Answer:
i have actually been wondering this also. its a really great tool to have
Explanation:
Answer:
BRAINLY EXPERT✓
Explanation:
Initially called Zidane. pl, the company was founded in 2009 in Poland by Michał Borkowski (currently chief executive officer), Tomasz Kraus, and Łukasz Haluch. The first million unique monthly users were achieved within 6 months after the release.[5]
In January 2011, the company founded Znanija.com, the first international project dedicated to Russian language speakers.[6] Several other versions in multiple languages for the following markets included Turkey (eodev.com), Latin America and Spain (brain. lat), and Brazil (brainly.com.br).
Jamal is demonstrating howto build a game in scratch to several of his friends. for the purpose of his demonstration, he wants the backdrop to continuously keep changing. what type of loop will he need to create in order to do this?
a control loop
b master loop
c forever loop
d motion loop
A type of loop which Jamal will need to create in order to make the backdrop to continuously keep changing is: C. forever loop.
What is a forever loop?A forever loop can be defined as a type of loop which comprises a sequence of instructions that are written to run continuously or endlessly, until the simulation is quitted by an end user.
This ultimately implies that, a forever loop should be created by Jamal to make the backdrop to continuously keep changing.
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Answer: C
Explanation:
To any of you who are also taking Game Design, I have respect for you.
A motor car shaft consists of a steel tube 30 mm internal diameter and 4 mm thick. The engine develops 10 kW at 2000 r.p.m. Find the maximum shear stress in the tube when the power is transmitted through a 4: 1 gearing.
The maximum shear stress in the tube when the power is transmitted through a 4: 1 gearing is 28.98 MPa.
What is power?Power is the energy transferred per unit time.
Torque is find out by
P = 2πNT/60
10000 = 2π x 2000 x T / 60
T =47.74 N.m
The gear ratio Ne / Ns =4/1
Ns =2000/4 = 500
Ts =Ps x 60/(2π x 500)
Ts =190.96 N.m
Maximum shear stress τ = 16/π x (T / (d₀⁴ - d₁⁴))
τ max =T/J x D/2
where d₁ = 30mm = 0.03 m
d₀ = 30 +(2x 4) = 38mm =0.038 m
Substitute the values into the equation, we get
τ max = 16 x 190.96 x 0.038 /π x (0.038⁴ - 0.03⁴)
τ max = 28.98 MPa.
Thus, the maximum shear stress in the tube is 28.98 MPa.
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One of the principles of supply chain strategy
The principle of supply chain strategy is Segregate customers on the basis of service needs of different groups and follow the supply chain to deliver goods and services to the consumers profitably.
What is supply chain?Supply chain is the group of activities performed by an organization to deliver goods and services to the consumer end.
Thus, one of the principle of supply chain strategy is separate the customers on the basis of service needs of different groups and follow the supply chain to deliver goods and services to the consumers so that they earn profit.
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Not all manufacturers use a brake lining wear indicator. select one: true false
Answer:
it is true
Explanation:
I don’t know why but maybe it’s because they just want you to pay for more than you goes?
Which of the following is defined as the progression of Ideas leading to the final delivery of a product?
O design
O feasibility
O schematics
O optimization
The progression of ideas leading to the final delivery of a product is in option D optimization.
What is optimization?Optimization means upgrading something or making it best. The process of making the best effective use of a situation or resource.
Hence, if the product is going to shape to its final form, then it will go through the process of optimization.
Hence, option D is true.
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You measure the length of a short pipe nipple that must be cut and arrive at the fraction 28/32 inch. reduce this fraction to its lowest terms. this fraction, expressed in its lowest terms, is inch.
Answer:
7 8 inch
Explanation:
If the standpipe system has an automatic water supply or is part of a combined system, a _______ should go to the exterior of the building and provide a means to safely remove the system water so it will not be a hazard
When the standpipe system has an automatic water supply or is part of a combined system, a main drain should go to the exterior of the building.
What is Standpipe systems?This is known to be a system that is made of piping and hose linkage tht is often installed in all of a building to give reliable water for use.
Note that in the above scenario, When the standpipe system has an automatic water supply or is part of a combined system, a main drain should go to the exterior of the building.
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Which component of the enterprise platform will help the company capture, curate, and consume customer information to improve their services?
Data and insight is the component of the enterprise platform will help the company capture customer information.
What is Data and insight?
These are the data and knowledge gotten from analysis of customer's information in a business.
This enterprise platform is very important as it helps the organization to improve their services
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Help me plss... :‹
[tex] \: \: \: [/tex]
Answer: You're question is very vague... be more specific in the problem, what is it asking you to do?
