What is meant by Smith Watson topper parameter and what are the
benefits of it ?

Answers

Answer 1

Smith Watson topper parameter is used to measure the performance of the educational institutions. The main answer to what is meant by the Smith Watson topper parameter is that it is used to measure the efficiency of the educational institutions based on their academic performance.

The top-performing students in the school, college, or university are recognized as the toppers and their scores are used as the benchmark for measuring the performance of the institution. This parameter is calculated by taking the average score of the top 5% students in the institution.Explanation:Smith Watson topper parameter is useful for the following reasons:It helps in determining the overall performance of the institution in terms of academic excellence.The parameter encourages students to work harder and achieve better results.The institutions can use this parameter as a benchmark to evaluate their performance with other institutions in the region or country.The topper parameter helps in identifying the strengths and weaknesses of the institution in terms of academic performance.

The institutions can use this parameter to improve their academic programs and infrastructure to enhance the quality of education.The topper parameter is an effective way to motivate students and faculty members to achieve higher standards in academic performance. It helps in promoting healthy competition among students and institutions.

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Related Questions

Estimate the theoretical fracture strength of a brittle material if it is known that fracture occurs by the propagation of an elliptically shaped surface crack of length 0.25 mm (0.01 in) and tip radius of curvature of 1.2 x 10-3 mm (4.7 x 10-5 in.) when a stress of 1200 MPa (174,000 psi) is applied.

Answers

Answer:

the theoretical fracture strength of the brittle material is 5.02 × 10⁶  psi

Explanation:

Given the data in the question;

Length of surface crack α = 0.25 mm

tip radius ρ\(_t\) = 1.2 × 10⁻³ mm

applied stress σ₀ = 1200 MPa

the theoretical fracture strength of a brittle material = ?

To determine the the theoretical fracture strength or maximum stress at crack tip, we use the following formula;

σ\(_m\) = 2σ₀\((\) α / ρ\(_t\) \()^{\frac{1}{2}\)

where α is the Length of surface crack,

ρ\(_t\) is the tip radius,

and σ₀ is the applied stress.

so we substitute

σ\(_m\) = (2 × 1200 MPa)\((\) 0.25 mm / ( 1.2 × 10⁻³ mm ) \()^{\frac{1}{2}\)

σ\(_m\) = 2400 MPa × \((\) 208.3333 \()^{\frac{1}{2}\)

σ\(_m\) = 2400 MPa × 14.43375

σ\(_m\) = 34641 MPa

σ\(_m\) = ( 34641 × 145 )psi

σ\(_m\) = 5.02 × 10⁶  psi

Therefore, the theoretical fracture strength of the brittle material is 5.02 × 10⁶  psi

How many coordinates are required for a 3-dimensional force?

Answers

Hope this helps YEET
How many coordinates are required for a 3-dimensional force?

_____________ processes are actions that create physical solutions to problems.

a
Production Processes
b
Medical Processes
c
Agricultural Processes
d
Communication Process

Answers

Answer:

yes answer d is correct

Communication Process are actions that create physical solutions to problems. The correct option is d.

What is Communication Process?

Human existence and organisational survival both depend on effective communication. It is a process of generating and disseminating thoughts, facts, opinions, and sentiments from one place, individual, or group to another. The Management function of Directing depends on effective communication.

The sending party, message encoding, channel selection, message receipt by the recipient, and message decoding are all aspects of the communication process.

Feedback is when the recipient communicates something back to the original sender. These procedures are actions that result in tangible fixes for issues.

Thus, the correct option is d.

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if the endpoint is not on a defined plane you need to create a reference plane. T/F

Answers

True. If the endpoint is not on a defined plane, you need to create a reference plane.

In computer-aided design (CAD) software, reference planes are used to provide a stable and predictable reference point for creating and modifying geometry. Reference planes are typically created by defining a set of points or lines that define the plane, which can then be used as a guide for creating new geometry or modifying existing geometry.

If an endpoint is not on a defined plane, it can be difficult to accurately create or modify geometry. In this case, it may be necessary to create a reference plane to provide a stable and predictable reference point. This can be done by selecting the necessary points or lines and defining them as a reference plane.

By using reference planes, CAD designers can create and modify geometry with greater accuracy and precision. This is especially important when working with complex geometries or when creating parts that need to fit together with other parts. Overall, the use of reference planes is a fundamental aspect of CAD design that helps ensure accuracy and consistency in the design process.

