Answer:
soon
Explanation:
because soon is like past tense for prepaid
All of these are true about using adhesive EXCEPT:
Answer:
Except what? I'm confused
All of these are true about using adhesive except Bilateral. A bilateral contract is defined as an agreements between two parties in which each side agrees to fulfill his or her side of the bargain.
What is bilateral contract?A bilateral contract is defined as an agreements between two parties in which each side agrees to fulfill his or her side of the bargain. According to my research on the different terms used when referencing an insurance contract, I can say that all of the answers provided except for Bilateral are considered typical characteristics describing the nature of an insurance contract.
Since an insurance contract is a fund that the insurance company pays in the case of an accident in which the person is injured, there is only one party that agrees to fulfill their side of the bargain and that is the insurance company.
Therefore, All of these are true about using adhesive except Bilateral. A bilateral contract is defined as an agreements between two parties in which each side agrees to fulfill his or her side of the bargain.
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What disadvantages can a resort come across
Answer:
the disadvantages can be people's thoughts about them and also a rival resort nearby which looks more posh pls mark brainliest i need 5 more for next rank thank you
Explanation:
The sinusoidal current source in the circuit shown in figure below produces the current Is=25cos100000t A. a) Construct the frequency-domain equivalent circuit. b) In the following circuit, connect impedance, Z=10 J−10 J in parallel with other impedances, under this condition find voltage of the circuit.
The voltage of the circuit is 82.125V
What is a Sinusoidal Current?A sinusoidal current is an alternating current (AC) that varies in magnitude and direction over time, following a sinusoidal waveform. It is called "sinusoidal" because its shape resembles a sine wave, which is a smooth and continuous curve that oscillates between positive and negative values.
Sinusoidal currents are commonly used in electrical power systems to transfer energy from power plants to homes and businesses. They have several advantages over direct current (DC) systems, including the ability to be easily transformed to different voltage levels using transformers, and the ability to be transmitted over long distances with minimal power loss.
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in terms of the atomic radius, r, determine the distance between the centers of adjacent atoms (nearest-neighbor distance) for the following directions and monoatomic crystal structures:
(a) for the FCC crystal along the [100] direction; b) for the BCC crystal along the [111] direction; (c) for the BCC crystal along the [110] direction.
The nearest-neighbor distance between atoms in monoatomic crystal structures along different directions can be determined using the formula d = r * sqrt(n), where n is the number of atoms in the direction considered.
To determine the nearest-neighbor distance between atoms in monoatomic crystal structures along different directions, we can use the formula:
d = r * sqrt(n)
where d is the distance between the centers of adjacent atoms, r is the atomic radius, and n is the number of atoms in the direction considered.
(a) For the FCC crystal along the [100] direction, there are two atoms per unit cell along this direction. Thus, the nearest-neighbor distance is:
d = r * sqrt(2)
(b) For the BCC crystal along the [111] direction, there are four atoms per unit cell along this direction. Thus, the nearest-neighbor distance is:
d = r * sqrt(4) = 2r
(c) For the BCC crystal along the [110] direction, there are two atoms per unit cell along this direction. Thus, the nearest-neighbor distance is:
d = r * sqrt(2)
It's worth noting that the atomic radius may vary depending on the element or compound that forms the crystal structure. However, the general relationship between atomic radius and nearest-neighbor distance remains the same.
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Which class of materials best prevent cracks from growing? Unable To Determine Polymers Ceramics O Metals Composites All Are Equal
Polymers are the class of materials that best prevent cracks from growing due to their flexibility and ability to absorb stress.
This is because they have a high resistance to crack propagation due to their molecular structure, which allows them to absorb and distribute stress more effectively than other materials such as ceramics, metals, and composites. Therefore, polymers are often used in applications where crack resistance is critical. Polymers are large molecules made up of repeating units of smaller molecules called monomers. These molecules are linked together by covalent bonds to form a long chain-like structure. The term "polymer" comes from the Greek words "poly," meaning many, and "meros," meaning parts or units. Examples of polymers include plastics, rubber, and proteins.
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A robot with artificial intelligence would best be suited for
An industrial marine turbine, GE LM2500 operates on a simple Brayton cycle, its compressor has the capacity to increase inlet pressure 10 times. What is the outlet temperature of the compressor, if the air enters the cycle at 60°F and the maximum temperature capacity in the cycle is 1540°F. Consider a hypothetical ideal turbine and variable specific heats with temperature.
