a. The vehicle's initial velocity, v0 = 60 miles/hour = 88 feet/second. After three seconds of reaction time, the vehicle will have covered a distance of 3v0 = 3(88) = 264 feet before initiating a physical response to the situation. Therefore, the distance traveled by the vehicle before the driver initiates a physical response to the situation is 264 feet.
The deceleration rate of the truck is given as a = -27 ft/s^2. The distance covered by the vehicle during deceleration, x, is given byx = (v^2 - v0^2)/(2a)where v is the final speed and v0 is the initial speed.The final speed of the truck, v, is zero (since it comes to a stop at the stop sign).
Therefore, x = (0 - 88^2)/(2(-27)) = 139.26 feet.Since this is less than the distance from the milepost to the stop sign (442 feet), the driver of the truck will not be able to stop at the stop sign. Therefore, the answer is NO.c. This is not considered a safe driving since the driver of the truck will not be able to stop at the stop sign.
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Which internal device has the largest nonvolatile storage capacity? A. Hard drive. B. RAM C. ROM D. CMOS
Hard drives have the biggest inert storage capacity, as mentioned in the question.
RAM's meaning?ram, or random-access
Random-access memory is what it called, but what does it actually mean? In essence, the RAM in the computer serves as short attention span, storing information when the CPU demands it.
How is stored data in RAM?Each memory cell that composes random access memories has the capacity to store a single information a zero or a one. Simple terms, a grid of perpendicular bit lines or address lines connects the cells together. Each unit can be addressed uniquely by defining an addressing lines and a bit line.
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Which ratio shows the relationship between the sizes of the model and the actual car
Answer:
The scale factor is used to make models of real-life objects. For example, a toy car is modeled to look just like a real car but at a smaller size. The ratio of the toy car to the real car might be 1:24 1: 24 . Which means that for every one unit of length on the toy car, the real thing is 24 times that size.
Explanation:
complete the addrepair method. /** attempts to schedule a repair by a given mechanic in a given bay as described in part (a). * precondition: 0
The addRepair method adds the repair to the schedule and returns true if both the mechanic and the bay are available.
How does addRepair work?The addRepair method returns false if either the bay or the mechanic are unavailable. The addRepair method adds the repair to the schedule and returns true if both the mechanic and the bay are available.
** Attempts to schedule a specific mechanic to perform a repair in a particular bay, as outlined in part (a).
* Prerequisite: */ public boolean addRepair(int m, int b) /* to be implemented in part (a) */ (Please help with this) /** Returns an ArrayList containing the mechanic identifiers of all available mechanics, * as described in part (b). 0 = m numberOfMechanics and b >= 0
*/
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2. 6 A project in slate will have an average bench height of 27 ft. An emulsion with a relative bulk strength of 119, specific gravity 0. 90, will be the explosive used on the project. Dynamite sticks 10 in. Long having a specific gravity of 1. 3 and a diameter exactly equal to the D. Of the emulsion will be used as a detonator. The contractor's equipment can easily drill 4-in. -diameter holes. It is assumed that single rows of no more than 10 holes will be detonated instantaneously. The excavation site has structures within 1,600 TL The local regulatory agency specifies a scaled distance factor of no, less than 55. Develop a blast design for the project. Round design, dimensions to the nearest foot. 12. 7 the blasting in problem 12. 6 must be conducted so as to limit overbreakage. Develop a presplitting blast plan
The spacing is given as 22.5
How to solve for the spacingBurden distance = [2 x 0.9 / 2.65 + 1.5] x 4
= Burden distance is given as 9 ft
The stiffness ratio is 27 / 9
= 3
T depth = 6 ft
J depth = 3 ft
Spacing S = 27 + 2 x9 / 3
= 15 ft
Actual spacing =
15 ± 1.15
= 13.85 , 16.25
c olumn length = 27 + 3 - 6
= 24
explosive per blast hole
= 24 x 4.9
= 117 . 6
(2 x 1/4)² / 28
= 0.180
27 x 0.18 + 3 x 0.18
= 5.4
Spacing = 10 x 2.25
= 22.5
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explain why it is not advisable to wear a ring at work shop
Answer:
Metal conducts heat so it could severely burn your finger.
Rings can create multiple hazards while working with chemicals.
