The size of clipper blade that produces the shortest cut depends on the specific clipper model and the desired length of the cut. Generally, a blade size of #000 or #0000 produces the shortest cut, as these blades have a cut length of approximately 1/100th of an inch.
Some models of clippers may have smaller or larger blade sizes that produce even shorter or longer cuts.
It's important to note that the length of the cut can also be adjusted by changing the position of the blade on the clipper, as well as by using different guide combs. If you're looking for a very short cut, it's a good idea to experiment with different blade sizes and comb attachments to find the best option for your needs. Overall, the size of the clipper blade that produces the shortest cut will vary depending on a number of factors. However, by doing some research and testing different options, you can find the best blade size and cut length for your specific needs.
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What is the maximum number of points a player can score during a frame of snooker while curving around at a 45 degree angle going at a speed of 2 miles per hour with the wind speed of 2 mph on a rug coated snooker table?
In snooker, the maximum number of points that can be scored during a single frame is 147. This is achieved by potting all 15 red balls, each worth 1 point, and subsequently potting the colored balls in sequence: yellow (2 points), green (3 points), brown (4 points), blue (5 points), pink (6 points), and black (7 points). Each color is then returned to its original position and can be potted again for additional points.
The angle and wind speed mentioned in your question are not relevant to determining the maximum number of points in a snooker frame. The speed and direction of the balls are controlled by the player's shots, and the rug coating on the table doesn't affect the scoring.
So, regardless of the angle, wind speed, or table surface, the maximum number of points that can be scored in a frame of snooker is 147.
which action is an example of how engineering affects science.
A) Identifying ways to improve the design of an infrared camera.
B) Designing an infrared camera that can record animal behavior in darkness.
C) Using observations of predators to from a hypothesis about their behavior.
D) Testing the effect if infrared light on the behaviors of nighttime predators.
Answer:It was B
Explanation:i took it on apec
and got A wrong so it told it was B
The action that is an example of how engineering affects science is designing an infrared camera that can record animal behavior in darkness. The correct option is B.
What is engineering?Engineering is the process of using mathematical and scientific principles to solve issues in the real world and create novel products and processes for use in a variety of fields and applications.
Engineering is the use of science and math to address issues. Engineers analyze how things operate and use scientific discoveries in real-world settings.
Strong problem-solving skills are among the most important traits an engineer can have. A substantial portion of an engineer's duties involve analyzing a situation, spotting issues, and then coming up with solutions.
Designing an infrared camera that can capture animal behavior in the dark is an example of how engineering influences research.
Thus, the correct option is B.
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Five kg of nitrogen gas (N2) in a rigid, insulated container fitted with a paddle wheel is initially at 300 K, 150 kPa. The N2 gas receives work from the paddle wheel until the gas is at 500 K and 250 kPa. Assuming the ideal gas model with a constant specific heat (i.e., use a constant specific heat of N2 at 300K), neglect kinetic energy and potential energy effects
Required:
a. Draw a system schematic and set up states.
b. Determine the amount of work received from the paddle wheel (kJ).
c. Determine the amount of entropy generated (kJ/K).
Answer:
A) attached below
B) 743 KJ
C) 1.8983 KJ/K
Explanation:
A) Diagram of system schematic and set up states
attached below
B) Calculate the amount of work received from the paddle wheel
assuming ideal gas situation
v1 = v2 ( for a constant volume process )
work generated by paddle wheel = system internal energy
dw = mCv dT . where ; Cv = 0.743 KJ/kgk
= 5 * 0.743 * ( 500 - 300 )
= 3.715 * 200 = 743 KJ
C) calculate the amount of entropy generated ( KJ/K )
S2 - S1 = 1.8983 KJ/K
attached below is the detailed solution
how is an nmos and gate implemented? group of answer choices a single nmos transistor. 2 nmos transistors in series. 2 nmos transistors in parallel. the output of 2 nmos transistors in series connected to the input of a single nmos transistor. the output of 2 nmos transistors in parallel connected to the input of a single nmos transistor. the output of a single nmos transistor connected to the input of 2 nmos transistors in series. the output of a single nmos transistor connected to the input of 2 nmos transistors in parallel.
An nmos and gate can be implemented using 2 nmos transistors in series, or the output of 2 nmos transistors in parallel connected to the input of a single nmos transistor.
Implementing an nmos AND gate using two transistors in series or in parallelIn the first implementation, the two nmos transistors are connected in series, with the input signal connected to the gate of the first transistor and the output taken from the drain of the second transistor. When the input signal is high, the first transistor is turned on, allowing current to flow to the second transistor. If the second transistor is also turned on, the output will be low, otherwise, the output will be high.