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a. Determine the value of c b. What proportion of actual tracking weights exceeds the target weight? c. What proportion of actual tracking weights are within .25 g of the target weight?

Answers

a. The value of "c" is not specified in your question. Please provide more information or context to determine the value of "c."

To determine the proportion of actual tracking weights that exceed the target weight, you need to compare the actual weights with the target weight and calculate the ratio of weights that are higher than the target.To determine the proportion of actual tracking weights within 0.25 g of the target weight, you need to compare the actual weights with the target weight and calculate the ratio of weights that fall within the range of ±0.25 g from the target weight.

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What is the correct order of steps in the scientific method

Answers

Answer:

1) Make a hypothesis, about what u think will happen if you do something

2) conduct the experiment

3) analyze and see what happens

4) do it several more times and  compare ur answers

5) make a conclusion from ur answers

6) celebrate bc u done

Write a recursive, boolean-valued method, containsVowel, that accepts a string and returns true if the string contains a vowel. A string contains a vowel if: The first character of the string is a vowel, or The rest of the string (beyond the first character) contains a vowel

Answers

The provided recursive method "containsVowel" determines if a string contains a vowel by checking the first character and recursively checking the remaining substring. The "isVowel" helper method identifies if a character is a vowel.

Here is the recursive, boolean-valued method that accepts a string and returns true if the string contains a vowel. A string contains a vowel if: The first character of the string is a vowel, or The rest of the string (beyond the first character) contains a vowel.

```
public static boolean containsVowel(String str) {
   if (str.length() == 0) {  // empty string doesn't have vowel
       return false;
   } else if (isVowel(str.charAt(0))) {  // check if first character is vowel
       return true;
   } else {  // first character is not vowel, check remaining string
       return containsVowel(str.substring(1));
   }
}

public static boolean isVowel(char c) {
   return "AEIOUaeiou".indexOf(c) != -1;
}
```

The contains Vowel method is a recursive method that returns a boolean value. It takes a string as input. Here is how it works:

If the string is empty, return false, because an empty string doesn't have a vowel.If the first character of the string is a vowel, return true, because the string contains a vowel.If the first character of the string is not a vowel, call the containsVowel method recursively with the remaining substring (i.e., the string without the first character), and return the result. This is because the rest of the string (beyond the first character) may contain a vowel.The isVowel method is a helper method that checks whether a given character is a vowel. It returns true if the character is a vowel (i.e., 'a', 'e', 'i', 'o', or 'u', regardless of case).

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A farmers drainage ditch has a width of 2 m and a depth of 50 cm. It is lined with concrete with a roughness of 0.011 and slopes at 0.0009. Calculate the ditch's discharge rate.

Answers

Answer:

Using the Manning's Equation, the discharge rate can be calculated as follows:

Q = (1.49/n) x A x R^(2/3) x S^(1/2)

Where:

Q = discharge rate (m^3/sec)

n = Manning's roughness coefficient (0.011)

A = cross sectional area of the ditch (2m x 0.5m = 1 m^2)

R = hydraulic radius (half the width of the ditch, or 1 m)

S = slope of the ditch (0.0009)

Q = (1.49/0.011) x 1m^2 x 1m^(2/3) x 0.0009^(1/2)

Q = 13,636.36 m^3/sec

Which component in the alternator controls the strength of the magnetic field of the rotating magnet?
A- voltage regulator
B-diode assembly
C-rectifier assembly
D-a cooling fan

Answers

Answer:

A Voltage regulator

That force which is generated to cause current to flow in an electrical circuit. It is also referred to as electromotive force or electrical potential. Voltage is measured in volts. VOLTAGE REGULATOR - A device that controls the strength of a magnetic field produced by a generator or alternator

Assume that a pond has a single outlet in the form of a small stream. The flow rate of that stream 2.3 m3/s. If the flow rate does not change, how many gallons of water will be lost in a week?

1b) Calculate the density of a 347.5 g sample of copper if it has a volume of 41.8 cm3.

Answers

1) The number of gallons of water lost in a week would be approximately (2.3 m³/s * 604,800 seconds) * (1000 liters/m³) * (0.264172 gallons/liter).

2) The density of the copper sample is approximately 8.32 g/cm³ (347.5 g / 41.8 cm³).