Rings/Jewlery can be a "hiding place" for bacteria.
Amongst many other reasons as to why it's not advisable to wear a ring(s) at a workshop/workplace.
Find the shortest arithmetic code for message abbabbabbb. Obtain probability of the occurrence of each symbol from the message sequence.
The arithmetic code for the message sequence 'abbabbabbb' is:
0.0000 0.0001 0.0000 0.0000 0.0001 0.0000 0.0001 0.0001 0.0001
The length of the encoded message is 34 bits.
The arithmetic code is an algorithm that encodes data by making use of probabilities of symbols or sequences. It is used for entropy coding in data compression. A shorter arithmetic code is desirable since it compresses the data more efficiently. The message is 'abbabbabbb'.Let's find the probability of each symbol in the message sequence as follows; Probability of a = 3/10Probability of b = 7/10Therefore, the probability of occurrence of each symbol in the message sequence is;
P(a) = 3/10P(b) = 7/10
Let's compute the shortest arithmetic code for the message. The first step is to calculate the cumulative probability of each symbol: Cumulative Probability of a = 3/10Cumulative Probability of b = 10/10The cumulative probability of the last symbol in the sequence must be 1.0.
After computing the cumulative probability of each symbol, the next step is to compute the range of each symbol. The range is calculated by taking the difference between the cumulative probabilities of the symbol and its previous symbol. Let's compute the range for each symbol in the message sequence. The range for a = 3/10 - 0 = 3/10Range for b = 7/10 - 3/10 = 4/10After computing the range for each symbol, the next step is to encode the message sequence using the calculated ranges and cumulative probabilities. The encoded message is obtained by concatenating the binary values obtained for each symbol in the message sequence. For instance, a can be encoded as 0.0000, while b can be encoded as 0.0001.
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Design and development of a metal oxide based electronic nose for spoilage classification of beef (2006)
The development of an electronic nose is an important part of modern research.
Metal oxide-based electronic noses are becoming increasingly popular in the food industry for detecting spoilage.
In this research, the design and development of a metal oxide-based electronic nose for spoilage classification of beef were carried out in 2006.
The objective of this research was to develop an electronic nose that can distinguish between fresh and spoiled beef.
The researchers used metal oxide sensors that can detect the odor produced by spoiled beef.
The electronic nose consists of an array of sensors and a pattern recognition system.
The pattern recognition system is responsible for analyzing the sensor data and identifying the odors that are produced by the spoiled beef.
The researchers carried out experiments to evaluate the performance of the electronic nose.
They found that the electronic nose was able to distinguish between fresh and spoiled beef with a high degree of accuracy.
The results of the study showed that the electronic nose can be used as an effective tool for the classification of beef spoilage.
The development of an electronic nose for the detection of spoilage in beef is an important step in the food industry.
It has the potential to improve food safety and quality, reduce food waste, and increase profitability.
In conclusion, the metal oxide-based electronic nose is a promising technology for the detection of spoilage in beef,
and further research is needed to explore its potential in other areas of food safety and quality.
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Please answer the question
In a gas absorption experiment a viscous fluid flows upward through a ... Set up a momentum balance over a shell of thickness Δrin the film.
What is gas absorption experiment ?The previous chapter provided derivations of the relationships for mass and momentum conservation—the equations of motion—in rectangular, cylindrical, and spherical coordinates.
All experimental evidence suggests that these are the most fundamental equations of fluid mechanics, and that they govern any situation involving the flow of a Newtonian fluid in principle.
Therefore, In a gas absorption experiment a viscous fluid flows upward through a ... Set up a momentum balance over a shell of thickness Δrin the film.
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A CUSTOMER BRINGS HER CAR INTO THE
SHOP WITH A COMPLAINT THAT BOTH
HEADLIGHTS ARE NOT WORKING.
TECHNICIAN A SAYS TO CHECK THE CONDITION OF THE BULBS FIRST. TECHNICIAN B CHECKS THE FUSE IN THE HEADLIGHT CIRCUIT & THEN TESTS THE OPERATION OF THE HEADLIGHT SWITCH WHO IS CORRECT AND WHY ?
HELP ME ASAP
a bc if the bulbs are in a bad conditio. than u know that u dont have to remove it but only repair it.
What does this sign mean??