Explanation: This shouldn't be under "Engineering" you should put it under "Mathematics" for a better result. Sorry for the mix up! Hope this helps! ^^
A ladder of length l is leaning against a domed roof with a radius r. The base of the ladder is distance d from the base of the dome. The ladder begins to slide. Determine the IC at the moment the ladder slides if:
l = 2 m
r = 1 m
d = 0.5 m
And the x-y origin is centered at the left base of the ladder (point O).
The IC at the moment the ladder slides based on the lengths and other information given will be (0, 1.32)
How to calculate the IC?From the information given, the calculation will be computed below:
l cos a = 1.5
cos a = 1.5/2
cos a = 0.75
a = 41.4°
ab = a/cos a = 1.5/cos41.4
ab = 1.5/0.75
ab = 2
b = 2 × sin 41.4
b = 2 × 0.66
b = 1.32
Therefore, the IC will be (0, 1.32).
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These gloves offer good pliability and protect against harmful elements such as hydraulic fluids, gasoline and alcohols:
Neoprene are gloves that are designed and developed to offer good pliability and protect against harmful elements e.g hydraulic fluids, gasoline and alcohols.
What is a glove?A glove can be defined as a personal protection equipment (PPE) that are worn on the hands (from the wrist to the fingers), so as to protect and safeguard it from potential burn and chemical hazards.
In Engineering, neoprene are type of gloves that are designed and developed to offer good pliability and protect against harmful elements such as:
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What refrigeration control device is used to make sure that the bearings in a compressor are receiving proper lubrication
A Thermostat refrigeration control device is used to make sure that the bearings in a compressor are receiving proper lubrication.
What are refrigerant manipulate devices?A tool for controlling the waft of refrigerant to the circuits of a multi-circuit evaporator in a refrigeration system, comprising an orifice plate having a refrigerant enlargement orifice and a distributor plate having passages into which interchangeable metering jets are inserted.
The thermostat controls the cooling system by tracking the temperature after which switching the compressor on and off. When the sensor senses that it is bloodless sufficient internal a refrigerator, it turns off the compressor. If it senses an excessive amount of heat, it switches the compressor on and starts off evolving the cooling system again.
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automotive engineering essay
Answer:
Explanation:
Automotive Engineering is one of the most challenging and comprehensive fields of engineering today. The automotive sector has come a long way since the age of steam powered flat engines to the age of fast racing Formula 1 car, light and heavy commercial vehicles with lots of technological developments being done every day. “A good scientist is a person with original ideas. A good engineer is a person who makes a design that works with as few original ideas as possible”.
Engineering has been my passion from the start. I took the first step to become an engineer by securing 93.2% in SSC and 82.8% in HSC. I also secured 8259th rank among 10 lakhs students in AIEEE and 6979th rank among 4.7 lakhs in JEE in 2010 so that I could get a seat in one…show more content…
Additionally, Germany avails the advantages of securing the best of knowledge, quality of education, and above all the international exposure. The quality of German Mechanical Engineering has always been much vaunted. The research carried out on structural design of vehicles, alternative and electrified vehicle propulsion at the University is appealing. The breadth and depth of the courses coupled with a stimulating research environment seem to me the right mix for seminal work and pioneering research. I believe that with variety of courses offered and with highly knowledgeable faculty and excellent facilities, the University will provide a perfect environment to focus all my resources towards my goal.
In summary, I am fully committed to a career in automotive sector. My long term goal is to pursue my research interests in the field of automobiles and strive to emerge as an active contributor to the field in the World in general and India in particular. Hence I am eagerly looking forward to spending the next few years in a structured Master’s program in Automotive Engineering. The Mechanical Department of RWTH Aachen has World renowned Faculty besides academically brilliant and motivated graduates in whose association my understanding of the area will be much.
Tech A says that on most front wheels the replaceable sealed bearing is pressed between the hub and the wheel flange and is the more difficult to replace. Tech B says that the unitized wheel hub includes a sealed wheel bearing, a removable wheel hub, and possibly the wheel flange. This type can be unbolted. Who is correct
Both technicians A and B are correct. On most front wheels the replaceable sealed bearing is pressed between the hub and the wheel flange and is the more difficult to replace. Hence it is usually replaced as a unit.
What about the Unitized Wheel Hub?The unitized wheel hub includes a sealed wheel bearing, a removable wheel hub, and possibly the wheel flange that can be unbolted.
Hence both technicians are correct.
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Use the two images of the houses to answer the following questions. Number your answers. Are the lengths of one house proportional to the lengths of the other house? Why or why not? How can you use scale factors to show that the homes are or are not proportional? What role does surface area take in the building of a house? What advantages exist for a house with a large amount of surface area exposed to the elements? Explain.
No, the lengths of one house is not proportional to the lengths of the other house as they have different length.
What is house?House is known to be a form of dwelling or a residence where people are known to live in.
Scale factors can be used tp show that the homes are not proportional as it will help one tp know which is smaller, and it will tell us the proportional measurements of the house.
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what does the inside of a nuclear reactor look like
Is a diesel truck less expensive to drive than a gas truck?
Answer:
Typically, diesel trucks cost more than those with gas engines, especially when you're first buying them, as diesel is usually featured as an add-on for gas-powered cars. Diesel add-ons can cost over $5,000 for midsize trucks and around $10,000 for heavy-duty trucks.
Explanation:
Make me brain pls
What is the factor of safety of a member whose actual stress is 22 ksi and allowable stress is 30 ksi
Factor of safety can be calculated by capacity/demand or allowable/actual. So in this case your answer would be 30/22 = 1.36
Why do i pick the most exspensive hobbies
Airsoft and building pcs
Answer: You make more money
Explanation: A pc is like 2k+ to build so imagine all of the profits coming in from your business/work.
The team needs to choose a primary view for the part drawing. Three team members make suggestions:
- Team member 1 suggests an orthographic top view because that is how the plans for the part were submitted.
- Team member 2 suggests an isometric view showing side details that were documented within the submitted plans.
- Team member 3 suggests all three orthogonal views should be presented as the primary view.
What is the best way to proceed?
Answer choices below:
Answer:
Option 1
Explanation:
As the team has already submitted the plans for the part drawing, the best way to proceed would be how it was given in the plans. Hence, the option to be selected :
Team member 1 suggests an orthographic top view because that is how the plans for the part were submitted.Answer:
The first option
Explanation:
Team member 1 suggests an orthographic top view because that is how the plans for the part were submitted.
Please let me know the answer up to three decimals
Answer: 00.9666
Explanation: I don't know if this is the correct answer but, this question should've been under "Mathematics" and not under "Engineering" hope this helps. Have a good day/night ^^
The SI unit for the diffusion coefficient is m2/s, but older texts sometimes report diffusion coefficients in units of in2/min. What is the value of a diffusion coefficient of 18.5 in2/min expressed in SI units
The value of a diffusion coefficient of 18.5 in2/min expressed in SI units is 0.000198924 m^2/s.
What is SI unit?The International System of Units can be regarded as a body that provide a universal scientific unit to all units.
Since
[tex]1in^2 = 1.07527*10^-5 m^2/s[/tex]
Then 18.5 in^2/min= 0.000198924 m^2/s
Therefore, the value of a diffusion coefficient of 18.5 in2/min expressed in SI units is 0.000198924 m^2/s.
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The factor of safety is very important in design. It is determined by comparing the allowable stress to actual stress. What is known if the range of the factor of safety is between .75 and 1
Explanation:
A factor of safety is the load-carrying capacity of a system beyond what the system actually supports. Bridges, buildings, safety equipment, and fall protection all start with a factor of safety.
Simply put, the safety factor is how much stronger a system is than required. The factor of safety is the backbone of all structures and safety equipment and originates with engineers. In the planning phase of all structures and safety equipment, engineers determine the required overload from any object to remain safe in the event of an emergency.
For reliability, structures are typically built stronger than necessary. This is in case a structure experiences a heavier-than-expected load. This is a factor of safety. Ultimately, the amount of stress and overload a structure can handle comes down to the material used to build it.
Determining the factor of safety:
Engineers perform strength tests to determine how much weight a material can handle. Certain materials are more ductile than others, meaning they deform to pressure before breaking more so than others, like brittle materials. Brittle materials simply break once they meet the maximum force.
Ductile materials use yield strength to determine the safety factor. Brittle materials use the ultimate strength.
Yield strength: Determines the safety factor until the start of deformation.
Ultimate strength: Determines the safety factor until failure.
Ductile materials often test the factor of safety against yield and ultimate strengths while brittle materials usually only calculate the ultimate safety factor since the yield and ultimate values are often so close.
The necessary factor of safety of any structure determines the materials used. If a structure has a high required factor of safety, then engineers use a ductile material to build it. The realized factor of safety determines the amount of material used.
Required (design factor): A constant value imposed by law or standard. A structure is required to meet this value at a minimum.
Realized
Why are manhole covers round in most of the cases?
Answer:
Explanation:
Because there are no angles for alignment, the round shape makes these heavy covers easier to put back on once they're taken off. Round covers are also easier to manufacture. But the main reason manhole covers are round is so they won't accidentally fall into the manhole itself.