To calculate the number of gallons of water lost in a week, we first need to determine the volume of water that flows through the stream in one week.

Given:

Flow rate of the stream = 2.3 m³/s

To convert the flow rate to the volume of water in one week, we need to convert the time unit from seconds to weeks. There are 60 seconds in a minute, 60 minutes in an hour, 24 hours in a day, and 7 days in a week.

1 week = 7 days * 24 hours * 60 minutes * 60 seconds = 604,800 seconds

Volume of water in one week = Flow rate * Time

Volume of water in one week = 2.3 m³/s * 604,800 seconds

Now, let's convert the volume from cubic meters (m³) to gallons.

1 cubic meter = 1000 liters

1 liter = 0.264172 gallons

Volume in gallons = (Volume in cubic meters) * (1000 liters/m³) * (0.264172 gallons/liter)

Finally, we can calculate the number of gallons of water lost in a week.

Volume in gallons = (2.3 m³/s * 604,800 seconds) * (1000 liters/m³) * (0.264172 gallons/liter)

Please note that the flow rate might change due to various factors, but for the given scenario and assumptions, this calculation provides an estimate.

1b) To calculate the density of the copper sample, we'll use the formula:

Density = Mass / Volume

Given:

Mass of the copper sample = 347.5 g

Volume of the copper sample = 41.8 cm³

Density = 347.5 g / 41.8 cm³

=8.32 g/cm³

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Please help ASAP!! I’m taking the test right now!!!

Ronny wants to produce a metal sheet through which a shaft can pass. Which process will he use?

A) grinding
B) reaming
C) turning
D) milling
E) chipping

Answers

Answer:

B) reaming | yes it is B) reaming



Ronny wants to produce a metal sheet through which a shaft can pass. Which process will he use?


B) reaming

if there was not engineering job, what would our society look like​

Answers

Answer:

Without engineers, there would be no heat, air conditioning, photocopier machines, conference calls, printers, e-mail, or World Wide Web. ... Of course, you can't pick up your dry cleaning, since engineers developed dry cleaning machines.

Explanation:

Suppose that a rocket is launched straight up from the surface of the earth with initial velocity Vo = √√2gR, where R is the radius of the earth. Neglect air resistance. (a) Find an expression for the velocity V in terms of the distance x from the surface of the earth. (b) Find the time required for the rocket to go 240,000 miles (the approximate distance from the earth to the moon). Assume that R = 4000 miles.​

Answers

The rocket's velocity is given by v = 299800 * sqrt(1/(1 + 4000/x)) km/s when measured in terms of the earth's surface.

What is the rocket's speed?

A rocket must travel at least 7.9 kilometers per second (4.9 miles per second) in order to reach space if it is launched from the surface of the Earth. The orbital velocity, which is 7.9 km/s and more than 20 times the speed of sound, is measured in this manner.

Energy input minus energy output.

The rocket's launch energy is:

Ei equals (1/2) of kinetic energy plus potential energy.

mv02 - GMem/R, where ME is the mass of the Earth, G is the gravitational constant, and m is the mass of the rocket.

At a distance x from the earth's surface, the rocket's total energy is:

Ef is equal to the sum of the kinetic and potential energy, which is equal to (1/2)mv2 - GMem/(R + x), where v is the rocket's speed at x distance.

Energy is conserved since there is no air resistance, so:

Ei = Ef\s(1/2)

(1/2)mv02 - GMem/R = mv02 - GMem/(R + x)

By condensing and figuring out v, we arrive at:

sqrt(2GM/R) * sqrt(1/(R/x + 1)) gives v.

Simplifying and substituting R = 4,000 miles results in:

V is equal to sqrt(8.98 x 1010 m3/s2). * sqrt(1/(1 + 4000/x)) m/s\s= 299800

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Can some help me with this !!! Is 26 points!!

Can some help me with this !!! Is 26 points!!

Answers

Third one
15,000,000 ohms because M=10^6

If a blender uses 110 volts and 20 amperes how many watts is it using?

If a blender uses 110 volts and 20 amperes how many watts is it using?