Answer:
what sign?
Explanation:
Answer: dude put the sign up
Explanation:
Consider a simple ideal Rankine cycle and an ideal regenerative Rankine cycle with one open feedwater heater. The two cycles are very much alike, except the feedwater in the regenerative cycle is heated by extracting some steam just before it enters the turbine. Hence, the simple ideal Rankine cycle is more efficient than the ideal regenerative Rankine cycle. How would you compare the efficiencies of of these two cycles?
Answer:
They both have the same efficiency.
Explanation:
The simple ideal Rankine cycle and an ideal regenerative Rankine cycle with one open feedwater heater would both have the same efficiency because the extraction steam would just create a mini cycle that recirculates. The energy given to the feedwater heater is proportional to the added heat in the boiler to the feedwater in the simple cycle to raise its temperature to the same boiler inlet condition.
Therefore in comparison, the efficiency is the same for both.
determine if the airplane weight and balance is within limits. front seat occupants.............. 415 lb. rear seat occupants................ 110 lb. fuel, main tanks....................... 44 gal. fuel, aux. tanks........................ 19 gal. baggage..................................... 32 lb.
It should be noted that Weight within limits, CG out of limits
How to explain the weightWhen the weight of an aircraft is within the specified limits, but the CG (center of gravity) is out of limits, it can have significant implications on the aircraft's stability and control.
The CG location plays a crucial role in determining an aircraft's stability and handling characteristics. If the CG is too far forward, the aircraft may be difficult to rotate during takeoff, and it may be prone to nose-over on landing. On the other hand, if the CG is too far aft, the aircraft may be difficult to control in pitch and may be prone to stall or spin.
If the CG is out of limits, the aircraft's stability and control may be compromised, which could lead to an unsafe situation. Pilots should always ensure that the aircraft's weight and balance are within the specified limits before takeoff.
In such a situation, the aircraft may require corrective action to bring the CG back within the limits, such as moving weight forward or aft, depending on the aircraft's design and the location of the payload.
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Which statement best explains how Sarah Zielinski introduces and develops her points in the article about Henrietta Lacks?
Question:
Which statement best explains how Sarah Zielinski introduces and develops her points in the article about Henrietta Lacks?
Zielinski explains how her interest in the Henrietta Lacks story began then provides details about the first immortal human tissue sample and tells why it has been both important and controversial. Zielinski explains the need for using human tissue samples then introduces Rebecca Skloot who gives an account of her experiences of researching the origin of the HeLa cells. Zielinski explains how the first immortal human cells were found then provides Rebecca Skloot’s answers to questions about the importance of using human tissue samples, the Lacks family’s responses to learning of its link to the HeLa cells, and the issues arising from their discovery and use. Zielinski explains the importance of the first human tissue samples to life and their widespread use, the reason for the confusion about those samples as well as the ethical issues faced by the Lacks family after learning they had not shared in profits from the sale of the HeLa samples.Answer:
The correct answer is number 3
Explanation
The article devotes the first three sentences to describing how the Immortal cells came to be. In sentence 4, she makes reference to a book by Rebecca Skloot titled The Immortal Life of Henrietta Lacks. The book explains the history of Henrietta's cells and its impact on Henrietta's family as the medical world.
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what is projectile motion.????
Answer:
Projectile motion is a form of motion experienced by a launched object.
Answer:
Projectile motion is the motion of a body which experiences both vertical and horizontal motions ( trajection ) from point of flight up to the point of landing.
x cotx expansion using maclaurins theorem.
It is to be noted that it is impossible to find the Maclaurin Expansion for F(x) = cotx.
What is Maclaurin Expansion?The Maclaurin Expansion is a Taylor series that has been expanded around the reference point zero and has the formula f(x)=f(0)+f′. (0) 1! x+f″ (0) 2! x2+⋯+f[n](0)n!
What is the explanation for the above?
as indicated above, the Maclaurin infinite series expansion is given as:
F(x)=f(0)+f′. (0) 1! x+f″ (0) 2! x2+⋯+f[n](0)n!
If F(0) = Cot 0
F(0) = ∝ = 1/0
This is not definitive,
Hence, it is impossible to find the Maclaurin infinite series expansion for F(x) = cotx.
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What are some of the advantages of working in preconstruction?
Is this function correct for squaring an integer? int sqr(int b) { int t; t = a * a; return t; } -yes -no
No, the function is not correct for squaring an integer. There are two issues with this function:
1. The parameter is named `b`, but the variable being squared is named `a`. This suggests that the code has been copied and pasted from somewhere else without being properly modified.
2. The variable `a` is not defined in the function, so attempting to square it will result in a compilation error. Instead, the parameter `b` should be squared to produce the desired result.
A corrected version of the function would look like this:
```
int sqr(int b) {
int t;
t = b * b;
return t;
}
```
This function takes an integer input `b`, squares it by multiplying it by itself, and returns the result.
No, the function is not correct for squaring an integer.
There are two issues with the function int sqr(int b) { int t; t = a * a; return t; }:
1. The parameter passed to the function is named "b", but it is never used in the function. Instead, the variable "a" is used to perform the squaring operation, but it is not defined anywhere in the function, leading to a compilation error.
2. Even if "a" was defined properly, the squaring operation performed on it is incorrect. To square an integer, it should be multiplied by itself.
A corrected version of the function would look like this:
int sqr(int b) { int t; t = b * b; return t; }
This implementation correctly squares the value of 'b' and returns the result as an integer.
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A simple solar collector is built by placing a 5-cm- diameter clear plastic tube around a garden hose whose outer diameter is 1.6 cm. The hose is painted black to maximize solar absorption, and some plastic rings are used to keep the spacing between the hose and the clear plastic cover constant. During a clear day, the temperature of the hose is measured to be 65°C,
The energy absorbed from the solar collector is approximately 3.16 w/m
What is the Energy AbsorbedThe approximate solar energy absorbed by the collector can be calculated using the following equation:
Solar Energy Absorbed (W/m) = (Aperture Area x Solar Irradiance x Efficiency) / Hose Length
Aperture Area = π x (0.05 m)² = 0.0079 m2
Solar Irradiance = 1000 W/m²
Efficiency = (65°C - 25°C) / (100°C - 25°C) = 0.4
Hose Length = 1 m
Therefore, the approximate solar energy absorbed by the collector is:
Solar Energy Absorbed (W/m) = (0.0079 m² x 1000 W/m² x 0.4) / 1 m = 3.16 W/m
The energy absorbed is 3.16 watt per meter.
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complete question:
A simple solar collector is built by placing a 5-cm- diameter clear plastic tube around a garden hose whose outer diameter is 1.6 cm. The hose is painted black to maximize solar absorption, and some plastic rings are used to keep the spacing between the hose and the clear plastic cover constant. During a clear day, the temperature of the hose is measured to be 65°C, while the ambient temperature is 25°C. What is the approximate solar energy absorbed by the collector, in watts per meter of length of the hose?
6.A tape measure is used
A. in manufacturing industries
B. in construction industries
C. for precision measurement
D. A and B
The Rod ABCD is made of Aluminum for which E=70 GPa. Take P=90 kN. For the loading shown, determine the deformation at point B.
The deformation at the point of B is 1.09 mm
How to solve for the deformationDeformation refers to the change in shape or size of a material due to the application of external forces or stress. It is a common phenomenon in materials science and engineering, and it plays an important role in the behavior and performance of materials under various conditions.
E = 70 Gpa
P = 90 KN
For every section
A and B
125 - 90
= 35
For B and C
75 + 50 = 125
For C and D
50
we have
\(\frac{35*10^3*1.75}{800*10^6*70*10^9}\)
= \(\frac{61250}{800000000 * 5.6*10^1^9}\)
= 1.09 mm
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when you arrive at an intersection with a stop sign in your direction, if there is no marked stop line, you must
When arriving at an intersection with a stop sign in your direction, if there is no marked stop line, you must stop before entering the intersection.
You should come to a complete stop at the point nearest the intersecting roadway where you have a view of approaching traffic on the intersecting roadway before proceeding.
When proceeding, you should yield to any vehicles that are already in the intersection or that are approaching so closely that they may constitute an immediate hazard.
Additionally, you should use caution when proceeding and be aware of any potential hazards, such as pedestrians, cyclists, and vehicles on the intersecting roadway.