The temperature at the compressor outlet in the given simple Brayton cycle is 934°F (approximately).Explanation:Given data:Inlet air temperature, T1 = 60°FPressure ratio, rp = P2 / P1 = 10Maximum temperature in the cycle, T3 = 1540°FGas turbine cycle - Brayton cycleIn the simple Brayton cycle, the air undergoes four processes. The processes are a) isentropic compression b) constant pressure heat addition c) isentropic expansion and d) constant pressure heat rejection.
The cycle on a T-s diagram and a P-v diagram are as shown below:The air enters the compressor at point 1. The compressor compresses the air adiabatically until the pressure is increased by a ratio of rp. The temperature at the exit of the compressor is given by, T2 = T1 rpγ-1where γ = specific heat ratio at a constant pressure and constant volume.Since the temperature at the inlet is 60°F, the temperature at the exit of the compressor is:T2 = T1 rpγ-1= (60 + 460) (10)0.4= 932°F ≈ 934°FThe air then enters the combustion chamber and the fuel is added and ignited. The air undergoes a constant pressure heat addition process from state 2 to state 3.
The maximum temperature in the cycle is the maximum temperature in this process, which is 1540°F.The air then enters the turbine where it expands adiabatically to the initial pressure. The temperature at the exit of the turbine is given by,T4 = T3 (rpγ-1)(γ-1)/γwhere γ = specific heat ratio at a constant pressure and constant volume.The heat rejection process takes place at constant pressure and is an isobaric process. The temperature at the exit of the cycle is the temperature at state 1. Therefore, the temperature at the outlet of the compressor in the given simple Brayton cycle is 934°F (approximately).
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Stack memory is implemented as a stack data structure. Provide the sequence of push and pop operations on stack memory when the collatz method (provided below) is called with n = 5. Note that an enqueue and dequeue is associated with a method call. For example, the first and last operations in the sequence should be push(collatz(4)) and pop(collatz(4)) respectively. public void collatz(int n) { if (n == 1) return; else if (n % 2 == 0) collatz(n / 2); else collatz(3*n + 1); }
Answer:
attached below is the solution
Explanation:
hello attached below is the sequence of push and pop operations on stack memory
For The collatz method below
public void collatz(int n) {
if (n == 1) return;
else if (n % 2 == 0)
collatz(n / 2);
else collatz(3*n + 1); }
When measuring Brake Drum, the Brake Micrometer is set to a Base Drum Diameter of 10 inches plus four notches
Answer:
Hope this helps ;) don't forget to rate this answer !
Explanation:
The base drum diameter is the diameter of the brake drum when it is brand new and has not been worn down by use. When using a brake micrometer to measure a brake drum, the instrument is set to a base drum diameter of 10 inches plus four notches. This means that the micrometer has been calibrated to measure brake drums with a diameter of 10 inches plus an additional four notches. The notches are used to account for wear on the brake drum and allow for accurate measurements even if the drum has been worn down from use.
The mechanical properties of a metal may be improved by incorporating fine particles of its oxide. Given that the moduli of elasticity of the metal and oxide are, respectively, 57 GPa and 390 GPa, what is the (a) upper-bound, and (b) lower-bound modulus of elasticity values (in GPa) for a composite that has a composition of 33 vol% of oxide particles.
Answer:
a) the modulus of elasticity upper-bound is 166.89 GPa
b) the modulus of elasticity lower-bound is 79.36 Gpa
Explanation:
For a two-phase composite, modulus of elasticity upper-bound expression is as follows;
Ec(U) = EmVm + EpVp
where Em is the modulus of elasticity of matrix, Ep is the modulus of elasticity of patriciate phase, Ec is the modulus of elasticity of composite, Vm is the volume fraction of matrix and Vp is the volume fraction of composite.
Also for a two-phase composite, modulus of elasticity lower-bound expression is as follows;
Ec(L) = (EmEp) / ( VmEp + VpEm)
a)
Now lets consider the expression of rule of mixtures for upper-bound and calculate the modulus of elasticity upper-bound.
Ec(U) = EmVm + EpVp --------- equ 1
Vm + Vp = 1
given that Vp = 33 vol% = 0.33, we substitute
Vm + 0.33 = 1
Vm = 0.67
so from our equation 1
we substitute our given data; Em = 57 Gpa, Ep = 390 Gpa, Vm = 0.67, Vp = 0.33
Ec(U) = EmVm + EpVp
Ec(U) = ( 57 × 0.67) + ( 390 × 0.33)
Ec(U) = 38.19 + 128.7
Ec(U) = 166.89 GPa
Therefore the modulus of elasticity upper-bound is 166.89 GPa
b)
Now lets consider the expression of rule of mixtures for lower-bound and calculate the modulus of elasticity upper-bound.