Answers

Answer:

2200 watts

Explanation:

# of Watts = Volts × Amps

# of Watts = 110 × 20# of Watts = 2200 watts

Have a lovely rest of your day/night, and good luck with your assignments! ♡

CASE STUDY
"Comparing Social Security Benefits"
Background
When Sheryl graduated from Northeastern University in 2000 and went to work for BAE Systems,
she did not pay much attention to the monthly payroll deduction for social security. It was a "necessary evil"
that may be helpful in retirement years. However, this was so far in the future that she fully expected this
government retirement benefit system to be broke and gone by the time she could reap any benefits from
her years of contributions.
This year, Sheryl and Brad, another engineer at BAE, got married. Recently, they both received
notices from the Social Security Administration of their potential retirement amounts, were they to retire and
start social security benefits at preset ages. Since both of them hope to retire a few years early, they
decided to pay closer attention to the predicted amount of retirement benefits and to do some analysis on
the numbers.
Information
They found that their projected benefits are substantially the same, which makes sense since their
salaries are very close to each other. Although the numbers were slightly different in their two mailings, the
similar messages to Brad and Sheryl can be summarized as follows:
If you stop working and start receiving benefits . . .
At age 62, your payment would be about $1,400 per month
At you full retirement age (67 years), your payment would be about $2,000 per month
At age 70, your payment would be about $2,480 per month
These numbers represent a reduction of 30% for early retirement (age 62) and an increase of 24%
for delayed retirement (age 70).
This couple also learned that it is possible for a spouse to take spousal benefits at the time that one
of them is at full retirement age. In other words, if Sheryl starts her $2000 benefit at age 67, Brad can
receive a benefit equal to 50% of hers. Then, when Brad reaches 70 years of age, he can discontinue spousal benefits and start his own. In the meantime, his benefits will have increased by 24%. Of course, this strategy could be switched with Brad taking his benefits and Sheryl receiving spousal benefits until age 70.
All these options led them to define four alternative plans.
A. Each takes early benefits at age 62 with a 30% reduction to $1400 per month.
B. Each takes full benefits at full retirement age of 67 and receives $2000 per month.
C. Each delays benefits until age 70 with a 24% increase to $2480 per month.
D. One person takes full benefits of $2000 per month at age 67, and the other person
receives spousal benefits ($1000 per month at age 67) and switches to delayed
benefits of $2480 at age 70.
They realize, of course, that the numbers will change over time, based on their respective salaries
and number of years of contribution to the social security system by them and by their employers.
Case Study Exercises
Brad and Sheryl are the same age. Brad determined that most of their investments make an average
of 6% per year. With this as the interest rate, the analysis for the four alternatives is possible. Sheryl and
Brad plan to answer the following questions, but don’t have time this week. Can you please help them? (Do
the analysis for one person at a time, not the couple, and stop at the age of 85.)
1. How much in total (without the time value of money considered) will each plan A through D
pay through age 85?
2. What is the future worth at 6% per year of each plan at age 85?
3. Economically, what is the best combination of plans for Brad and Sheryl, assuming they both
live to be 85 years old?
4. Develop at least one additional question that you think Sheryl and Brad may have. Answer
the question.

Answers

1. Total Social Security benefits without the time value of money considered at 85 years of age:Plan A: Early Retirement at 62Brad will receive $168,000 ($1,400/month * 12 months/year * 10 years)Sheryl will receive $168,000 ($1,400/month * 12 months/year * 10 years)Total $336,000

Plan B: Full Retirement at 67Brad will receive $216,000 ($2,000/month * 12 months/year * 9 years)Sheryl will receive $216,000 ($2,000/month * 12 months/year * 9 years)Total $432,000Plan C: Late Retirement at 70Brad will receive $297,600 ($2,480/month * 12 months/year * 5 years)Sheryl will receive $297,600 ($2,480/month * 12 months/year * 5 years)Total $595,200Plan D: Combined StrategyBrad will receive $216,000 ($2,000/month * 12 months/year * 9 years)Sheryl will receive $117,600 ($1,000/month * 12 months/year * 9 years) plusBrad will receive $357,840 ($2,480/month * 12 months/year * 8 years)Total $691,4402. Future worth at 6% per year of each plan at age 85:Plan A: $336,000Plan B: $432,000Plan C: $595,200Plan D: $691,4403

. Economically, the best combination of plans for Brad and Sheryl, assuming they both live to be 85 years old is Plan D (Combined Strategy) as it provides the highest total benefit of $691,440.4. Develop at least one additional question that you think Sheryl and Brad may have. Answer the question.The couple may want to know how Social Security benefits will be taxed and if they should delay withdrawing them to avoid or minimize taxes on their benefits. The taxation of Social Security benefits is dependent on the couple’s income. If the total income (which includes 50% of Social Security benefits) is more than $32,000 for couples filing jointly.