To summaries, when arriving at an intersection with a stop sign in your direction, if there is no marked stop line, you must come to a complete stop before entering the intersection. You should yield to any vehicles that are already in the intersection or that are approaching so closely that they may constitute an immediate hazard. Additionally, you should use caution when proceeding and be aware of any potential hazards.
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which type of building construction can include materials with no fire-resistance ratings in limited quantities?
The type of type of building construction can include materials with no fire-resistance ratings in limited quantities is type 2.
Although many buildings appear to be similar at first appearance, their cost and durability—particularly in an emergency—are affected by the underlying materials. Building codes categorize all structures into Types 1 through 5, and each Type discloses important details like fire-resistance.
Some contemporary structures are now stronger and less expensive to construct. Engineered wood and synthetic plastics, which burn readily, cause quick collapses and present significant risks for firefighters.
Type 1 constructions, which are the most fire-resistant buildings, are made of shielded steel and concrete because they can sustain high temperatures without collapsing. Type 5 constructions, on the other hand, are the least fire-resistant since they are built of flammable materials, are lightweight, and they burn out quickly. Type 2 constructions, modern structures with metal roofs and tilt-slab or reinforced masonry walls.
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Which statement best explains why pneumatic cylinders need to be smaller than hydraulic cylinders?
The pneumatic system only needs enough room to have an onloff switch installed in order to operate correctly.
The energy in pneumatic power systems is easily transmitted to gases, which absorb the energy of the system and lower its efficiency
The control of the hydraulic system is much more precise and therefore requires a larger cylinder.
The fluid in a hydraulic system has more mass and therefore needs more storage space.
Answer:
The energy in pneumatic power systems is easily transmitted to gases, which absorb the energy of the system and lower its efficiency.
Explanation:
I did it on edge and got it right.
Answer:
The energy in pneumatic power systems is easily transmitted to gases, which absorb the energy of the system and lower its efficiency
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A single-stage spiral wound membrane is used to remove CO2 from a natural gas stream. Feed is supplied at 20 MSCFD, 850 psig and contains 93% CH4 and 7% CO2. The retentate leaves at 835 psig with 2% CO2 and the permeate leaves at 10 psig with 36.6% CO2. The permeance of CO2 through the membrane is reported to be 5.5 x 10-2 ft3(STP)/(ft2·hr·psi). Assuming Patm = 15 psia, find the: a. Percent recovery of methane in the retentate stream [90.1%] b. Area of the membrane, ft2, assuming both a linear and log-mean driving force. How do these two approximations compare to the actual area of 33,295 ft2? [27,050 ft2 and 34,590 ft2] c. Permeance of CH4 ft3(STP)/(ft2·hr·psi) and the selectivity of the membrane, a12. [a12 = 19.3] Note: MSCFD = 106 ft3(STP)/day
In the given scenario, a single-stage spiral wound membrane is used to remove CO2 from a natural gas stream. The problem asks for the percent recovery of methane in the retentate stream, the area of the membrane using linear and log-mean driving force approximations, and the permeance of CH4 and the selectivity of the membrane.
To find the percent recovery of methane in the retentate stream, we need to calculate the difference in methane content between the feed and retentate streams. The methane recovery can be calculated using the formula:
Percent Recovery = ((Methane in Retentate - Methane in Permeate) / (Methane in Feed - Methane in Permeate)) * 100
= ((93% - 36.6%) / (93% - 2%)) * 100
= 90.1%
To calculate the area of the membrane, we can use both linear and log-mean driving force approximations. For the linear approximation, the area can be calculated using the formula:
Area = (Q / (Permeance × Driving Force))
where Q is the feed flow rate and the Driving Force is the pressure difference between the feed and permeate streams. Using the given values and converting MSCFD to ft3/day:
Area = (20 × 10^6 ft3/day) / ((5.5 × 10^-2) (850 - 10))
= 27,050 ft2 (approximately)
For the log-mean driving force approximation, the area can be calculated using the formula:
Area = (Q / (Permeance × Driving Force LMF))
where Driving Force LMF is the log-mean driving force, calculated as:
Driving Force LMF = ln((Pressure Ratio Permeate) / (Pressure Ratio Feed))
Using the given values:
Driving Force LMF = ln((835 + 15) / (850 + 15)) = 0.018
Area = (20 × 10^6 ft3/day) / ((5.5 × 10^-2) (0.018))
= 34,590 ft2 (approximately)
To find the permeance of CH4, we can use the same formula as for CO2 permeance, but with the respective methane values. The selectivity of the membrane (a12) is the ratio of the CO2 permeance to the CH4 permeance. Unfortunately, the given data does not provide the necessary information to calculate the permeance of CH4 or the selectivity of the membrane.