In the second implementation, the two nmos transistors are connected in parallel, with their sources and gates connected together, and the output taken from the drains. When the input signal is high, both transistors are turned on, allowing current to flow to the output. If either of the transistors is turned off, the output will be low.
Both of these implementations use two nmos transistors, but they are connected differently to achieve the desired logic function. A single nmos transistor can be used to implement a NOT gate or an inverter, but it cannot implement an AND gate
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MARKING BRAINLIEST
What is a good prototype plan?
Answer:
The plan is to make your design on AutoCAD and then make technical drawings. Print those technical drawings out with a scale of 1:1 and use those to trace over wood or metal.
Explanation:
Answer:
Make your design, make technical drawings, 3D print or trace
Explanation:
All of the following statements are true with respect to engine mechanical testing except: Group of answer choices It helps to determine what major engine work is needed. It is an integral part of preventive maintenance. The tests start off broad and narrow down as each test is performed. Testing needs to be done before tune-up parts are replaced
It assists in determining what significant engine work is required. Preventive maintenance includes it as a crucial component. The tests are initially broad and get more specific as they are run.
We will introduce two basic engine mechanical tests that will be carried out with electronic instruments in this first of two articles on engine mechanical testing. With a scope and a high amp current probe, the relative compression test is carried out as the first test. The second test is the cranking vacuum test, which is carried out using a pressure transducer and a scope. We shall engine mechanical test with in-cylinder pressure transducer testing in the following article.
Let's examine the fundamental tests that have historically been used to assess the mechanical condition of engines to see how things have changed. For many years, mechanics have used vacuum gauges to measure the vacuum in the intake manifold and identify problems with engine sealing.
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Which items are NOT found on a
door?*
5 points
Cladding
Moulding
Weatherstrip
Check Strap
Striker
All of the above
None of the above
Answer:
None of the above cause thats what i put
Write the definition of a function named alternator that receives no parameters and returns 1 the first time it is invoked, returns O the next time it is invoked, then 1, 0 and so on, alternating between 1/0 on successive invocations.
The function keeps track of how many times it has been called using a static variable counter. When the method is initially invoked, counter does not yet exist, therefore we use hasattr to initialize it to 0.
How are parameters supplied to functions and how are functions declared?Parameters are transmitted by value, meaning that the parameter receives a copy of the argument's value rather than its address when a function is called. Any scalar values, structures, and unions supplied as arguments are subject to this rule. When a parameter is changed, the corresponding argument given by the function call is not changed.
def alternator():
if not hasattr(alternator, "counter"):
alternator.counter = 0
if alternator.counter % 2 == 0:
alternator.counter += 1
return 1
else:
alternator.counter += 1
return 0
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Where is the airhorn of a 2014 kenworth t700?
A sample of blue gray soilwas obtained from Paine Field in Everett, WA to determine its Atterberg Limits and classify itssoil type according to the Unified Soil Classification system.84% of the sample passed through the #200 sieve with 16% retained on the #4 sieve. For one of the PL determinations, the wet weight + dish = 11.53 grams and the dry weight + dish = 10.49 grams. The dish only weighed 4.15 grams. Compute the plastic limit. Three determinations of the liquid limit were made. For 17 blows, the water content was 49.8%; for 26 blows, the water content was 47.5%; and for 36 blows, the water content was 46.3%.
Required:
Evaluate the soil type, indicate the information on a plasticity chart,and give the Unified Soil Classification System (USCS) symboland the proper narrative description.
Solution :
1. PL \($= \frac{11.53 - 10.49}{10.49 - 4.5} \times 100$\)
= 17.36 %
2. Liquid limit at 25 number of blows,
\($LL = \frac{(26-25)\times 49.8 + (25 - 2.17) \times 47.5}{26-17}$\)
\($= 47.75 $\) %
Since 84 % of the passes the number 200 sieve the soil is immediately fine grained and MI, OI or CI because LL = 47.75 % > 35%
Therefore, the Plasticity index, PI \($=47.75 - 17.36 = 30.39$\) %
Equation of A-line \($= 0.73 \times [47.75 - 20]$\)
\($=20.25 $\) %
Thus the soil lies above the A-line, that is soil is medium compressible clay ---- CI
2.2.2 Make a list of the electronic components that could be used in making this product (energy saving switch).
The electronic components that could be used in making of energy saving switch are:
Transistors semiconductor devices CapacitorsCoils (inductors) Which electronic component is used as a switch?Transistors as well as other kinds of semiconductor devices are known to be tools or element that can be used in the making of switches. In its use or applications.