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Alguien sabe cúal es la mayor medida de neumatico que cabe en una Honda CB1 11O?
Does anyone know what is the largest tire size that will fit on a Honda CB1 11O?

Answers

According to the manufacturer's specifications, the largest tire size that will fit on a Honda CB1 110 is 80/90-17 for the front tire and 90/90-17 for the rear tire. It is important to follow the manufacturer's recommendations for tire size to ensure proper fit and safety while riding.

find the minimum coefficient of friction μμmu needed to prevent the spherical shell from slipping as it rolls down the slope

Answers

The minimum coefficient of friction required to prevent slipping is sin(38.0°) which is 0.615.

What is the minimum coefficient of friction required to prevent slipping?

To get minimum coefficient of friction (μ) required to prevent slipping, we will equate the gravitational force component along the slope to the frictional force.

The gravitational force component along the slope can be calculated as: Fg = m * g * sin(θ).

The frictional force can be calculated as: Ff = μ * N,

Setting Fg = Ff, we have:

m * g * sin(θ) = μ * N

m * g * sin(θ) = μ * m * g

sin(θ) = μ

So, the minimum coefficient of friction needed to prevent slipping is equal to the sine of the angle of the slope which is sin(38.0°).

Full question:

A hollow, spherical shell with mass 2.00kg rolls without slipping down a slope angled at 38.0?. Find the minimum coefficient of friction needed to prevent slipping.

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If it takes a planet 0.8 years to orbit the sun how long in years will it take the planet to go all the way around our sky once

Answers

Explanation:

about 185/200 millions of years

It will take the planet 1.36 × 10⁻⁵ Light-year to go all the way around our sky.

Kepler's third law of planetary motion posits that the square of the planet's period of revolution around the sun varies directly proportional to the cube length of the semi-major axis of the elliptical orbit.

Mathematically:

\(\mathbf{T \ \alpha \ a^3}\)

where;

T = 0.8 years

Making (a) the subject, we have:

\(\mathbf{a = T^ {^{ \dfrac{2}{3}}}}\)

\(\mathbf{a = 0.8^ {^{ \dfrac{2}{3}}}}\)

\(\mathbf{a = \sqrt[3]{0.8} ^2}\)

a = 0.86 Au (astronomical unit)

a ≅ 1.36 × 10⁻⁵ Ly (Light-year)

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According to Ref. 213/91, fire extinguishing equipment can be frozen True or False

Answers

False. Fire extinguishing equipment cannot be frozen according to Ref. 213/91.

According to Ref. 213/91, fire extinguishing equipment cannot be frozen. Fire extinguishers are essential safety devices designed to combat fires effectively. They contain pressurized agents that are specifically formulated to extinguish different types of fires. Freezing temperatures can significantly impair the functionality of fire extinguishers and render them ineffective in emergency situations.

When fire extinguishing equipment freezes, several issues can arise. First, the contents of the extinguisher may expand as they freeze, potentially leading to ruptures or leaks in the container. This can cause the extinguisher to malfunction or become hazardous when used. Second, freezing temperatures can affect the performance of the extinguishing agent itself. Certain agents, such as water-based solutions, can solidify or lose their effectiveness when exposed to extreme cold.

It is crucial to store fire extinguishers in suitable environments that are above freezing temperatures. This ensures that the equipment remains in optimal condition and is ready for immediate use during emergencies. Regular inspections and maintenance are also essential to identify any signs of damage or deterioration that may compromise the functionality of fire extinguishers.

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The pressure drives the piston downward on the power stroke, causing the crankshaft to turn. *

true
False

Answers

Answer:

the answer is true

Explanation:

The answer is true ⬆️

a commercial refrigerator with r-134a as the working fluid is used to keep the refrigerated space at -35 c by rejecting waste heat to cooling water that enters the condenser at 18 c at a rate of 0.25 kg/s and leaves at 26 c. the refrigerant enters the condenser at 1.2 mpa and 50 c and leaves at the same pressure subcooled by 6 c. if the compressor consumes 3.3 kw of power , determine (a) the mass flow rate of the refrigerant, b) the refrigerant load, c) the cop, and d) the minimum power input to the compressor for the same refrigeration load.

Answers

At 1.2mpa pressure and 50c

What is pressure?
By pressing a knife against some fruit, one can see a straightforward illustration of pressure. The surface won't be cut if you press the flat part of the knife against the fruit. The force is dispersed over a wide area (low pressure).

a)Mass flow rate of the refrigerant
Therefore h1= condenser inlet enthalpy =278.28KJ/Kg
saturation temperature at 1.2mpa is 46.29C
Therefore the temperature of the condenser

T2 = 46.29C - 5
T2 = 41.29C

Now,
d)power consumed by compressor W = 3.3KW
Q4 = QL + w = Q4
QL = mR(h1-h2)-W
= 0.0498 x (278.26 - 110.19)-3.3
=5.074KW
Hence refrigerator load is 5.74Kg

(COP)r = 238/53
(Cop) = 4.490

Therefore the above values are the (a) mass flow rate of the refrigerant, b) the refrigerant load, c) the cop, and d) the minimum power input to the compressor for the same refrigeration load.

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define a class named history with the following public interface: class history { public: history(int nrows, int ncols); bool record(int r, int c); void display() const; }; the constructor initializes a history object that corresponds to an arena with nrows rows and ncols columns. you may assume (i.e., you do not have to check) that it will be called with a first argument that does not exceed maxrows and a second that does not exceed maxcols, and that neither argument will be less than 1. the record function is to be called to notify the history object that a poisoned carrot has been dropped at a grid point that does not currently have a poisoned carrot. the function returns false if row r, column c is not within the bounds implied by the history constructor; otherwise, it returns true after recording what it needs to. this function expects its parameters to be expressed in the same coordinate system as an arena (e.g., row 1, column 1 is the upper-left-most position). the display function clears the screen and displays the history grid as the posted programs do. this function does clear the screen, display the history grid, and write an empty line after the history grid; it does not print the press enter to continue. after the display (that should be done somewhere else in the program). (note to xcode users: it is acceptable that clearscreen() just writes a newline instead of clearing the screen if you launch your program from within xcode, since the xcode output window doesn't have the capability of being cleared.)

Answers

The logical point where different software entities communicate is known as a public interface in computer science.

What is meant by public interface?The logical point where different software entities communicate is known as a public interface in computer science. A single computer, a network, or a variety of other topologies may be used for the entities to interact with one another.A class's public properties and methods (variables or fields you may read the values of or assign to) form its public interface (functions you can call). Therefore, the task is to develop something that is not a subclass of LinkedList.For instance, protected methods could be accessed by creating a subclass.Due to the fact that an interface is a contract meant to be utilized by other classes, interface methods are implicitly public in C#. Moreover, when you implement these methods, you have to declare them to be public rather than static.

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a 105 g ball is tied to a string. it is pulled to an angle of 7.4 ∘ and released to swing as a pendulum. a student with a stopwatch finds that 29 oscillations take 15 s. How long is the string?

Answers

To find the length of the string, we can use the formula for the period of a pendulum T = 2π√(L/g) So the length of the string is 1.03 meters.


We are given the number of oscillations (29) and the time it takes (15 s), so we can find the period by dividing the time by the number of oscillations: T = 15 s / 29 = 0.517 s Now we can use this value to solve for the length of the string:
0.517 s = 2π√(L/9.81 m/s^2) Squaring both sides and solving for L, we get: L = (0.517 s / (2π))^2 * 9.81 m/s^2 = 1.03 m.


Finding the length of the string of a pendulum with a 105 g ball tied to it, pulled to an angle of 7.4 ∘ and released to swing, while a student with a stopwatch finds that 29 oscillations take 15 s, is that we can use the formula for the period of a pendulum to solve for the length of the string.

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assuming that the longest stage of 5-stage pipeline requires 0.6ns, and pipeline register delay is 0.1ns, calculate the clock cycle time of 5-stage pipeline and 10-stage pipeline.

Answers

The 10-stage pipeline's clock cycles would take 1.5ns to finish on average, which is 1.5ns longer than the 5-stage pipeline's.

To calculate the clock cycle time of a 5-stage pipeline and a 10-stage pipeline, we need to consider the time required for each stage and the pipeline register delay.