Tech B says that in a four-stroke engine, the piston travels to TDC four times to complete the cycle. Tech B says that in a four-stroke engine, the air-fuel mixture is ignited once every two strokes. Who is correct
Tech B is correct: In a four-stroke engine, the piston reaches TDC twice per cycle, and the air-fuel mixture is ignited once every two strokes.
In a four-stroke engine, the piston travels to Top Dead Center (TDC) two times to complete the entire cycle.
During the first stroke (intake), the air-fuel mixture is drawn into the cylinder, and during the fourth stroke (power), the ignited air-fuel mixture produces power and the piston again reaches TDC.
This means that the piston reaches TDC twice during one complete cycle.
Additionally, Tech B is also correct in stating that the air-fuel mixture is ignited once every two strokes.
The ignition happens during the power stroke (fourth stroke) after the compression stroke (third stroke).
Hence, tech B is correct.
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Complete question:
Tech A says that in a four-stroke engine, the piston travels to TDC four times to complete the cycle. Tech B says that in a four-stroke engine, the air-fuel mixture is ignited once every two strokes. Who is correct
A three (3) story theater with one side wall, facing the wind, has a height of 30 feet against which directly impact the winds during a hurricane. Each of the floors has a height of 10 feet. The theater also has opposite walls, each 10 feet high. All the mentioned walls have a length of 120 feet. The building is fully enclosed and is It is located in a flat and open terrain. Assume that the sustained speed of the winds it is 145 MPH.
Determine:
a) the pressure exerted by the wind against each of the side walls (lb/ft2)
b) the pressure exerted by the wind against each of the opposite walls (lb/ft2)
You have been installed a chief in your hometown write a letter to your friend in another school telling him at least three things you intend doing to develop the town
What are the rigging devices used to move loads such as steel plates and sheet piles without the use of slings, but grip the load by biting down and using jaw tension to secure the load
The rigging device which are used to move loads without the use of slings, but grip the load by biting down and using jaw tension to secure the load, is lifting clamps.
What are the rigging devices?The rigging devices are used to lift the objects and items when the safety is required. This device is used in the industries.
Types of rigging devices
Rigging hooks-These rigging device is used when the heavy load need to be lift.Lifting clamps-Lifting clamp are used to lift the device with jaw tension to secure the load. In this, there is no use of slings.Pulley and blocks-In the load is lifts with the help of block and pulley arrangement. This is a widely used rigging device.Thus, the rigging device which are used to move loads without the use of slings, but grip the load by biting down and using jaw tension to secure the load, is lifting clamps.
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Tech A says that blowby gases occur when compression and combustion gases leak past the piston rings. Tech B says that the upper two piston rings are oil control rings. Who is correct?
Tech A says that blowby gases occur when compression and combustion gases leak past the piston rings is correct while tech B is also correct.
What causes Blowby gasses?A lot of blowby occurs takes place if exhaust gas enters the crankcase by passing via or past the piston rings.
Note that other sources are turbochargers as Blowby passes the piston rings, it brings in pressure and combustion gases into the oil pan.
Therefore, Tech A says that blowby gases occur when compression and combustion gases leak past the piston rings is correct while tech B is also correct.
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if all other elements in a hydraulic elevator system remain the same what would the effect of increasing the size of the oil line
if all other elements in a hydraulic elevator system remain the same the rate of flow will increase and this would have effect on the increasing the size of the oil line.
What happens if hydraulic pressure is too high?When a given pressure is found to be too high, the system is said to make use of the excessive input energy and the fluid is said to be overheat and it is one that can produce great danger to humans.
Therefore, the effect of increasing the size of the oil line is that rate of flow will increase and pose real threat.
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a pipe discharges wine into a 1.5m diameter tank. Another pipe (15cm diameter), located near the base of the, is used to discharge wine out of the tank. Calculate the volumetric flow rate into the tank if the wine level remains constant at 2.5m.
The volumetric flow rate into the tank if the wine level remains constant at 2.5m is; 0.1232 m³/s
How to Calculate Volumetric Flow Rate?The formula for volumetric flow rate is;
V' = area * velocity
We are given;
Diameter; d = 15 cm = 0.15 m
Thus;
Area; A = (π/4)d²
A = (π/4)(0.15)²
A = 0.0176 m²
Velocity is; v = √(2gh)
v = √(2 * 9.8 * 2.5)
v = 7 m/s
Thus volumetric flow rate is;
V' = 0.0176 * 7
V' = 0.1232 m³/s
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