If a designer is developing a plan for a project in which the entire part is made out of ¾" thick plywood and he only wants to use one view, he should use the _______________ view.Immersive Reader Back Front Right Top

Answers

Answer 1

Answer: Front View.

Explanation:

Since the design of the developers for the project is based around creating a component with a 3⁄4 thick plywood. The only view he should consider should be the front view, so it will be easier to show the project to potential buyers or clients who are typically more concerned about aesthetics by using the front view.


Related Questions

The process by which natural forces move weathered rock and soil from one place to another is called
a)soil conservation. b)deposition. c)abrasion. d)erosion

Answers

Answer:

Erosion is the geological process in which earthen materials are worn away and transported by natural forces such as wind or water. A similar process, weathering, breaks down or dissolves rock, but does not involve movement.Erosion is the opposite of deposition, the geological process in which earthen materials are deposited, or built up, on a landform.

 

Most erosion is performed by liquid water, wind, or ice (usually in the form of a glacier). If the wind is dusty, or water or glacial ice is muddy, erosion is taking place. The brown color indicates that bits of rock and soil are suspended in the fluid (air or water) and being transported from one place to another. This transported material is called sediment.

Explanation:

Physical erosion describes the process of rocks changing their physical properties without changing their basic chemical composition. Physical erosion often causes rocks to get smaller or smoother. Rocks eroded through physical erosion often form clastic sediments. Clastic sediments are composed of fragments of older rocks that have been transported from their place of origin.Landslides and other forms of mass wasting are associated with physical weathering. These processes cause rocks to dislodge from hillsides and crumble as they tumble down a slope. 

Landslides and other forms of mass wasting are associated with physical weathering. These processes cause rocks to dislodge from hillsides and crumble as they tumble down a slope.  

Plant growth can also contribute to physical erosion in a process called bioerosion. Plants break up earthen materials as they take root, and can create cracks and crevices in rocks they encounter.

I HOPE I HELPED YOU

what information should a professional engineer keep private​

Answers

their social security number

Lucia is playing with magnetic toy vehicles. She has two identical toy vehicles (purple and pink) that start on opposite sides of a center magnet that cannot move. She moves both vehicles one space closer to the center magnet

Answers

Incomplete question. The remaining part of the question read;

How did the potential energy of the two vehicles change? Did the potential energy of one vehicle change more than the other? Why do you think so?

Explanation:

1. The potential energy of the two vehicles increased because we could observe that they have unlike poles moving towards the center of the magnet. So the magnet field would be repealing both toy vehicles.

2. The potential energy of the pink vehicle change more than the purple vehicle. This is evident as we notice the pink vehicle is closer to the center of the magnet than the other.

3. The reason for this is because Lucia exerts more force (potential energy) on the pink vehicle to fight the repelling effect of the magnet

Answer:

1. The potential energy of the two vehicles increased because we could observe that they have unlike poles moving towards the center of the magnet. So the magnet field would be repealing both toy vehicles.

2. The potential energy of the pink vehicle change more than the purple vehicle. This is evident as we notice the pink vehicle is closer to the center of the magnet than the other.

3. The reason for this is because Lucia exerts more force (potential energy) on the pink vehicle to fight the repelling effect of the magnet

Explanation:

a misfire code is a type ____ DTC
A) 1 or 2
B) a or b
C) c or d
D l or ll

Answers

Answer:

A misfire code is a type A DTC.

Explanation:

A misfire code is a type A DTC.

A Misfire generate unburned hydrocarbons thereby increasing the load on the catalytic converter. Misfires are due to incomplete combustion or lack of combustion.

Diagnostic Trouble Code (DTC) is a type of code used by the vehicle’s onboard diagnostics (OBD) system to alert when the vehicle has a problem. Type A DTC is the most serious DTC, this are emissions related.  It requests illumination of the MIL after one failed driving cycle and stores a freeze frame DTC after one failed driving cycle.