For a 5-stage pipeline with a longest stage of 0.6ns and a pipeline register delay of 0.1ns, the total clock cycle time would be:

Clock cycle time = longest stage time + pipeline register delay = 0.6ns + 0.1ns = 0.7ns

This means that each clock cycle in the pipeline would take 0.7ns to complete.

For a 10-stage pipeline with the same longest stage time and pipeline register delay, the total clock cycle time would be:

Clock cycle time = longest stage time + (pipeline register delay x (number of pipeline stages - 1)) = 0.6ns + (0.1ns x 9) = 1.5ns

This means that each clock cycle in the 10-stage pipeline would take 1.5ns to complete, which is longer than the 5-stage pipeline due to the additional pipeline stages.

It is worth noting that while longer pipelines can potentially increase performance by allowing for higher clock rates, they can also increase the risk of pipeline hazards and decrease overall efficiency due to increased latency and complexity.

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what is diameter of bolt M27

Answers

The diameter, bolt M27 is known to be 3.0mm in pitch and 41mm across flats.

What is the diameter of a bolt?

This is a term that is often seen as the Major diameter. The diameter of a bolt is known to be a kind of a Shank diameter which is said to be often shown or expressed in the unit called millimeters in regards to Metric bolts.

This is so due to the  fact that it is almost the same as the Major or Thread diameter.

Therefore, The diameter, bolt M27 is known to be 3.0mm in pitch and 41mm across flats.

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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.​

Answers

Answer:

See the image for solution

Draw the circuit diagram for 3 cells connected in series, two resistors in series and a switch. If V

thiết kế ic 555 và code để ic hoạt động

Answers

Answer:

here you go.

screenshot 2 should give you some basic idea

thit k ic 555 v code ic hot ng
thit k ic 555 v code ic hot ng

Which design principle indicates disparity between adjacent parts of a design to give it a striking overall look?



____________ is disparity between adjacent parts of a design to give it a striking overall look. ​

Answers

Blank is the disparity between adjacent parts of a design to give it a striking overall look. ​

What is disparity?

A disparity is a marked and usually significant difference or dissimilarity.

disparity is a form of inequality because disparity contains the Latin dis, which means apart. The term is often used to describe any social or economic situation that is considered unfair. These include racial inequalities in hiring, health disparities between rich and poor, and income disparities between men and women. The adjectives differ (emphasized on the first syllable) are often used to emphasize sharp differences.

Blank is the disparity between adjacent parts of a design to give it a striking overall look. ​

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A 12 in diameter circular plate is placed over a fixed bottom plate with a 0.1 in. gap between the two plates filled with glycerin as shown. Determine the torque required to rotate the circular plate slowly at 1 rpm. Assume that the velocity distribution in the gap is linear and that the shear stress on the edge of the rotating plate in negligible. ( Assume the viscosity of glycerin is 3.13×10−2lb⋅s/ft2)

Answers

To determine the torque required to rotate the circular plate, we need to calculate the viscous drag force that acts on the rotating plate due to the glycerin. In this case the required torque is 93.42 lb⋅in.

This force can be calculated using the formula:

F = 6πμrv

where μ is the viscosity of glycerin (3.13 × 10^-2 lb⋅s/ft^2), r is the radius of the circular plate (6 in.), and v is the velocity of the glycerin at the edge of the rotating plate.

Since the velocity distribution in the gap is linear, we can calculate the velocity of the glycerin at the edge of the rotating plate as half the velocity at the center of the rotating plate. The velocity at the center can be calculated from the rotational speed (1 rpm) and the radius of the plate:

v = ωr = 2π(1 rpm) * 6 in. = 37.7 in/s

So, the velocity of the glycerin at the edge of the rotating plate is:

v_edge = v/2 = 37.7 in/s / 2 = 18.85 in/s

Finally, substituting the values into the formula, we get:

F = 6πμrv = 6π * 3.13 × 10^-2 lb⋅s/ft^2 * 6 in. * 18.85 in/s = 15.57 lb

The torque required to rotate the circular plate can be calculated as the force multiplied by the radius:

T = Fr = 15.57 lb * 6 in. = 93.42 lb⋅in

So, the torque required to rotate the circular plate at 1 rpm is 93.42 lb⋅in.

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