Note that the base or gate of a transistor, based on the kind of transistor that is known to be in use, and it is one that is often employed as a form of control element to be able to switch on as well as switch off the current that often exist between the emitter as well as the collector or the source and that of the drain.
Note also that the electronic components that are able to store energy in regards to electronic devices, are known to be capacitors and coils (inductors) and they often play a key function of temporarily saving energy. One key role of a capacitor is to save an electric charge.
Therefore, The electronic components that could be used in making of energy saving switch are:
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Determine whether each relation is an equivalence relation. Justify your answer. If the relation is an equivalence relation, then describe the partition defined by the equivalence classes. (a) The domain is a group of people. Person x is related to person y under relation P if x and y have a common parent (i.e., x and y have the same biological mother or the same biological father or both). You can assume that there is at least one pair in the group, x and y, such that xPy. (b) The domain is a group of people. Person x is related to person y under relation M if x and y have the same biological mother. You can assume that there is at least one pair in the group, x and y such that xMy. (d) The domain is the set of all integers. xEy if x + y is even. An integer z is even if z = 2 k for some integer k.
1. The relation is not an equivalence relation.
2. The relation is an equivalence relation.
3. The relation is an equivalence relation.
How to determine if it is an equivalence relation1. If person x and person y share the same biological mother or father, then x and y also share the same biological mother or father.
If person x and person y share the same same mother or father and if person y shares the same biological mother or father as person z, then it is not necessarily the case that person x shares the same biological mother or father as person z.
2. If person x and person y share the same biological mother, then so does person y.
If person x and person y have the same biological mother and if person y and person z share the same biological mother, then person x must share the same biological mother as person z.
As a result, the relationship P is one of equivalence. All offspring of a single mother are regarded as belonging to the same class.
3. The relation E is an equivalence relation for the set of all even numbers and the set of all odd numbers. there are two equivalence classes as a result.
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A cylindrical bar of metal having a diameter of 20.5 mm and a length of 201 mm is deformed elastically in tension with a force of 46300 N. Given that the elastic modulus and Poisson's ratio of the metal are 60.5 GPa and 0.33, respectively, determine the following: (a) The amount by which this specimen will elongate in the direction of the applied stress. (b) The change in diameter of the specimen. Indicate an increase in diameter with a positive number and a decrease with a negative number.
Answer:
a) The amount by which this specimen will elongate in the direction of the applied stress is 0.466 mm
b) The change in diameter of the specimen is - 0.015 mm
Explanation:
Given the data in the question;
(a) The amount by which this specimen will elongate in the direction of the applied stress.
First we find the area of the cross section of the specimen
A = \(\frac{\pi }{4}\) d²
our given diameter is 20.5 mm so we substitute
A = \(\frac{\pi }{4}\) ( 20.5 mm )²
A = 330.06 mm²
Next, we find the change in length of the specimen using young's modulus formula
E = σ/∈
E = P/A × L/ΔL
ΔL = PL/AE
P is force ( 46300 N), L is length ( 201 mm ), A is area ( 330.06 mm² ) and E is elastic modulus (60.5 GPa) = 60.5 × 10⁹ N/m² = 60500 N/mm²
so we substitute
ΔL = (46300 N × 201 mm) / ( 330.06 mm² × 60500 N/mm² )
ΔL = 0.466 mm
Therefore, The amount by which this specimen will elongate in the direction of the applied stress is 0.466 mm
(b) The change in diameter of the specimen. Indicate an increase in diameter with a positive number and a decrease with a negative number.
Using the following relation for Poisson ratio
μ = - Δd/d / ΔL/L
given that Poisson's ratio of the metal is 0.33
so we substitute
0.33 = - Δd/20.5 / 0.466/201
0.33 = - Δd201 / 20.5 × 0.466
0.33 = - Δd201 / 9.143
0.33 × 9.143 = - Δd201
3.01719 = -Δd201
Δd = 3.01719 / - 201
Δd = - 0.015 mm
Therefore, The change in diameter of the specimen is - 0.015 mm
describe the typical ways of communicating technical information (such as sketches, test and inspection reports, work planning documents), and the amount of detail that should be included
Answer:
The most common and well known of these documents are memos and emails, which are used in every type of business. In addition to this, technical communicators also create instructions, product guides and documentation, graphs, charts, images, videos, and other forms of content.
There are many ways to communicate
technical information,
1. Planning sheet- describe the process - this
shows steps on how to make your drill drift-
telling us how us how to make it.
2.Drawings- this tells you the dimensions, size
of component/workpiece
Inspection sheets- check the measurements
are within given tolerances, this shows us
you've made it within those tolerances.
Instructions/ images of how to make your.
what is the marking menu fusion360
The 'marking menu' opened up ways for me to access the most commonly used commands and tools with a flick of the wrist. What's more impressive is that its dependent on workspace, so you can use it in all parts of the design!
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Schoolbuses have flashing lights on them as a form of _____ prevention.
A) primary. B) secondary. C) tertiary. D) quaternary.
The correct answer is B) secondary.
School buses have flashing lights on them as a form of secondary prevention.
What is Secondary Prevention?
Secondary prevention is a type of prevention that is aimed at detecting the disease at an early stage so that prompt treatment and intervention may be provided to prevent the progression of the disease.
It is a crucial component of primary health care, and it aims to reduce the severity and duration of the disease.
Primary prevention is a type of prevention that aims to prevent the disease from occurring.
Tertiary prevention is a type of prevention that aims to prevent the recurrence of the disease.
Quaternary prevention is a type of prevention that aims to reduce the harm caused by the intervention, especially in the case of medical errors or interventions that may cause more harm than good.
The primary, tertiary, and quaternary prevention are not applicable in this case because school buses are not related to the medical field.
Therefore, school buses have flashing lights on them as a form of secondary prevention. It is aimed at preventing accidents by alerting other drivers of the presence of the school bus. It helps reduce the number of road accidents involving school buses and provides safety for the students and the driver.
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Steam enters the first-stage turbine shown in the figure at 40 bar and 400oC with a mass flow rate of 60,000 kg/hr. Steam exits the first-stage turbine at 20 bar and 400oC. The steam is then reheated at constant pressure to 500oC before entering the second-stage turbine. Steam leaves the second stage as saturated vapor at 0.6 bar. Assume steady state operation and ignore stray heat transfer and kinetic and potential energy effects. Determine the volumetric flow rate of the steam at the inlet to the first-stage turbine, in m3/min, the rate of heat transfer to the steam flowing through the reheater, in kW, and the total power produced by the two stages of the turbine, in kW.
Answer:
a) 62460 kg/hr
(b) 17,572.95 kW
(c) 3,814.57 kW
Explanation:
Draw the circuit diagram for 3 cells connected in series, two resistors in series and a switch.
If V = I x R, calculate l if one cell = 2V and the resistor = 4Ω.
Answer:
See the image for solution
in fort a shied pot is 50
How do i untange my headphone cords? If you give me a good answer i will mark u brainliest
Answer:
scissors best way 100%
Explanation:
design a one-input, one-output sequence detector, which produces an output 1 every time the sequence 1111 is detected, and an output 0 at all other times. the circuit is also required to recognize overlapping sequences, as can be seen in the output string z that results from the following input string x. use jk flip-flops. use the following input string as part of your simulation. input string x: 1101111111010 output string z: 0000001111000 the following format will be used for lab reports:
To design a one-input, one-output sequence detector for detecting the sequence "1111" using JK flip-flops, we can use the following state diagram:
Sequence Detector State DiagramIn this state diagram, S0, S1, S2, and S3 are the four possible states of the detector. The output of the detector is 1 when it reaches state S3 and remains in that state until the next clock pulse. The output is 0 for all other states.
The state transition table for the detector is:
Present State Input
S0 0 S0 0
S0 1 S1 0
S1 0 S0 0
S1 1 S2 0
S2 0 S0 0
S2 1 S3 0
S3 0 S0 1
S3 1 S1 0
To implement this state diagram using JK flip-flops, we can use the following circuit:Sequence Detector Circuit DiagramIn this circuit, J and K inputs of each flip-flop are set based on the state transition table. The Q output of each flip-flop is connected to the corresponding input of the next flip-flop. The output of the detector is taken from the Q output of the last flip-flop (Q3).To test the circuit, we can use the given input string x = 1101111111010 and verify that the output string z = 0000001111000 is produced. The simulation waveform of the circuit is shown below:
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You should always try to put out a fire if you see one, no matter how large it is.
Answer:
That's not true, if your house is burning down, leave. Let the firefighters do their jobs.
Explanation:
Tech A says that radial ply tires have much more flexible sidewalls than bias-ply tires because of their construction. Tech B says that bias-ply tires have a more durable construction than radial tires. Who is correct?
Answer:
Tech A and Tech B are correct
Explanation:
Tech A is correct because radial ply tires have more flexible sidewalls than radial tires due to the fact that radial tires make use of two or more layers of casing piles and are thus not much flexible.