Which of the following is NOT a type of independent front suspension?
Select one:
a. Short long arm (SLA)
b. Solid axle
c. Double wishbone
d. Twin I-beam

Answers

Answer d

Explanation:

An ideal vapor-compression refrigeration cycle using refrigerant-134a as the working fluid is used to cool a brine solution to −5°C. This solution is pumped to various buildings for the purpose of air-conditioning. The refrigerant evaporates at −10°C with a total mass flow rate of 7 kg/s, and condenses at 600 kPa. Determine the COP of the cycle and the total cooling lo

Answers

Answer:

1141

7.2

Explanation:

The evaporator Temperature T1 = -10°C

h1 = 244.55kj/kg

S1 = 0.93782kj/kg

The enthalpy at second state from given condenser pressure from super heated refrigerant table

P2 = 600

S2 = S1

h2 = 267.19kj/kg

Enthalpy at 3 and 4 from condenser pressure

h3 = h4 = 81.5kj/kg

To get cooling load

QL = m(h1-h4)

M= 7

= 7(244.55-81.5)

= 7(163.05)

= 1141.35kw = 1141KW

COP

= h1-h4/h2 -h1

= 244.55-81.5/267.19-244.55

= 163.05/22.64

= 7.2

Explain why it is important to model the context of a system that is being developed. Give two examples of possible errors that could arise if software engineers do not understand the system context.

Answers

Answer:

Explanation:

System models are created and used in order for all of the individuals involved in the process to be able to see exactly how each module that is being created connects to the rest of the system. This allows every developer to understand each module's/part's function and develop it with the entire system in mind. This also makes it easier to implement newer features. If a model is not made then the developers may miss key features and when it is time to piece all of the components of the system together, the overall process can become a jumbled mess.

Calculate the number of vacancies per cubic meter at 1000∘C for a metal that has an energy for vacancy formation of 1.22 eV/atom, a density of 6.25g/cm^3, and an atomic weight of 37.4 g/mol.
(A) 1.49×10^18 m^−3
(B) 7.18×10^22 m^−3
(C) 1.49×10^24 m^−3
(D) 2.57×10^24 m^−3

Answers

Answer:

C

Explanation:

N = Na.P/A------(1)

Na = avogadro's number = 6.02210²³

P = density

A = atomic weight of metal

When we substitute into equation 1 above we get

1.0x10²⁹atoms/m³

From here we calculate the number of vacancies

T = 1000⁰c = 1273K

The formula to use is

Nv= Nexo(Qt/K.T) -----(2)

Qt = 1.22eV

K = Boltzmann's constant = 8.6210x10^-5

When we substitute values into equation 2

We get Nv = 1.49 x 10²⁴m-3

Therefore option c is correct

Check attachment for a more detailed calculation of this question

Given an orifice meter with the dimensions in lab, a flow rate of 60 lbm/min and a differential pressure of 200 inches of water, the flow coefficient of the meter would be closest to Group of answer choices

Answers

Answer:

Theoretically impossible

Explanation:

Given that:

The mass flow rate = 60 lbm/min

The differential pressure = 200 inches

The flow rate Q is can be expressed by the formula:

[tex]Q = K.A\sqrt{2g \Delta h}[/tex]

where;

K = Discharge coefficient

A = area

Δh = Head drop

g = gravity

From the given parameter, the area is unknown.

Therefore, the flow coefficient of the meter will be theoretically impossible to be determined.

What are shims used for ?

Answers

Bro search that up on goggle
Either b or c I believe

Technician A says that a live axle is an axle that drive the vehicle. Technician B says that a dead axle means that the axle can be steered. Who is correct?

Answers

Answer:

technician a is correct

Explanation:

a live axle is an axle that gives out power or torque. a dead axle is an axle that supports the wheels, thus technician a is correct.

hope this helps

its a tricky one, wouldnt be surprised if i was wrong.

Calculate the torque developed by a motor that delivers 200 hp rotation at 3600 rpm. Use the Torque value to determine the diameter of a solid steel shaft with an allowable shear stress of 20,520 psi.

Answers

Solution :

Given:

Power, P = 200 hp

              = 110000 lbf ft/s

Speed, N = 3600 rpm

Power , [tex]$P=\frac{2 \pi NT}{60}$[/tex]

∴ Torque, [tex]$T = \frac{60 P}{2 \pi N}$[/tex]

[tex]$T = \frac{60 \times 110000}{2 \pi \times 3600}$[/tex]

T = 291.93 lb -ft

[tex]$T_{allow} = 20,250 \ psi$[/tex] ---- allowable shear stress

Therefore, torque , T = 391.93 lb-ft

                              T   = 291.93 x 12 lb-in

∴ T 3503.16 lb-in

Now from the Torsion formula,

[tex]$\frac{T}{J}=\frac{T_{allow}}{ r}$[/tex]

Here, [tex]$r=\frac{d}{2} ; \ \ \ J=\frac{\pi d^4}{32}$[/tex]   ---- polar moment of inertia.

∴ [tex]$\frac{T}{\frac{\pi d^4}{32}}=\frac{T_{allow}}{ d/2}$[/tex]

[tex]$T_{allow}=\frac{16 T}{\pi d^3}$[/tex]

[tex]$\pi d^3=\frac{16 \times 3503.16}{20520}$[/tex]

[tex]$\pi d^3 = 2.7315$[/tex]

[tex]$d^3 = 0.8699$[/tex]

or [tex]$d= (0.8699)^{1/3}$[/tex]

d = 0.9546 in

Therefore the diameter of the shaft is 0.9546 in.

Technician A says that some vehicle makers do NOT apply undercoating to the floor pan. Technician B says that some vehicle makers do NOT apply anti-corrosion compound to interior cavities. Who is right?

Answers

Answer:

Explanation:

Both technicians are right

Documentation of a flow chart?

Answers

Answer:

A Document in a flowchart  represents a printout, for instance a document or a report.

Flowcharts are used in planning and documenting basic process or projects. Like different sorts of outlines, they help imagine what is happening and along these lines help comprehend a process, and maybe additionally find more subtle highlights inside the process.

Explanation:

A flowchart is essentially a graphical portrayal of steps. It shows steps in consecutive request and is generally used in introducing the progression of calculations or work process. Regularly, a flowchart shows the means as boxes of different sorts, and their request by interfacing them with bolts.

It is likewise a kind of graph that speaks to a work process or cycle. A flowchart can likewise be characterized as a diagrammatic portrayal of a calculation, a bit by bit way to deal with settling an assignment.

The flowchart shows the means as boxes of different sorts, and their request by associating the containers with bolts. This diagrammatic portrayal outlines an answer model to a given issue. Flowcharts are used in investigating, planning, reporting or dealing with a process or program in different fields.

Your friend has two substances A and B which are compressed liquid and superheated vapor respectively. Both are in rigid vessels. Your friend claims that when he cools down both substances they started to boil. Can this be true? Explain yourself using a T-v diagram.

Answers

Answer:

Following are the solution to the given question:

Explanation:

The material is necessary to cook since frying is a speedy process for evaporation.

Drug A is now in the compressed fluid area, and the material would not boil if the pressure is chilled. Because the ship is solid, its substance A claim is false.

Unless the volume comprises of a drop in the heat, the B substance reaches a vapor pressure area and a wet region. That's the area that melting may occur. His claim for material B could therefore be true.

A picture of a ______ is the label pictogram on a chemical that warns of a product's acute toxicity.
A) Flame over circleB) Gas cylinderC) Skull and crossbonesD) Bomb

Answers

Answer:

C) Skull and crossbones

Explanation:

Its on the OSHA website under HCS Pictograms and Hazards

Does wildfire smoke only affect communities near where the fire is burning?

Yes
No

Answers

The smoke and ashes can carry into other communities

Answer:

no, i dont think so.

Explanation:

i think it impacts communities that are in the winds path.  in other words, wherever the wind blows the smoke.

hope this helps

15. Concerning blood, which virus poses the greatest risk for workers?
A) O HIV
B) O Hepatitis C
C) O Hepatitis A
D) O Hepatitis B

Answers

Answer:

I think the answer is A. HIV

A dual-fluid heat exchanger has 10 lbm/s water entering at 100 F, 20 psia and leaving at 50 F, 20 psia. The other fluid is glycol entering at 10 F, 22 psia and leaving at 50 F, 22 psia. Find the required mass flow rate of glycol and the rate of internal heat transfer

Answers

Answer:

Rate of internal heat transfer = 23.2 Btu/Ibm

mass flow rate = 21.55 Ibm/s

Explanation:

using given data to obtain values from table F7.1

Enthalpy of water at temperature of 100 F = 68.04Btu/Ibm

Enthalpy of water at temperature of 50 F = 18.05 Btu/Ibm

from table F.3

specific constant of glycerin [tex]C_{p} = 0.58 Btu/Ibm-R[/tex]

The rate of internal heat transfer ( change in enthalpy )

h4 - h3 = Cp ( T4 - T3 ) --------------- ( 1 )

where ; T4 = 50 F

             T3 = 10 F

             Cp = 0.58 Btu/Ibm-R

substitute given values into equation 1

change in enthalpy ( h4 - h3 ) = 23.2 Btu/Ibm

Determine mass flow rate of glycol

attached below is the detailed solution

mass flow rate of glycol = 21.55 Ibm/s

A 10-kW cooling load is to be served by operating an ideal vapor-compression refrigeration cycle with its evaporator at 400 kPa and its condenser at 800 kPa. Calculate the refrigerant mass flow rate and the compressor power requirement when refrigerant-134a is used.

Answers

Answer:

0.0625kg/s

0.9031kW

Explanation:

At state 1, enthalpy and entropy are determined from table R-134a.

P1 = 400kpa

h1 = 255.55kj

S1 = 0.92691

h2 = 270kj/kg

Enthalpy at states 3 and 4 can be gotten from the pressure and state with data from a-12

h3 = h4 = 95.48kj/kg

1.)

The mass flow rate

= QL/h1 - h4

= 10/255.55-95.48

= 10/160.07

= 0.0625kg/s

2.)

The power requirement

= 0.0625(270-255.55)

= 0.9031 kW

What type of drill bit can produce a blind hole with a flat bottom

Answers

Answer:

end mill 4 flute

Explanation:

you can simply hook it up

Crank OA rotates with uniform angular velocity 0  4 rad/s along counterclockwise. Take OA= r= 0.5
m,AB2r,and BC 2r.For the instant, 45,OA is horizontal and AB is vertical.
determine the angular velocity and angular acceleration of BC.

Answers

CRABK DAT SOUIJA BOI LIKE OOOOO WATCH ME WATCH ME OOOO LASAGNA Can you lend me 700$ because I used my toaster as a bath heater and now my legs are gone plz I need money for bandaids

What is the relationship between compressor work and COPR?

Answers

Oh that’s a question you can just look up on safari the right answer is there thank me later tho

(A) Explain why residual thermal stresses are introduced into a glass piece when it is cooled.(B) Are thermal stresses introduced upon heating? Why or why not?

Answers

Answer:

Yes, they are

Explanation:

A

Assuming that a glass piece is cooled from an elevated temperature, then the internal stresses which are also called thermal stresses, gets inroduced due to result of the difference in cooling rate and that of the thermal contraction that exists between the surface and the interior regions. They can lead to fractures such as thermal shock, as a result, we deem these thermal stresses important.

B

Yes, they are. They are introduced upon heating due to the thermal expansion that takes place

Signal loss is the reduction of a signal that occurs in a medium as a function of the physical length of the channel. This is known as:_________

a. degradation.
b. attenuation.
c. frequency degradation.
d. amplitude degradation.

Answers

Answer:

B) Attenuation

Explanation:

Attenuation can be regarded as the loss of signal strength which could be as a result of both external and internal factors. This loss of signal strength could occur in networking cables as well as other connections. Attenuation is a loss in energy, because as signal travels, its strength decreases as a a result of distance it covers, this loss of energy is due to the signal trying to overcome the resistance at the medium. One of the main the causes of attenuation is When there is Extra noise on available networks, networks such as electrical current as well as radio waves. It should be noted that attenuation is Signal loss which is the reduction of a signal that occurs in a medium as a function of the physical length of the channel.

Singnal attenuation can taken care of by using lower loss materials with high cost, instead of making of PCB routing length reduction. Amplifiers can also be engaged in amplifying attenuated signal to get back the original signal, this will compensate the loss.

Attenuation can be measured in decibels(dB), this gives the measurement of relative strengths of one signal at two different point or measurement of two signals.

A wing generates a lift L when moving through sea-level air with a velocity U. How fast must the wing move through the air at an altitude of 10,000 m with the same lift coefficient if it is to generate the same lift?

Answers

Answer:

V1 = 1.721 * V2

Explanation:

To start with, we assume that both lift forces are equal, such that

L2 = L1

1 is that of the level at 10000 m, and 2 is that of the level at sea level.

Next, we try and substitute the general formula for both forces such that

C(l).ρ1/2.V1².A = C(l).ρ2/2.V2².A

On further simplification, we have

ρ1.V1² = ρ2.V2², making V1 subject of formula, we have

V1 = √(ρ2/ρ1). V2²

Using the values of density for air at 10000 m and at sea level(source is US standard atmosphere), we have

V1 = √(1.225/0.4135) * V2

V1 = √2.9625 * V2

V1 = 1.721 * V2

Consider a building whose annual air-conditioning load is estimated to be 40,000 kWh in an area where the unit cost of electricity is $0.10/kWh. Two air conditioners are considered for the building. Air conditioner A has a seasonal average COP of 2.3 and costs $5500 to purchase and install. Air conditioner B has a seasonal average COP of 3.6 and costs $7000 to purchase and install. All else being equal, determine which air conditioner is a better buy.

Answers

Answer:

Air Conditioner B is a better buy for the consumer.

Explanation:

We are given

Annual load = 40,000kWh

Cost = $0.1/kWh

COPa = 2.3

COPb = 3.6

Purchase and Installation charge of A = $5500

Purchase and Installation charge of B = $7000  

We need to make our decision between a cheaper but inefficient and a costlier but efficient Air conditioner for the building.

We assume that all other factors for both the air conditioner remains same and are comparable in all other aspects except cost and efficiency.

The air conditioner which will cost less during its life time will be a better buy. The total cost of the unit during its lifetime like its (servicing, maintenance, etc) can be determined by performing a life cycle analysis, but a simpler method to determine it is by calculating the simple payback period. The energy and cost saving of more efficient Air conditioner is

Energy saving = (Annual energy usage of A) - (Annual energy usage of B)

                        = Annual Load( [tex]\frac{1}{COPa } - \frac{1}{COPb}[/tex]

                        = 40,000kWh( [tex]\frac{1}{2.3} - \frac{1}{3.6}[/tex])

                        = 40000(0.157)

                        = 6280kWh/year

Cost saving = (6280kWh/year)*($0.1)  

                    = $628.02/year

The installation cost difference of the Air conditioner s

    Cost difference =  $7000-$5500

                               = $1500

Therefore a more efficient Air conditioner B will pay for $1500 cost differential for the first year.

A cost conscious buyer will go for a costly but efficient Air conditioner B which is a better buy in this case also the Air conditioner will last at least for 15 years. But it would be difficult if the cost of the electricity in the area of the consumer is less than $0.1/kWh or if the annual load is less than 40,000kWh.

Design a counter which counts in the sequence: (20 points) 0000, 1001, 1000, 0111, 0110, 0101, 0100, 0011, 0010, 0001, 0000,

a. Use D flip-flops.
b. Use J-K flip-flops.
c. Use S-R flip-flops.
d. Use T flip-flops.
e. Draw a complete state diagram for the counter of (b) showing what happens when the counter is started in each of the unused states.

Answers

Answer:

i think its a... i would get a better answer thoe

Explanation:

A flat plate 1.5 m long and 1.0 m wide is towed in water at 20 o C in the direction of its length at a speed of 15 cm/s. Determine the resistance of the plate and the boundary thickness at its trailing end.

Answers

Answer:

15.8

0.0944

Explanation:

L = 1.5

B = 1.0

Speed of water = 15cm

Temperature = 20⁰C

At 20⁰C

Specific weight = 9790

Kinematic viscosity v = 1.00x10^-4m²/s

Dynamic viscosity u = 1.00x10^-3

Density p = 998kg/m²

Reynolds number

= 0.15x1.5/1.00x10^-4

= 225000

S = 5

5x1.5/225000^1/2

= 0.0158

= 15.8mm

Resistance on one side of plate

F = 0.664x1x1.0x10^-3x0.15x225000^1/2

= 0.04724N

Total resistance

= 2N

= 2x0.04724

= 0.0944N

Wich muscle in your body are affected by alcohol first

Answers

Answer:

Brain

Explanation:

Thirty seconds after your first sip, alcohol races into your brain. It slows down the chemicals and pathways that your brain cells use to send messages. That alters your mood, slows your reflexes, and throws off your balance.
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