The weight of the concrete column is approximately XXX pounds.
How can we calculate the weight of the concrete column in pounds?To calculate the weight of the concrete column, we need to determine its volume and then multiply it by the density of concrete.
The diameter of the column is given as 350 mm, which can be converted to meters by dividing it by 1000: 350 mm / 1000 = 0.35 m.
The formula to calculate the volume of a cylinder is V = πr²h, where r is the radius and h is the height. Since we have the diameter, we need to divide it by 2 to obtain the radius: 0.35 m / 2 = 0.175 m.
Substituting the values into the volume formula, V = π(0.175 m)²(2 m) = 0.3066 m³.
Next, we multiply the volume by the density of concrete to find the mass: 0.3066 m³ * 2.45 mg/m³ = 0.75087 mg.
Finally, to convert the mass to pounds, we can use the conversion factor that 1 mg is approximately equal to 3.5274e-9 pounds: 0.75087 mg * 3.5274e-9 pounds/mg = XXX pounds (rounded to the appropriate precision).
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How are you today First to awnser is brainlyest.
Answer:
Happy
Explanation:
A 5-m-long, 4-m-high tank contains 2.5-m-deep water when not in motion and is open to the atmosphere through a vent in the middle. The tank is now accelerated to the right on a level surface at 2 m/s2. Determine the maximum gage pressure in the tank. Mark that point at the interior bottom of the tank. Draw the free surface at this acceleration.
Answer: hello your question lacks the required diagram attached below is the diagram
answer : 29528.1 N/m^2
Explanation:
Given data :
dimensions of tank :
Length = 5-m
Width = 4-m
Depth = 2.5-m
acceleration of tank = 2m/s^2
Determine the maximum gage pressure in the tank
Pa ( pressure at point A ) = s*g*h1
= 10^3 * 9.81 * 3.01
= 29528.1 N/m^2
attached below is the remaining part of the solution
A man who lived on the top floor of a twenty story building had to go up and down daily for work, and of course, for food and the other necessities. On most days he could only ride the elevator to the fifteenth story, and he would have to walk the rest of the way. When it rained, however, he could ride all the way up to the twentieth story. Why?.
Main Answer:
On most days he could only ride the elevator to the fifteenth story, and he would have to walk the rest of the way
sub heading:
explain elevator?
Explanation:
1.elevator, also called lift, car that moves in a vertical shaft to carry passengers or freight between the levels of a multistory building.
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Question .1: a vending machine is an automated machine that provides items such as snacks and beverages to consumers after cash, a credit card, or a specially designed card is inserted into the machine. design a user manual for snack vending machine keeping audience and communication guidelines in mind? [6 points]
Designing a user manual for a snack vending machine requires careful consideration of the audience and communication guidelines. Here are the steps to create an effective user manual:
1. Introduction:
- Begin with a brief overview of the snack vending machine.
- Explain its purpose and benefits to engage the audience.
2. Getting Started:
- Provide clear instructions on how to power on the machine.
- Explain how to insert cash, credit cards, or special cards.
- Describe any security measures to ensure user safety.
3. Menu Selection:
- Explain how to navigate the menu options.
- Describe different categories or types of snacks available.
- Provide clear instructions on selecting desired items.
4. Payment Process:
- Guide users on how to complete the payment process.
- Include steps for using cash, credit cards, or special cards.
- Highlight any additional charges or discounts.
5. Dispensing Snacks:
- Explain the process of selecting and receiving snacks.
- Describe any buttons or touchscreens involved.
- Provide troubleshooting tips for any issues that may arise.
6. Maintenance and Troubleshooting:
- Explain how to refill snacks and beverages.
- Provide guidelines for machine cleaning and maintenance.
- Address common issues and offer troubleshooting solutions.
7. Conclusion:
- Summarize the key points covered in the manual.
- Include contact information for customer support or queries.
- Encourage users to provide feedback for future improvements.
Remember to use clear and concise language, include relevant visuals and diagrams, and organize the manual in a logical manner. Adhere to any brand guidelines or style requirements.
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Type the correct answer in the box. Spell all words correctly.
A genetically engineered hormone, , can treat Mary’s child for growth hormone deficiencies by stimulating body growth and increasing muscle mass.
Answer:
recombinant human growth
Explanation:
Answer:
recombinant human growth
Explanation:
yes
If the built-up beam is subjected to an internal moment of M = 75 kN·m, determine the maximum tensile and compressive stress acting in the beam. Where are these stresses located?
When subjected to an internal moment of M = 75 kN·m, the maximum tensile and compressive stress acting in the beam are 125 MPa and -125 MPa respectively.
These stresses are located at the top and bottom surfaces of the beam respectively.Let's find out how to solve the problem statement.A built-up beam is a composite beam that is constructed by bolting or welding together two or more individual beams side by side.
The bending stress formula for a beam subjected to a moment M is given by the following equation:σ = Mc / Iwhereσ is the bending stressM is the internal momentc is the distance from the neutral axis to the point of interestI is the moment of inertia of the beamWe need to determine the maximum tensile and compressive stress acting in the beam. To do so, we'll need to calculate the maximum bending stress that the beam experiences.
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A 60 mm radium drum is rigidly attached to a 100 mm radius drum as shown. One of the drum rolls without sliding on the surface shown, and a cord is wound around the other drum. Knowing that end D of the cord
is pulled to the left with a velocity of 160 mm/s and acceleration of 600 mm/s?, both directed to the left, determine the acceleration of points A, B, and C of the drum.
The acceleration at points A, B and C are respectively; 960 mm²/s, 1600 mm²/s and 600 mm²/s
What is the acceleration?The drum rolls without sliding and as such its' instantaneous center will lie at B. Thus;
V_d = V_c = 160 mm/s
Also, a_d = a_c = 600 mm²/s
Now, formula for velocity at A is;
V_a = r_ab * ω
where ω = 160/(100 - 60)
ω = 4 rad/s
V_a = 60 * 4
V_a = 240 mm/s
Acceleration at A = V_a²/r_ab
Acceleration at A = 240²/60 = 960 mm²/s
Now, V_b = 100 * 4 = 400 mm/s
Acceleration at B = 400²/100 = 1600 mm²/s
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the properly exposed radiograph was obtained for an aluminum weld 3 in thick with the source 60 in. from the film. the geometric unsharpness, however, was found to be unsatisfactory and source-to film distance was increased to 120 in. what would be a proper exposure time for this new placement, compared to the original exposure time t 0 ?
When the source-to-film distance was increased from 60 in. to 120 in., the geometric unsharpness was improved. This means that the image on the radiograph will be sharper and clearer, making it easier to identify any defects or issues with the weld.
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When an accountant compiles a nonpublic entity's financial statements that omit substantially all disclosures required by generally accepted accounting principles, the accountant should indicate in the compilation report that the financial statements are:
The accountant should indicate in the compilation report that the financial statements are "not in accordance with generally accepted accounting principles."
The omission of substantially all disclosures required by GAAP means that the financial statements are not presented in accordance with GAAP. As a result, the accountant must include a statement in the compilation report that indicates the financial statements are not in compliance with GAAP.
In this case, the special-purpose framework refers to the omission of substantially all disclosures required by GAAP. The accountant must clearly mention this in the compilation report to inform users of the financial statements about the limited scope of the presentation.
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A heat engine is a device able to transform work into heat.
a. True
b. False
Answer:
Option B: False
Explanation:
A heat engine is a device which operates in a manner that heat is converted into mechanical work.
A simple example of a heat engine is a drinking bird. The oscillatory motion of the drinking bird is as a result of the thermal expansion and contraction of a chemical compound in its beak, which creates an imbalance in its position of equilibrium. This causes it to oscillate.
Heat engines usually work by extracting heat once there is a temperature gradient available in the system and using it to perform work. Another good example is the internal combustion engine. It extracts heat from the explosion of the burning fuels and uses it to power the car.
Create a router table for Router B. For each row in the table identify the destination network IP Address and the IP Address used for the next hop (do not use the letter name for the routers). Note, the Networks (drawn as clouds) may have multiple routers in them so only select IP addresses directly tied to the routers as shown. Assume all network addresses use a /8 mask and the cost (hop value) for all connections is 1. Router R should be the default next hop. More rows are needed.
To create a router table for Router B, we will identify the destination network IP addresses and the IP addresses used for the next hop. Since we do not have the exact network diagram, we will provide a general example.
Assuming all network addresses use a /8 mask and the cost (hop value) for all connections is 1, and Router R is the default next hop, the router table for Router B might look like this: 1. Destination Network: 10.0.0.0/8, Next Hop IP Address: 10.0.0.2 (Router R) 2. Destination Network: 20.0.0.0/8, Next Hop IP Address: 20.0.0.3 (Router A) 3. Destination Network: 30.0.0.0/8, Next Hop IP Address: 30.0.0.4 (Router C) 4. Destination Network: 40.0.0.0/8, Next Hop IP Address: 40.0.0.5 (Router D) 5. Destination Network: 50.0.0.0/8, Next Hop IP Address: 50.0.0.6 (Router E)
Please note that the destination network IP addresses and the next hop IP addresses are just examples and should be replaced with the specific information from your network diagram.
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What is a collection of configuration settings stored as a text file with an .inf extension?
a. Security template
b. Policy configuration
c. Deployment list
d. None
Translate each description to an if-else statement as directly as possible. Use { }. (Not checked, but please indent a branch's statements some consistent number of spaces, such as 3 spaces).
If numPeople is greater than 10, execute groupSize = 2 groupSize. Otherwise, execute groupSize = 3 groupSize and numPeople = numPeople - 1.
This means that if the number of people is greater than 10, the group size will be set to 2. Otherwise, the group size will be set to 3 and the number of people will be reduced by 1.
To translate the given description into an if-else statement, we can use the following syntax:
```
if (condition) {
// statement(s) to execute if condition is true
} else {
// statement(s) to execute if condition is false
}
```
Using this syntax, we can translate the description as:
```
if (numPeople > 10) {
groupSize = 2;
} else {
groupSize = 3;
numPeople = numPeople - 1;
}
```
The { } braces are used to group multiple statements together, which will be executed as a single block depending on the condition. We can also indent the statements inside each block to make the code more readable.
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When working with stainless steel, workers must protect themselves from
A. Nitrogen dioxide
Downloaded from www.oyetrade.com
B. Section 8
C. Section 11
D. Gas supplier
When working with stainless steel, workers must protect themselves from Nitrogen dioxide. Hence, option (a) is the correct answer.
Nitrogen dioxide (NO2) is a reddish-brown gas that can be produced from various industrial processes, including combustion of fossil fuels. While it is not directly related to working with stainless steel, exposure to nitrogen dioxide can pose health risks in certain work environments.In general, exposure to high levels of nitrogen dioxide can irritate the respiratory system and cause respiratory symptoms such as coughing, wheezing, and shortness of breath. Prolonged or intense exposure to nitrogen dioxide can also contribute to the development of respiratory conditions such as bronchitis or worsen existing respiratory conditions like asthma.
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Consider a condenser in which steam at a specified temperature is condensed by rejecting heat to the cooling water. If the heat transfer rate in the condenser and the temperature rise of the cooling water is known, explain how the rate of condensation of the steam and the mass flow rate of the cooling water can be determined. Also, explain how the total thermal resistance R of this condenser can be evaluated in this case.
Answer:
Q = [ mCp ( ΔT) ] \(_{cooling water }\)
(ΔT)\(_{cooling water}\) and Q is given
\(m_{cooling water}\) = \(\frac{Q}{Cp[ T_{out} - T_{in} ] }\)
next the rate of condensation of the steam
Q = [ m\(h_{fg}\) ]\(_{steam}\)
\(m_{steam} = \frac{Q}{h_{fg} }\)
Total resistance of the condenser is
R = \(\frac{Q}{change in T_{cooling water } }\)
Explanation:
How will the rate of condensation of the steam and the mass flow rate of the cooling water can be determined
Q = [ mCp ( ΔT) ] \(_{cooling water }\)
(ΔT)\(_{cooling water}\) and Q is given
\(m_{cooling water}\) = \(\frac{Q}{Cp[ T_{out} - T_{in} ] }\)
next the rate of condensation of the steam
Q = [ m\(h_{fg}\) ]\(_{steam}\)
\(m_{steam} = \frac{Q}{h_{fg} }\)
Total resistance of the condenser is
R = \(\frac{Q}{change in T_{cooling water } }\)
A journeyman electrician with 16 years experience on-the-job was removing metal fish
tape from a hole at the base of a metal light pole. It was raining during the course of the
work. The fish tape became energized, electrocuting him. What could have been done to
prevent this accident? Select all that apply.
Explanation:
1. Ensure all circuits are de-energized before beginning work (29 CFR 1926.416(a)(3)).
2. Controls to be deactivated during the course of work on energized or de-energized
equipment or circuits must be tagged (29 CFR 1926.417(a)).
3. Employees must be instructed to recognize and avoid unsafe conditions associated with
their work (29 CFR 1926.21(b)(2)).
a skilled technician with several years of experience who is employed to oversee the operation of a company or maintenance department is a
Answer:
business operation Manager
Air is a....
O Solid
O Liquid
O Gas
O Plasma
Answer:
Air is a gas
Explanation:
i think. beavuse it cant be a liqued or a solid. i dont think a plasma. i would answer gas
how is an nmos and gate implemented? group of answer choices a single nmos transistor. 2 nmos transistors in series. 2 nmos transistors in parallel. the output of 2 nmos transistors in series connected to the input of a single nmos transistor. the output of 2 nmos transistors in parallel connected to the input of a single nmos transistor. the output of a single nmos transistor connected to the input of 2 nmos transistors in series. the output of a single nmos transistor connected to the input of 2 nmos transistors in parallel.
An nmos and gate can be implemented using 2 nmos transistors in series, or the output of 2 nmos transistors in parallel connected to the input of a single nmos transistor.
Implementing an nmos AND gate using two transistors in series or in parallelIn the first implementation, the two nmos transistors are connected in series, with the input signal connected to the gate of the first transistor and the output taken from the drain of the second transistor. When the input signal is high, the first transistor is turned on, allowing current to flow to the second transistor. If the second transistor is also turned on, the output will be low, otherwise, the output will be high.
In the second implementation, the two nmos transistors are connected in parallel, with their sources and gates connected together, and the output taken from the drains. When the input signal is high, both transistors are turned on, allowing current to flow to the output. If either of the transistors is turned off, the output will be low.
Both of these implementations use two nmos transistors, but they are connected differently to achieve the desired logic function. A single nmos transistor can be used to implement a NOT gate or an inverter, but it cannot implement an AND gate
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1. In the palindromes program, the inner loop evaluates one string to see if it is a palindrome.True or False2 In the palindromes program, a potential palindrome is evaluated by comparing characters at both ends and working inwards.True or False3 In the palindromes program, the inner loop will not continue comparing characters once the it's determined that the string is not a palindrome.True or False4 The string 'i prefer pi' would be considered a palindrome by the original version of the palindromes program.True or False
True. In a palindrome program, the inner loop typically iterates through the characters of a string to check whether the string is a palindrome or not.
What is a Palindrome program?
A palindrome program is a computer program that checks whether a given input string is a palindrome or not. A palindrome is a word, phrase, number, or other sequence of characters that reads the same forward and backward when spaces, punctuation, and capitalization are removed.
A typical palindrome program involves iterating through the characters of the input string using a loop, comparing the characters at the beginning and end of the string and moving inward towards the middle of the string until either the entire string has been checked or a pair of characters that do not match is found. If all the characters match, the string is a palindrome; otherwise, it is not.
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What are the disadvantages of genetic engineering towards traditional farming practices
Genetic engineering involves the manipulation of an organism’s genetic material, which alters its traits and properties. Its use in agriculture has led to the development of genetically modified crops, animals, and microorganisms, which have been used to increase food production and boost economic growth.
Environmental Risks-The release of genetically engineered organisms into the environment poses a significant risk to biodiversity. These organisms may interbreed with their natural counterparts, leading to the extinction of certain species.Increased Cost-Genetically modified seeds are more expensive than traditional seeds. Human Health Risks-There is a lack of knowledge about the long-term effects of genetically modified organisms on human health.
Ethical Concerns-The modification of an organism’s genetic material has raised ethical concerns, particularly regarding animal welfare. In conclusion, genetic engineering presents some negative effects on traditional farming practices. The use of genetically modified crops has increased production and food security, but it also poses risks to human health, animal welfare, and the environment. As such, careful consideration of the risks and benefits of genetic engineering is required to ensure that it does not pose harm to traditional farming practices and the environment.
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Reference sources reveal that a workpiece material has a unit horsepower of 1.6 hp/in3/min. For a turning operation, the cutting velocity is set at 500 ft/min with a corresponding feed of 0.025 in/rev. and a depth of cut of 0.2 in. From the given data, calculate:_______.
The question is incomplete. We have to calculate :
a). the cutting force
b). volumetric metal removal rate, MRR
c). the horsepower required at the cut
d). if the power efficiency of the machine tool is 90%, determine the motor horsepower
Solution :
Given :
Cutting velocity (v) = 500 ft/min
= 500 x 12 in/min
= 6000 in/min
Feed , f = 0.025 in/rev
Depth of cut, d = 0.2 in
b). Volumetric material removal rate, MRR = v.f.d
= 6000 x 0.025 x 0.2
= 30 \($in^3 / min$\)
c). Horsepower required = MRR x unit horsepower
= 30 x 1.6
= 48 hp
a). Cutting force,
\($F=\frac{power}{cuting \ velocity}$\)
\($=\frac{48 \times 550}{500 /60}$\) (1 hp = 550 ft lbf /sec)
= 3168 lbf
d). Machine HP required
\($=\frac{HP}{\eta}$\)
\($=\frac{48}{0.9}$\)
= 53.33 HP
Two shafts, A and B, are co-axial (aligned along x-axis). Gear-C is rigidly mounted on shaft-
A and turn together. Compound gears D-E, carried with an arm-B, rotate together on the same
pin. Gear-D meshes with the sun-gear-C and gear-E with the internal gear-G (fixed), where its axis
is concentric with the axis of shaft-A
a) Referring to the figures below determine the number of teeth NG on internal gear G
assuming that all gears have the same module, m = 5 mm.
[12 pts.]
b) If shaft A rotates at 430 rev/min. (c.w.) determine the magnitude and direction of the
speed of shaft B, and that of compound gears D and E.
[28 pts.]
[Given: Nc = N2= 50-T, ND = N3 = 20-T, NE = = N4 = 35-T. NG =N5 = ?, and nc = n₁ = n₂ = 430 rpm.
(c.w.)]
Compound
gear
B
Arm
Side view
SOLUTION OF Q-2:
-Internal gear
G
X
RING GEAR
(FIXED)
N
NG
N
E->
A, B
1712
2²
Front view
N
RING
GEAR
a) To find the number of teeth on gear G, we need to use some equations and information we have:
Gear C is on shaft A and we don't know how many teeth it has (NC).
Gear D has 50 teeth (N2) and meshes with gear C.
Gear E has 35 teeth (N4) and meshes with gear G.
Gear G is fixed and we don't know how many teeth it has (NG).
Gear D and E rotate together and have a combined number of teeth of 55 (ND+NE).
To find NG, we can use the gear ratio equation and substitute the values we have:
Gear ratio between C and D = N2/NC
Gear ratio between D+E and G = NG/(ND+NE)
Gear ratio between E and G = NE/NG
We can combine these three equations to get:
N2/NC = NG/(ND+NE) = NE/NG
Substituting the given values, we get:
50/NC = NG/55 = 35/NG
Solving for NG, we get:
NG = sqrt(50 x 35) = 75.76
Therefore, the number of teeth on gear G is approximately 76.
b) To find the speeds of shaft B and compound gears D and E, we can use the gear ratio equation and the given information:
Shaft A has an angular speed of 430 rpm (clockwise).
Gear C and D have the same angular speed since they mesh.
Gear C has approximately 36 teeth (found in part a).
Gear D and E rotate together and have a combined number of teeth of 55 (ND+NE).
Gear G has approximately 76 teeth (found in part a).
We can use these values to find the gear ratios and then calculate the speeds:
Gear ratio between A and C = N2/NC = 50/36 = 1.39
Gear ratio between C and D+E = NG/(ND+NE) = 76/55 = 1.38
Gear ratio between A and B = (NC/N2) x (NE/NG) = (36/50) x (35/76) = 0.46
Using the formula for angular speed, we can calculate the speeds:
Angular speed of shaft A = (2 x pi x 430)/60 = 45.19 rad/s (clockwise)
Angular speed of shaft B = Angular speed of shaft A/gear ratio = 45.19/0.46 = 98.23 rad/s (counterclockwise)
Angular speed of compound gears D+E = Angular speed of gear C/gear ratio = 45.19/1.38 = 32.76 rad/s (counterclockwise)
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many modern devices use a turntable to rotate a disk at a constant speed. for example, a cd player, a computer disk drive, and a phonograph record player all require a constant speed of rotation in spite of motor wear and variation and other component changes. our goal is to design a system for turntable speed control that will ensure that the actual speed of rotation is within a specified percentage of the desired speed. you are required to design the control systems for two cases: (1) without feedback; (2) with feedback; (3) draw the control system block diagram.
The given scenarios and examples based on the given structure of a turntable speed control is explained and answered below:
Without feedback:In this case, the turntable speed control system does not have any feedback mechanism to measure the actual speed of rotation. Hence, the control system needs to be designed in such a way that it can maintain a constant speed of rotation irrespective of motor wear and variation.
The control system block diagram for turntable speed control without feedback is shown below:
The Diagram/Drawing+-----------+ +--------+ +--------+
| Desired | | Error | | Control|
| Speed +----> Amplifier +--> Signal |
| | | | | |
+-----------+ +--------+ +--------+
The desired speed of rotation is set by the user, and the error between the desired speed and the actual speed is amplified to generate a control signal. This control signal is used to drive the motor to maintain the desired speed of rotation.
However, without feedback, it is impossible to know whether the actual speed of rotation is constant, which can result in speed deviations.
With feedback:
In this case, the turntable speed control system has a feedback mechanism to measure the actual speed of rotation.
The feedback mechanism provides information about the actual speed of rotation to the control system, which can be used to make corrections and maintain a constant speed of rotation.
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Report of invertor to convert 12 volt to 220 volt.
Kate is a recruiter for Logistics Ltd. The company just won a contract, and needs supply chain talent within two weeks. What is the most likely driver of cost for finding talent in this situation?
The most likely driver of cost for finding supply chain talent within two weeks in this situation is urgency.
What is SCM?SCM is an abbreviation for supply chain management and it can be defined as the effective and efficient management of the flow of goods and services, as well as all of the production processes that are involved in the transformation of raw materials into finished products, in order to meet the insatiable want and need of the consumers on a timely basis.
This ultimately implies that, the supply chain management (SCM) is a strategic process which involves all the activities that are associated with planning, execution and supply of finished goods and services to the consumers on a timely basis.
In this context, we can infer and logically deduce that the most likely driver of cost for finding supply chain talent within two weeks in this situation is urgency.
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what could happen if the engine was uncowled during the starting and operating procedures
If an engine fails during rollout or just before takeoff, immediately shut both throttles and land the aircraft safely. Before reaching a safe single engine speed right away after takeoff, drop your nose to increase velocity.
What is the engine starting procedure?Closing the throttle, turning off the fuel pump, setting the mixture control to idle cutoff, and simply cranking the engine is the most reliable hot start method I've found.
What is the procedure for engine failure?If an engine fails during rollout or just before takeoff, immediately shut both throttles and land the aircraft safely. Before reaching a safe single engine speed right away after takeoff, drop your nose to increase velocity. If you are unable to climb, close both throttles and land straight ahead.
What happens if engine fails during take off?The typical practice for the majority of aircraft would be to abandon takeoff if an engine failed during takeoff. In small aircraft, the pilot should turn the throttles down to idle, activate the speed brakes (if provided), and apply the brakes as needed if the engine fails before VR (Rotation Speed).
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me that both a triaxial shear test and a direct shear test were performed on a sample of dry sand. When the triaxial test is performed, the specimen was observed to fail when the major and minor principal stresses were 100 lb/in2 and 20 lb/in2, respectively. When the direct shear test is performed, what shear strength can be expected if the normal stress is 3000 lb/ft2
Answer:
shear strength = 2682.31 Ib/ft^2
Explanation:
major principal stress = 100 Ib / in2
minor principal stress = 20 Ib/in2
Normal stress = 3000 Ib/ft2
Determine the shear strength when direct shear test is performed
To resolve this we will apply the coulomb failure criteria relationship between major and minor principal stress a
for direct shear test
use Mohr Coulomb criteria relation between normal stress and shear stress
Shear strength when normal strength is 3000 Ib/ft = 2682.31 Ib/ft^2
attached below is the detailed solution
What is 1 over 6 Please help me
Answer:
16.6%
0.16
Explanation:
Answer:
One sixth
Explanation:
1/6 or 0.16
2
A spring balance pulls with 5 N on a beam of 0.5 m.
What is the torque at the end of the beam?
Answer:
The torque at the end of the beam is 2.5 Nm
Explanation:
Given;
length of beam, r = 0.5 m
applied force, F = 5 N
The torque at the end of the beam is given by;
τ = F x r
where;
τ is the torque
F is applied force
r is length of the beam
τ = 5 x 0.5
τ = 2.5 Nm
Therefore, the torque at the end of the beam is 2.5 Nm