Ec(L) = (EmEp) / ( VmEp + VpEm)
we substitute our values
Ec(L) = (57 × 390) / ( (0.67 × 390) + (0.33 × 57)
Ec(L) = 22230 / ( 261.3 + 18.81)
Ec(L) = 22230 / 280.11
Ec(L) = 79.36 Gpa
Therefore the modulus of elasticity lower-bound is 79.36 Gpa
1. An ideal gas undergoes a process according to PV" = k. Initially, the temperature and volume are 2 bar and 0.1m?, respectively. After the process, the volume doubles. Determine the work done during the process. Take n = 1.4
Which is a better hydraulic cross section for an open channel: one with a small or a large hydraulic radius?
the devices that secure a rim-type sink or lavatory into the countertop are called ____.
The devices that secure a rim-type sink or lavatory into the countertop are called sink clips.
What are sink clips?They are typically made of metal or plastic and are attached to the underside of the countertop. The sink clips then fit over the rim of the sink and are secured in place with screws.
Sink clips are an important part of sink installation. They help to ensure that the sink is properly supported and that it will not leak. These are some of the different types of sink clips:
L-shaped sink clips: These are the most common type of sink clip. They are shaped like an L and have two holes for screws.U-shaped sink clips: These sink clips are shaped like a U and have four holes for screws.Z-shaped sink clips: These sink clips are shaped like a Z and have six holes for screws.Find out more on sink clips here: https://brainly.com/question/22596973
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When installing a post-tension system,the installer should have a minimum of
Installing a post-tension system requires specialized knowledge and skills, and the qualifications and experience required will depend on the specific job and location.
In general, the installer should have a minimum of the following:
Relevant training: The installer should have received formal training in post-tensioning systems, including both classroom and hands-on training. This will ensure that they have a solid understanding of the principles and techniques involved in post-tensioning, as well as the ability to safely and effectively install the system.Experience: The installer should have several years of experience working with post-tensioning systems, preferably in a variety of settings and applications. This will help them to identify potential issues or challenges and develop effective solutions to ensure the integrity of the post-tensioned structure.Certifications and licenses: Depending on the location and the specific job requirements, the installer may need to hold certain certifications or licenses to perform the work legally and safely. For example, they may need to hold a certification from a recognized industry organization or be licensed by a state or local regulatory agency.Familiarity with industry standards: The installer should be familiar with the relevant industry standards for post-tensioning systems, including those set forth by the Post-Tensioning Institute (PTI) and other relevant organizations. This will ensure that they are adhering to best practices and producing a high-quality finished product.Overall, installing a post-tensioning system is a complex process that requires specialized knowledge, skills, and experience. It is important to work with a qualified and experienced installer to ensure that the post-tensioned structure is safe, durable, and meets all relevant industry standards and regulations.
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You installed a new 40 gallon water heater with a 54,000 BTUh burner. The underground water temperature coming into the house is 55F
How long will it take to heat the water in the tank to a normal setting of 120F.
Please show setup and explanation.
Answer:
For most uses you'll want your water heated to 120 F(49 C) In this example you'd need a demand water heater that produces a temperature rise and it will take about 2 hours
Discuss in detail the manners of interaction with opposite gender
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:
The Contractor has subcontracted the cement finishing and shortly after troweling a slab, it begins to rain. Whose responsibility is it to see that the slab is protected? a) The General Contractor. b) The Subcontractor. c) The Resident Project Representative. d) The Architect/Engineer. e) The Inspector.
The responsibility for protecting the slab during rain would typically fall on the subcontractor who performed the cement finishing work. The correct option is b.
However, the exact division of responsibilities would depend on the terms outlined in the contract between the general contractor and the subcontractor.
It is also possible that other parties, such as the Resident Project Representative or Architect/Engineer, may have some level of responsibility depending on their roles and obligations as outlined in the project documents.
Ultimately, the party responsible for protecting the slab during rain should be clearly defined in the project contract.
Thus, the correct option is b.
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consider an undirected graph with n>=2 vertices. what are the minimum and maximum number of different layers that the graph could have, respectively? a. 2 and n b. 4 and n-1 c. 1 and n-1 d. 2 and n-1
The minimum number of different layers that an undirected graph with n>=2 vertices could have is 1, and the maximum number of different layers is n-1. Therefore, the correct answer is option c. 1 and n-1.
In a graph, a layer refers to a distinct set of vertices that are connected only to vertices in the previous layer. The minimum number of layers in a graph is 1, which occurs when all vertices are directly connected to each other. To visualize this, imagine a complete graph with n vertices, where each vertex is connected to every other vertex. In this case, there is only one layer because all vertices are interconnected, and there are no distinct subsets of vertices. On the other hand, the maximum number of layers in a graph is n-1, which occurs when each vertex is connected to only one other vertex in a linear chain-like structure. In this scenario, there is a distinct layer for each vertex, except for the last vertex which does not have any outgoing connections. Therefore, the correct answer is option c. 1 and n-1, representing the minimum and maximum number of different layers that the graph could have, respectively.
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how to calculate flow rate through a pipe when the velocity is not known
Calculating the flow rate through a pipe can be done using the pipe's cross-sectional area and the pressure difference between the two ends of the pipe. The first step is to determine the pipe's cross-sectional area, which can be calculated using the pipe's diameter.
Once the area is determined, the pressure difference between the two ends of the pipe is measured using a pressure gauge. By using Bernoulli's equation, the flow rate can then be calculated. Bernoulli's equation states that the pressure difference is equal to the fluid's density times the velocity squared times one-half of the cross-sectional area. If the velocity is not known, it can be calculated using the mass flow rate and the density of the fluid. Therefore, by knowing the cross-sectional area, pressure difference, density, and mass flow rate, the flow rate through a pipe can be calculated.
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why is tubing sometimes coiled when installed in a car or vechile
Answer:
Coiled tubing is often used to carry out operations similar to wire lining.
We create, maintain, and live by often __________ that we hope will keep the family (and each of its members) functional.
We create, maintain, and live by often unspoken rules and routines that we hope will keep the family (and each of its members) functional.
What are unspoken rules in families?
There are unspoken guidelines that family members follow in order to maintain order in families dealing with substance use disorders. These guidelines are: Don't trust, don't feel, and don't talk. To keep things as they are, those who are a part of the system abide by these norms.
Why is it important to have family rules?
Children learn what acts are acceptable and unacceptable from their family's rules. As kids get older, they will encounter situations where they must abide by rules. Children who learn to follow rules at home will likely learn to do so elsewhere.
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a list is sorted in ascending order if it is empty or each item except the last one is less than or equal to its successor. write a function issorted() that expects a list as an argument and returns true if the list is sorted in ascending order, or returns false otherwise. (40 pts)
The program to illustrate the list is given below:
def isSorted(lyst):
# Check for a list of length 1
if(len(lyst)>=0 and len(lyst)<2):
return True
else:
for i in range(len(lyst)-1):
if(lyst[i]>lyst[i+1]):
return False
# Make this statement in line with the for loop
return True
def main():
lyst=[]
print(isSorted(lyst))
lyst=[1]
print(isSorted(lyst))
lyst=list(range(10))
print(isSorted(lyst))
lyst[9]=3
print(isSorted(lyst))
main()
What is a program?A program is a specific set of ordered operations that a computer can perform. The program in the modern computer described by John von Neumann in 1945 contains a one-at-a-time sequence of instructions that the computer follows.
Typically, the program is saved in a location accessible to the computer. A computer program is a set of instructions written in a programming language that a computer can execute.
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What is the difference between din valves and yoke valves is that ?
Answer:
The yoke is a clamp-type mounting, which is placed over the tank valve and then tightened into place. The DIN is a threaded valve, wherein you screw the regulator into the tank valve
_____________ architecture utilizes processes of designing, construction, operation, maintenance, and removal that have been carefully planned to have the smallest footprint. a. Conventional c. Environmental b. Standard d. Green
Green architecture utilizes processes of designing, construction, operation, maintenance, and removal that have been carefully planned to have the smallest footprint.
How does green architecture minimize environmental impact?Green architecture, also known as sustainable or environmentally-friendly architecture, focuses on minimizing the environmental impact of buildings throughout their lifecycle. It encompasses various principles and practices that promote energy efficiency, resource conservation, and environmental sustainability.
In the design phase, green architecture considers factors such as site selection, orientation, and building materials to maximize energy efficiency and minimize waste. Construction processes prioritize sustainable materials and techniques, reducing the use of non-renewable resources and minimizing pollution. Once operational, green buildings incorporate energy-efficient systems, renewable energy sources, and water conservation measures to minimize resource consumption and reduce carbon emissions.
Green architecture aims to create buildings that harmonize with the environment, promote human health and well-being, and contribute to a sustainable future. By implementing eco-conscious design and construction practices, green architecture plays a crucial role in mitigating the impact of human activities on the planet.
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2. What are the separate parts that make up an oxyacetylene flame?
Answer:
Explanation:
Primary combustion where carbon monoxide (CO) and free hydrogen (H) are produced, and the secondary combustion where water vapor (H2O) and carbon dioxide (CO2) are formed.
If the water surface elevation in reservoir B is 110 m, what must be the water surface elevation in reservoir A if a flow of 0.03 m3 /s is to occur in the cast iron pipe
The water surface elevation must be 110.2631 meters for a flow of 0.03m³ to occur in the cast pipe
For cast iron the chart has 0.0012 from Moody's chart
0.016 for cast iron
\(hf = \frac{flQ^{2}}{12.1d5}\)
\(h1 = h2+\frac{Q^{2} }{12.1} [\frac{0.0012*100}{(12/1000)^5} +\frac{0.0016*150}{(15/100)^5} ]\)
\(h1 = 110m+\frac{0.03^2}{12.1} [\f\frac{0.12}{0.00032} +\frac{0.24}{0.000759} ]\\\\h1 = 110+0.0000744[375+3162.06]\\\\= 110 + 0.2631m\\\\= 110.2631m\)
Therefore the water surface elevation must be 110.2631 meters for a flow of 0.03m³ to occur in the cast pipe
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If the goal is to power three-phase AC motors, what kind of power distribution panel would you want to use?
There are different kinds of Ac motors. If the goal is to power three-phase AC motor, the three-phase motor can be run from a single-phase power source.
It is possible to run a 3 phase motor on single phase power?The act of running a three phase motor on single phase power is very possible. The thing one has to do is to connect or wire the single phase power to the input side of the variable frequency drive that one has and then connect or wire the three phase power of one's motor to the output part of the drive.
Conclusively, A three phase system is known to be able to send a lot of power when viewed with the single phase system. The three circuit conductors is known to have three alternating currents
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Explain any three ways research can facilitate the work of building technicians
According to the research, research can facilitate the work of building technicians in the conception, materials to use and planning of the project.
What are building technicians?They are experts in construction projects, supporting the design of plans, estimating costs, planning work methods, etc.
Research can facilitate the work of building technicians in the following ways:
Conception, design and planning of the project.Selection of materials for floor, wall and ceiling systems.Carry out the programming of works, budgets and analysis of unit prices.Therefore, we can conclude that according to the research, research can facilitate the work of building technicians in the conception, materials to use and planning of the project.
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For LTI systems the system is BIBO stable if the inverse system is absolutely summable: Σ1h1n1
For a linear time-invariant (LTI) system, BIBO stability refers to bounded-input bounded-output stability. It means that if the input to the system is bounded, the output will also be bounded.
In the context of BIBO stability, the inverse system is not directly related to the condition you mentioned involving absolute summability. The condition you provided, Σ1h1n1, seems to be related to the impulse response of the system.In order to determine the BIBO stability of an LTI system, you need to examine the properties of its impulse response. The impulse response, denoted by h(n), describes the output of the system when an impulse is applied as the input.For a system to be BIBO stable, the impulse response h(n) must be absolutely summable, meaning that the sum of the absolute values of its elements is finite. Mathematically, it can be expressed as:Σ|hn| < ∞If the impulse response satisfies this condition, then the LTI system is BIBO stable.Please note that the inverse system and its absolute summability are not directly involved in determining BIBO stability. BIBO stability is solely based on the properties of the system's impulse response.
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The has to produce goods 2 quarters periods. The company has a regular time capacity and forecast demand that is stated state in table below per month. Overtime capacity is 50% of regular time capacity multiply by 1.5 per month. Overtime cost is regular time cost multiply by 1.5, backorder cost is 50% of the regular cost, inventory-holding cost is R5 per unit, and beginning inventory is zero.
The given problem is concerned with a company that has to produce goods for two quarters' period. The company has a regular time capacity and forecast demand, which is given in the table below per month.
We are required to determine the overtime capacity, overtime cost, backorder cost, inventory-holding cost, and the beginning inventory. Given data: Demand | Regular time capacity50 | 50Overtime capacity | 50% of regular time capacity × 1.5= 50% of 50 × 1.5= 25 × 1.5= 37.5 units per month Overtime cost.
Therefore, the overtime cost and backorder cost are zero. Inventory-holding cost= 50 units × R5 per unit= R250Therefore, the company needs to work at 100% of the regular time capacity and 74% of the overtime capacity to meet the forecast demand of 50 units per month for two quarters.
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