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what performance is required of a multiengine airplane with the critical engine inoperative, while carrying passengers for hire in ifr weather conditions?
The performance that is required of a multiengine airplane with the critical engine inoperative, while carrying passengers for hire in ifr weather conditions is at least 50 feet a minute when operating at the MEAs of the route to be flown or 5,000 feet MSL, whichever is higher
What is the multiengineRegulations for multi-engine airplanes with a disabled critical engine in IFR conditions while carrying paying passengers are dictated by aviation authorities.
Regulations may differ by country, so it is good to consult the appropriate authority for accurate information. However, common aviation practices dictate guidelines for multi-engine airplanes operating in these conditions.
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usgs stream-gauging stations record water depth, , and channel in order to calculate the discharge of the stream.
USGS stream-gauging stations record water depth and velocity and channel width in order to calculate the discharge of the stream.
Water discharge is used as a support for people's lives in the form of liquid substances. Water has the most important role in human needs. Water discharge is very closely related to time & volume. Water discharge is the velocity of the flow of liquid through the cross-sectional distance per unit time. Water discharge uses volume units per time or ml/second, liters/second, m³/second, liters/hour, m³/hour, and various other units. Discharge units are often used in monitoring the capacity (capacity) of water in rivers or dams so that the existing water can be controlled.
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Shear stress t produces a shear strain Yxy (be- tween lines in the x direction and lines in the y direction) of Yxy 1200 u (i.e., y = 0.0012 m). (a) Determine the horizon- tal displacement da of point A. (b) Determine the shear strain Yx'y between the lines in the x' direction and the y' direction, as shown on Fig. P2.7-12. y δ, τ A τ 120 mm T y' 150 mm
A) The horizontal displacement of point A is 0.144 mm. B) The shear strain Yx'y between the lines in the x' direction and the y' direction is 0.00096 m.
What is shear strain?Shear strain is a type of deformation caused by a force applied to an object. It occurs when two opposite parallel forces are applied in opposite directions, causing the object to elongate in one direction and compress in the other. Shear strain is different from tensile strain, which happens when a force is applied in one direction only.
(a) The horizontal displacement of point A due to the shear stress τ is given by the equation da = τYxy. Substituting the given values, we obtain da = τ(0.0012 m) = (120 N/mm2)(0.0012 m) = 0.144 mm.
(b) The shear strain Yx'y between the lines in the x' direction and the y' direction is given by the equation Yx'y = da/δ', where δ' is the distance between the lines in the x' direction. Substituting the given values, we obtain Yx'y = (0.144 mm)/(150 mm) = 0.00096 m.
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The maximum voltage in a cooling system should not exceed ______ volts.
Answer:2%
When the voltages between the three phases are not equal, the current increases dramatically in the motor winding's, and if allowed to continue, the motor will be damaged.
Explanation:
the control circuit must produce an output of 1 if at least two of the conditions 1,2 and 3 are true. design the simplest circuit that can be used for this purpose.
The simplest circuit that can be used for the control circuit must produce an output of 1 if at least two of the conditions 1,2 and 3 are true is given below.
What is control circuit?A special kind of circuit known as a control circuit is used to regulate the performance of a totally independent power circuit. Think about a water pump being driven by a 1,000 horsepower, large industrial motor. A high voltage electrical source with a 2,400 volt output is connected to the motor.
For the safety of the operator and the machinery, a control circuit is used to ensure that the motor is started and stopped safely.
The thermostat for a home's air conditioner is an illustration of a control circuit that is frequently used. The thermostat is a component of a low-voltage control circuit that manages a relay that actually activates and deactivates the power circuit to the air conditioner compressor.
See the given attachment below for the simplest circuit↓↓
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How much dry salt must be added in 150kg of aquous salt solution in order to increase the concentration from 15% to 40%
Answer:
about half a pound i think
Explanation: