 - P2*x2\)

                      \(M_A = -(984.375)*(13.541667) - (2250)*(17.5) + (4500)*(3) + (1734.375)*\\(7.54166667)\\\\M_A = -26,125 Lb.ft\)

Answer: The reaction force at point A is directed vertically upward ( Ra = 3,000 Lb ) and the reactive moment is directed clockwise at point A ( Ma = 26,125 Lb-ft ).

what typically happens to the channel width, channel depth, flow velocity, and discharge between the headwaters and mouth of a stream?

Answers

The flow velocity increases as the channel slope lowers near a stream's mouth; upstream, the channel size and discharge increase, and the channel roughness diminishes.

Position in the stream channel, abnormalities in the stream channel brought on by resistive rock, and stream gradient all affect a stream's velocity. Water near channel edges is slowed by friction. In larger, shallower streams, friction is greater, but in narrower, deeper streams, friction is less.

The middle of straight channels has the highest velocity. In curved channels, the outside curve, where the channel is primarily scoured and deepened, is where the largest velocity is traced. Sediment is deposited on the interior of the curve where the velocity is lowest. The thalweg, which meanders with the bend of the stream, is the deepest section of the channel. The path of flow around curves is spiral.

Laminar stream flow is when water molecules all follow similar parallel routes; turbulent stream flow is when particles all follow different courses. It is typical of stream flow to be turbulent. There is a lot of mixing, whirling eddies, and occasionally tremendous velocity in this chaotic, unpredictable flow. Water shear and flow obstacles are what generate turbulence. The bottom of the stream is eroded because turbulent eddies scrape the channel bed and can retain sediment in suspension for longer periods of time than laminar flow.

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Effectively,how many valence electrons are there in each atom within q silicon crystal?​

Answers

Answer:

Four valence electrons

Silicon is having an atomic number of 14 which means It has two electrons in its first shell, eight electrons in the second shell, and four electrons in the third shell.

Match the words in the left column to the appropriate blanks in the sentences on the right. Note that some words may be used more than once and some may not be used.
1. breaking
2. forming
3. positive
4. negative
5. twice
6. half
A. The reaction involves___five blue-blue and twenty blue-red bonds and then____twenty blue-red bonds. Enthalpies for bond breaking are always_____.
B. In the depicted reaction, both reactants and products are assumed to be in the gas phase. There are___as many molecules of in the products, delta S is___for this reaction

Answers

Answer:

A. Breaking; forming; positive.

B. Twice; half.

Explanation:

A. The reaction involves breaking five blue-blue and twenty blue-red bonds and then forming twenty blue-red bonds. Enthalpies for bond breaking are always positive.

B. In the depicted reaction, both reactants and products are assumed to be in the gas phase. There are twice as many molecules of gas in the products, delta S is half for this reaction.

Bond enthalpy refers to the amount of energy that is required to break a mole of a particular bond and it's an endothermic reaction, therefore it is always positive.

However, bond forming is always an exothermic reaction because energy is released, therefore, it is always negative. This simply means that, the breaking of a bond is an endothermic reaction (positive) while the formation of a bond is an exothermic reaction (negative).

Match the words in the left column to the appropriate blanks in the sentences on the right. Note that

Compute the area and circumference of a circle given the radius r if the radius is greater than or equal to 1.0; otherwise, you should compute only the circumference. Repeat the algorithm as much as the user wants.

Answers

In this question we shall present the algorithm in pseudocode, whose structure is now summarized:

1) Inputs.

2) Algorithms.

3) Outputs.

Please notice that While-cycles consider the requirement of using the algorithm as many times as user wants.

Name: Area-or-Circunference

CHAR - decide

REAL - radius, circumference, area

Say "Do you want to calculate? [Y] - Yes/[N] - No";

Write decide;

While (decide != 'Y' and decide != 'y' and decide != 'N' and decide != 'n'):

    Say "Invalid option. Do you want to calculate? [Y] - Yes/[N] - No";

    Write decide;

end-While

While (decide = 'Y' or decide = 'y'):

    Say "Please indicate a radius";

     While (radius < 0):

          Say "Radius must be equal or greater than 0. Please indicate a  

                   radius";

          Write radius;

      end-While

      If (radius < 1):

          circumference = 2*3.14*radius;

          Say "The circumference has a value of %circumference length units";

       Else:

          circumference = 2*3.14*radius;

          area = 3.14*radius*radius;

          Say "The circumference has a value of %circumference length units

                   and the area has a value of %area square units";

        end-If

        Say "Do you want to calculate? [Y] - Yes/[N] - No";

        Write decide;

        While (decide != 'Y' and decide != 'y' and decide != 'N' and decide !=

        'n'):

              Say "Invalid option. Do you want to calculate? [Y] - Yes/[N] - No";

              Write decide;

         end-While

end-While

If (decide = 'N' or decide = 'n'):

    Say "Good luck";

end-If

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which type of sprinkler control valve extends horizontally through the wall with the target and valve operating nut on the outside of the building?

Answers

A wall-mounted sprinkler control valve is a type of sprinkler control valve that extends horizontally through the wall of a building, with the target and operating nut located on the outside of the building.

Using a Wall-Mounted Sprinkler Control Valve

This type of valve is primarily used to regulate water flow to sprinkler heads, allowing for precise control and easy maintenance. The target is typically a small disk or wheel, which allows the user to adjust the flow of water to the sprinkler by turning the operating nut. The wall-mounted sprinkler control valve is usually installed during construction or renovation, and is an essential part of the sprinkler system. It is important to keep the valve operating efficiently by regularly checking for debris, corrosion, and other issues that may affect the performance.

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Discuss in detail the manners of interaction with opposite gender

Answers

Answer:

8 Tips on Better Communication with the Opposite Sex

Put emotions away. Ladies, this one is more aimed at us, for the most part. ...

Forget your pride. In discussions, especially these days, people always want to be the one that prevails. .

Put yourself in their shoes. .

Listen. ...

Respond. ...

Actually communicate. ...

Be detailed. ...

Don't communicate too much.

Explanation:

A simply supported wood beam is subjected to uniformly distributed load q. The width of the beam is 6 in. And the height is 8 in. Determine the normal stress and the shear stress at point C. Show these stresses on a sketch of a stress element at point C

Answers

The question is missing some important details but I will guide you on how to solve for normal stress

How to solve for normal stress

The point in the beam has got a normal stress (σ) which can be calculated by taking the ratio of the bending moment (M) and section modulus (S):

σ = M/S

To ascertain the section modulus of a rectangular cross-section, the following equation is employed:

S = (b * h^2) / 6

In answer to the supplicated inquiry, within this example, b stands for the width of the beam (6 in), and h represents the height of the beam (8 in). Hence, by accounting for these dimensions, S can be calculated.

The effect of a uniformly distributed load (q) on an elicited bending moment (M) can be determined through utilization of the pertinent beam equations, that can be derived once the location of point C, as well as the length of the demonstrated beam is known.

Having notably acknowledged M and S, it is possible to estimate the normal stress (σ) at point C.

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A simply supported wood beam is subjected to uniformly distributed load q. The width of the beam is 6

It is desired to obtain 500 VAR reactive power from 230 Vrms 50 Hz 1.5 KVAR reactor. What should be the angle of the AC to AC converter to be used? Calculate the THD of the current drawn from the mains (consider up to the 12th harmonic)?

Answers

Answer:

14.5° ; THD % = 3.873 × 100 = 387.3%.

Explanation:

Okay, in this question we are given the following parameters or data or information which is going to assist us in solving the question efficiently and they are;

(1). "500 VAR reactive power from 230 Vrms 50 Hz 1.5 KVAR reactor".

(2). Consideration of up to 12th harmonic.

So, let us delve right into the solution to the question above;

Step one: Calculate the Irms and Irms(12th) by using the formula for the equation below;

Irms = reactive power /Vrms = 500/230 = 2.174 A.

Irms(12th) = 1.5 × 10^3/ 12 × 230 = 0.543 A.

Step two: Calculate the THD.

Before the Calculation of the THD, there is the need to determine the value for the dissociation factor, h.

h = Irms(12th)/Irms = 0.543/ 2.174 = 0.25.

Thus, THD = [1/ (h)^2 - 1 ] ^1/2. = 3.873.

THD % = 3.873 × 100 = 387.3%.

Step four: angle AC - Ac converter

theta = sin^-1 (1.5 × 10^3/ 12 × 500) = 14.5°.

what are the importance of crystallography in geology

Answers

The importance of crystallography in geology is that it is used in phase identification of minerals.

What is crystallography?

Crystallography can be defined as the study of minerals and it's description according to geometrical observation.

In geology, minerals are resources of major economic importance and they are mostly crystalline. This simply explains the role of crystallography in geology.

Therefore, the importance of crystallography in geology is that it is used in phase identification of minerals.

Learn more about minerals here:

https://brainly.com/question/15844293

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