Also, tech B is correct because bias-ply tires typically have more durable construction than radial tires
Before making a left or right turn, you should signal for at least
A soil sample, taken from a borrow pit has a specific gravity of soil solids of 2.66. The sample was taken to a materials laboratory and tested. The results of a standard Proctor test are tabulated below.
Weight of Soil (lb) Moisture Content (%)
3.20 12.8
3.78 13.9
4.40 15.0
4.10 15.7
3.70 16.6
3.30 18.1
The maximum dry density in lb/ft3 is most nearly:_______
Answer:
115 Ib/ft^3
Explanation:
To determine the maximum dry density in Ib/ft3 we have to calculate :
Bulk unit weight ( yb ) ; W / v
Dry unit weight ( yd. ) : yb / ( 1 + w )
For every set of data given
assuming v = 1/30 ft^3
calculating for the 3 data set ( maximum dry density )
weight of soil (W) = 4.40
moisture content (%) (w) = 15.0 = 0.15
Bulk unit weight (yb) = 4.40 / (1/30) = 132 Ib/ft^3
Dry unit weight ( yd. ) = 132 / ( 1 + 0.15 ) = 114.702 Ib/ft^3
therefore after calculations the maximum dry density in Ib/ft^3 ≈ 115 Ib/ft^3
Which of the following terms involves the study of all the systems, devices, knowledge, processes, organizations, items, and people involved in the operation and creation of practical artifacts?
Technology
Mathematics
Science
Engineering
Answer: Engineering
Explanation:
Engineering is a most integral aspect of human development since human settlement first began. It has propelled and will continue to propel our progress as a species in the way it knows how.
Engineering is the study of the science of all things that relate to the operation and creation of practical artifacts and the knowledge gained from this study is what is applied to human development and enables our progress in technology.
The answer is:
D) EngineeringDefine in detail Technology and Evolution in the context of your prior Knowledge?
The technological evolution entails the transformation of society through technological development.
What is Technology?Technology refers to a machinery and equipment used to apply scientific knowledge for practical purposes.
What is Evolution?Basically, an evolution means the process of growth and development of a subject, technology, situation, event etc
Hence, the technological evolution entails the transformation of society through technological development.
In conclusion, the the new discoveries as a result of technology evolution primarily impacted the society on a positive level.
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Complete the sentence to identify a useful advance in the culinary arts.
The Egyptians invented
, which they used to store
for many years.
Answer:
silos to store grains
Explanation:
I got it from PLATO... hope this helps...
A broad range of subjects are included in the culinary arts. Food science and nutrition, ingredient quality, seasonality, flavors and textures, presentation and plate layout, and more are some of these. There are numerous specialties, sub-niches, and job titles that fall within this broad category.
What are the characteristics of culinary arts?Additionally, to help students become more well-rounded cooks, a variety of cooking techniques, numerous recipes, new ingredients, and various flavor profiles are presented to them.
The term “culinary arts” is used to refer broadly to the processes involved in preparing, cooking, plating, presenting, and serving food. It relates to meals and the goods, not sweets or breads. That make up a meal, such as appetizers, side dishes, and main courses.
Therefore, Students who pursue a culinary education have the opportunity to study under several of the industry's best chefs.
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Can anyone help me answer this question?
Consider an experimental design with two parameters of interest identified. The first parameter h has a range of 0 to 10 with increments of 2, and the second parameter has a range of 5 to 30 with increments of 5. If each experiment is repeated 4 times, determine the total number of measurements required.
A total of 100 measurements are required to conduct this experiment
How to calculate the value?For the first parameter, h, the range is from 0 to 10 with increments of 2. This means that there are (10 - 0) / 2 = 5 different values for h that will be tested.
For the second parameter, the range is from 5 to 30 with increments of 5. This means that there are (30 - 5) / 5 = 5 different values for this parameter that will be tested.
To find the total number of measurements, we multiply the number of measurements for each parameter by the number of times the experiment is repeated.
So (5 measurements for h) x (5 measurements for the second parameter) x (4 repetitions)
= 25 × 4
= 100 measurements
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5-2: The excursion y of a wave as a function of position x and
time t is given by
y(x, t) = 4. 00e+00 mm sin(7. 08e+01 m
−1x + 3. 30e+02 s
−1
t). Find:
1. The velocity, including the sign, in m/ s;
2. The wavelength in m; and
3. The maximum speed in m/ s of any point of the string
Answer:
its D if you what me to explain how I got D let me know
Explanation: