Buckingham and Clifton say most organizations are built on two flawed assumptions, which are

Answers

Answer 1

According to Buckingham and Clifton, most business organizations are built on these two (2) flawed assumptions:

1. Everyone can learn almost everything.

2. People's best room for growth is in the areas of weakness.

Marcus W. Buckingham is an English author, business consultant and motivational speaker who was born on the 11th of January, 1966 in High Wycombe, Buckinghamshire, England.

Donald O. Clifton was an American author, educator, psychologist, business entrepreneur and researcher who was born on the 5th of February, 1924 in  Butte, Nebraska‎, United States of America.

While studying as a student in Cambridge, Marcus W. Buckingham was recruited by Prof. Donald O. Clifton as an assistant in a research (survey) that was aimed at helping business organizations identify talents in various individuals, so as to effectively match them with the right job positions or roles.

In the book titled "Now, Discover Your Strengths" which was co-authored by both Buckingham and Clifton, most business organizations were said to be typically built on these two (2) flawed assumptions:

Everyone can learn to be competent in almost anything.People's best (greatest) room for growth is in their areas of weakness.

However, the two (2) assumptions on which the world’s best managers operate include:

Each individual has an enduring and unique talent.People's best (greatest) room for growth is in their areas of strength.

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Related Questions

A set of water waves travels at 20.0 m/s , and 4.0 waves pass you in 2.0 s. What is the wavelength of the waves?2.5 m0.20 m5.0 m10 m

Answers

ANSWER:

10 m

STEP-BY-STEP EXPLANATION:

The wavelength is given by the following formula:

\(\begin{gathered} W=\frac{v}{f} \\ W\text{ is the wavelength} \\ v\text{ is the velocity} \\ f\text{ is the frequency} \end{gathered}\)

Frequency is the number of waves passing in 1 second. 4 waves passes in 2 sec, so 2 waves will pass in 1 sec. Therefore, frequency is 2 s^-1.

Replacing:

\(W=\frac{20}{2}=10\text{ m}\)

Therefore, wavelength is 10 meters

A 3.0 cm wire carrying a current of 10A is placed inside a solenoid perpendicular to its axis. The magnetic field inside the solenoid is given to be 0.27T . what is the magnetic force on the wire ?

Answers

Given:

• Length of wire = 3.0 cm

,

• Current = 10 A

,

• Magnetic field = 0.27 T

Let's find the magnetic force on the wire.

To find the magnetic force on the wire, apply the formula:

\(F=BILsin\theta\)

Where:

B is the magnetic field = 0.27 T

I is the current = 10 A

L is the length of wire in meters = 3.0 cm = 0.03 m

Since it is perpendicular, θ = 90 degrees.

F is the magnetic force.

Substitute the values into the formula and solve for F.

We have:

\(\begin{gathered} F=0.27*10*0.03sin90 \\ \\ F=0.27*10*0.03(1) \\ \\ F=0.081\text{ N} \\ \\ F=8.1\times10^{-2}N \end{gathered}\)

Therefore, the magnetic force on the wire is 8.1 x 10⁻² N.

ANSWER:

8.1 x 10⁻² N

hi guys i need truly help!

hi guys i need truly help!

Answers

Answer:

1) 327

2) 3

3) 109

------------

now I'm not 100% sure #4-6 are correct, but if 4 is right then 5 and 6 are, too.

4) 1074

5) 1074 + 109t

6) 2382

Explanation:

electric heater has a power of 50 watts calculate the time taken for the electric element to transfer 4750 joules of energy to the vegetable oil

Answers

Answer:

3000 seconds

Explanation:

A tourist being chased by an angry bear is running in a straight line toward his car at a speed of 3.60 m/s. The car is a distance d away. The bear is 39.3 m behind the tourist and running at 5.00 m/s. The tourist reaches the car safely. What is the maximum possible value for d

Answers

Answer:

101 meters

Explanation:

Distance traveled by the tourist:

d = 3.60 m/s × t

Distance traveled by the bear:

d + 39.3 m = 5.00 m/s × t

Substitute:

3.6 t + 39.3 = 5 t

39.3 = 1.4 t

t = 28.1

d = 101

What is the acceleration of a car at rest that speeds up to 75m/s over 25 seconds?
A. -3.0m/s/s
B. 75 m/s/s
C. 3.0 m/s/s
D. 25 m/s/s
E. Not enough data is given

Answers

It’s a because I just did it

A soccer ball takes 20 s to roll 10 m. What is the average speed of the soccer ball?

Answers

Answer:

0,5 m/s²

Explanation:

v = d /t

v = 10 / 20

v = 0,5 m/s²

The velocity of the ball is 0,5 m/s²

Hi! Let's see.

TOPIC: Uniform Rectilinear Motion.

Explanation:

Data:

Distance(d) = 10 mTime(t) = 20 sSpeed(v) = ?

==================================================================

Use speed formula in URM:

\(\boxed{\boxed{\bold{v=\frac{d}{t}}}}\)

Replace with the data:

\(\boxed{v=\frac{10m}{20s}}}}\)

It divides:

\(\boxed{\bold{v=0.5\frac{m}{s}}}\)

Answer: The average speed of the soccer ball is 0.5m/s. (meters per seconds)

Cordially Alejanndraax. Greetings!

Which law of thermodynamics does each of the following scenarios violate (if any)?

A machine that can create 1000J of heat from 100J of electricity
1.
The first law of thermodynamics
2.
The second law of thermodynamics
3.
The third law of thermodynamics
4.
It is allowed

Answers

The scenario described violates option 2. the second law of thermodynamics.

The second law of thermodynamics states that in any energy transfer or transformation, the total entropy of an isolated system always increases or remains constant, but it never decreases. Entropy can be thought of as a measure of the disorder or randomness in a system.

In the given scenario, the machine is claimed to create 1000J of heat energy from only 100J of electrical energy. Heat energy is a form of random molecular motion, and the conversion of electrical energy to heat involves an increase in entropy. According to the second law, energy transfers or transformations must always lead to an overall increase in entropy.

However, in this scenario, the machine appears to violate the second law by creating a significant amount of heat energy from a relatively small amount of electrical energy. This would imply a decrease in entropy, which contradicts the fundamental principle of the second law.

In reality, no machine can achieve 100% efficiency, meaning it cannot convert all the input energy into the desired output energy without any energy losses. Some energy will always be lost as waste heat due to inefficiencies in the conversion process. This waste heat contributes to the increase in entropy.

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What is the equivalent resistance of the circuit?

What is the equivalent resistance of the circuit?

Answers

Answer:

(B) 80 ohms

Explanation:

Since the circuit is a series connection, simply add the two resistances together to get 80 ohms.

A machine puts out 6,000 J of work. To produce that much work the machine
requires the user to put in 8,000 J of work. What is the efficiency of the machine,
written as a percentage?

Answers

Answer:

Efficiency of the machine = 75%

Explanation:

Given:

Input work = 8,000 J

Output work = 6,000 J

Find:

Efficiency of the machine

Computation:

Efficiency of the machine = [Output work / Input work]100

Efficiency of the machine = [6,000 / 8,000]100

Efficiency of the machine = 75%

The Earth wire only carries a current if there is a _____ in the
circuit. What one word completes the sentence?

Answers

Answer:

Fault

Explanation:

it only carries a current if there is a fault.


A car with an initial speed of 14.5 km/s accelerates at a uniform rate of 1.6 km/s for 9.0
s. Find the final speed of the car during this time.

Answers

here's the answers

this should help and can I be marked brainiest

a car is moving at 56 miles per hour the kinetic energy of that car is how much energy does that same car have when it moves at

Answers

Complete Question

A car is moving at 56 miles per hour. The kinetic energy of that car is 5 × 105 J. How much energy does the same car have when it moves at 90 miles per hour? Answer in units of J

Answer:

 \(K.E_2=640000J\)

Explanation:

From the question we are told that:

Initial Velocity \(v_1=56 mil/h=>25.0342m/s\)

 \(K.E_1=5*10^5J\)

Final Velocity \(V_2=90mil/h=>40.2336m/s\)

Generally the equation for  Kinetic Energy  is mathematically given by

 \(K.E=0.5mv^2\)

Therefore

 \(K.E_1=0.5mv_1^2\)  

 \(5*10^5J=m(25.0342)^2\)

 \(m=797.82kg\)

Therefore The Final K.E_2 is

 \(K.E_2=0.5mv_2^2\)

 \(K.E_2=0.5*(797.82kg)(40.2336m/s)^2\)

 \(K.E_2=640000J\)

URGENT HELP PLS
(a) Find the frequency ratio between the two frequencies f1 = 320 Hz and
½2 = 576 Hz.
S) If we go down from / by an interval of a fourth, find the frequency ratio filfi.
(c) Find the frequency of f3.

Answers

The frequency of f3 is approximately 716 Hz.

What is frequency?

The frequency of a repeated event is its number of instances per unit of time. Hertz (Hz), which stands for the number of cycles per second, is a popular unit of measurement.

a. Given two frequencies, f1 and f2, the frequency ratio is as follows:

frequency ratio= \(\frac{f2}{f1}\)

Inputting the values provided yields:

frequency ratio = \(\frac{576}{320Hz}\) =1.8.

As a result, the difference in frequency between f1 = 320 Hz and f2 = 576 Hz is 1.8.

b. Since there are 12 half-steps in an octave and a fourth is a distance of 5 half-steps, going down a fourth requires dividing the frequency by \(2^{(4/12)}\). Hence, once a fourth is subtracted, the frequency ratio between f and f1 is:

frequency ratio= \(\frac{f}{ (f1 /f2 ) }\)=  \(\frac{f}{ (f1 / 1.3348) }\)

By dividing the numerator and denominator by 1.3348, we may make this more straightforward:

frequency ratio= (f × 1.33348)/f1

As a result, (f × 1.3348) / f1 is the frequency ratio between f and f1 after descending a fourth.

c. (c) To find the frequency of f3, we need to know the interval between f1 and f3. Let's assume that f3 is a fifth above f2. The frequency ratio for a fifth is given by: \(2^{(7/12)}\) = 1.49831

Therefore, the frequency of f3 is:

f3 = f1 × (\(2^{(7/12)}\)) × (\(2^{(7/12)}\)) = 320 Hz × 1.49831 ×1.49831 = 716 Hz

Therefore, the frequency of f3 is approximately 716 Hz.

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Can someone explain what kinetic energy and potential magnetic energy mean?

Answers

Answer:

Kinetic energy is energy an object possesses due to its motion.

Kinetic energy equation: \(KE = \frac{1}{2} mv^{2}\)

The faster and heavier an object is, the higher the kinetic energy.

Potential magnetic energy is the energy of an object that is able to do work because of its position in a magnetic field.

If the cheetah is running at 22 m/s, how long would it take him to run 400 meters?.

Answers

Answer:

V = distance / time = S / t

t = S / V = 400 m / 22 m/s = 18.2 sec

PLEASE ANSWER FASG I WILL MARK BRAINELIST PLEASEEEEE
The number of protons in the nucleus of an atom determines the species of the atom, i.e., the element to which the atom belongs. An atom has the same number of protons and neutrons. But the electron number cannot be used instead because (5 points)
a. electrons are not within the nucleus
b. electrons are negatively charged
c. electrons can be removed from or added to an atom
d. electrons are lighter than protons

Answers

The electron number cannot be used instead because electrons can be removed from or added to an atom (option C)

Why the electron number cannot be used instead?

The element of an atom is determined by its proton count, while the electron count can exhibit variability. Take, for instance, a sodium atom, which encompasses 11 protons and 11 electrons. However, it has the capacity to relinquish one electron, transforming into a sodium ion housing only 10 electrons.

This occurs due to the relatively loose binding of electrons to the nucleus, enabling their removal through the influence of an electric field or alternative mechanisms.

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4. You currently have TWO 9 volt batteries connected to a 82 resistor. How
much current is flowing through the circuit? *
1.125 A
5 A
72 A
2.25 A
Back
Next
Never submit passwords through Gon

Answers

Explanation:

Total voltage = 9 × 2 = 18v

Resistance = 82 Ω

Ohm's law::

V = IR

18v = 82 Ω × I

18v /82 /Ω = I

18/82 Ampere is the current

When a skater pulls her arms in, it
reduces her moment of inertia from
2.12 kg m² to 0.699 kg-m². If she was
initially spinning 3.25 rad/s, what is
her final angular velocity?

Answers

The skater's final angular velocity is approximately 9.86 rad/s.

The skater's final angular velocity can be calculated using the principle of conservation of angular momentum. The equation for angular momentum is given by:

L = Iω

where L is the angular momentum, I is the moment of inertia, and ω is the angular velocity.

Initially, the skater has an angular momentum of:

L_initial = I_initial * ω_initial

Substituting the given values:

L_initial = 2.12 kg m² * 3.25 rad/s

The skater's final angular momentum remains the same, as angular momentum is conserved:

L_final = L_initial

The final moment of inertia is given as 0.699 kg m². Therefore, the final angular velocity can be calculated as:

L_final = I_final * ω_final

0.699 kg m² * ω_final = 2.12 kg m² * 3.25 rad/s

Solving for ω_final:

ω_final = (2.12 kg m² * 3.25 rad/s) / 0.699 kg m²

Hence, the skater's final angular velocity is approximately 9.86 rad/s.

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c.based on the previous two answers, what can you say about the density of object a? (note: the density of a solid is measured in g/cm3, which are equivalent to g/ml.)

Answers

The density is essentially a ratio of an object's mass to its volume. The density calculation formula is shown below.

Density = Total Mass / Total Volume

The mass of an object is expressed as g/mL or g/cm3 depending on the volume. The tool used to gauge the density of a liquid is known as a hydrometer. One of the simplest scientific measuring tools is a plastic straw, so you might make your own (see links below). even though it is made of glass and frequently resembles a thermometer. It has a cylindrical stem with a weighted bulb at the bottom that aids in its ability to float upright. The hydrometer is slowly dipped into the liquid to be measured until it floats freely. The instrument features lines that are carved or marked so that the user may see how high or low the hydrometer is floating.

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If little herbert does something uncon
sciously he will probably

Answers

If little herbert does something unconsciously he will probably, he's definitely very unware of he has done

Doing something unconscious may have some implications which may not be favourable.

What is unconscious?

Unconscious simply means a state of someone being absent minded of what is happening to him or her at a particular period of time

So therefore, if little herbert does something unconsciously he will probably, he's definitely very unware of he has done

Complete question:

What happens if little herbert does something unconsciously he will probably

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now that you know about newton's first law of motion, how might you use it to ride a skateboard safely?​

Answers

Answer:

newton's first law of motion was developed by English scientist Isaac Newton around 1700. Newton was one of the greatest scientists of all time. He developed three laws of motion and the law of gravity, among many other contributions.

Explanation:

according to Newton's second law of motion. what is force product​

Answers

Newton's second law equates the net force on an object to the rate of change of its momentum, the latter being the product of the mass of a body and its velocity.

Hope this helps :)

Answer:

Force can be defined as the product of mass and acceleration.

Explanation:

~Cornasha_Weeb

A mover slides a refrigerator weighing 650 N at a constant velocity across the floor a distance of 8.1 m. The force of friction between the refrigerator and the floor is 230 N. How much work has been performed by the mover on the refrigerator?​

Answers

Given :

A mover slides a refrigerator weighing 650 N at a constant velocity across the floor a distance of 8.1 m.

The force of friction between the refrigerator and the floor is 230 N.

To Find :

How much work has been performed by the mover on the refrigerator.

Solution :

Since, refrigerator is moving with constant velocity.

So, force applied by the mover is also 230 N ( equal to force of friction ).

Now, work done in order to move the refrigerator is  :

\(W = Force\times distance\\\\W = 230 \times 8.1\ N\ m\\\\W = 1863\ N\ m\)

Hence, this is the required solution.

By what percent is the torque of a motor decreased if its permanent magnets lose 6.5 % of their strength

Answers

6 is the answer I remember the answer from when I took this and it was easy

1) A 101 kg zombie smells a human and takes off at a run of 5.3 m/s. What is the zombie's momentum?​

Answers

The momentum of the zombie is 535.3 kg m/s.

What is momentum?

Momentum is a fundamental concept in physics that describes the amount of motion that an object has. It is defined as the product of an object's mass and its velocity.

Here,

The momentum (p) of an object is defined as the product of its mass (m) and velocity (v)

p = m * v

In this case, the mass of the zombie is 101 kg and its velocity is 5.3 m/s. So, the momentum of the zombie can be calculated as:

p = 101 kg * 5.3 m/s

p = 535.3 kg m/s

Therefore, the momentum of the zombie is 535.3 kg m/s.

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1) 1000 kg car takes travels on a circular track having radius 100 m with speed 10 m/s. What is the magnitude of the centripetal force acting on the car? *

1 point

1 N

100 N

1000 N

10000 N


2) 1000 kg car takes travels on a circular track having radius 100 m with speed 10 m/s. What is the magnitude of the acceleration of the car? *

1 point

0.1 m/s^2

1 m/s^2

10 m/s^2

100 m/s^2

Answers

Answer:

(1) 1000 N (2) 1 m/s²

Explanation:

(1) Given that,

The mass of a car, m = 1000 kg

Radius of a circular track, r = 100 m

Speed of the car, v = 10 m/s

We need to find the magnitude of the centripetal force acting on the car. The magnitude of the centripetal force is given by :

\(F=\dfrac{mv^2}{r}\\\\F=\dfrac{1000\times (10)^2}{100}\\\\F=1000\ N\)

So, the correct option is (c) i.e. 1000 N

(2).The mass of a car, m = 1000 kg

Radius of a circular track, r = 100 m

Speed of the car, v = 10 m/s

We need to find the magnitude of the centripetal acceleration of the car. The magnitude of the centripetal acceleration is given by :

\(a=\dfrac{v^2}{r}\\\\a=\dfrac{(10)^2}{100}\\\\a=1\ m/s^2\)

So, the correct option is (b) i.e. \(1\ m/s^2\)

The gravitational potential energy of a 4 kg book is 98 J. what is its height​

Answers

The height of the 4 kilograms book with a gravitational potential energy of 98 Joules is approximately 2.5 meters.

How to determine the height of an object with a gravitational potential energy?

Gravitational potential energy is simply the potential energy an object possessse in relation to another object due to gravity.

It is expressed as;

U = m × g × h

Given that:

Gravitational potential energy of the book U = 98 Joules

Mass of the book m = 4 kilograms

Acceleration due to gravity g = 9.8 m/s²

Height h = ?

Plug these values into the above formula and solve for height.

U = m × g × h

h = U / ( m × g )

h = 98  / ( 4 × 9.8 )

h = 98/39.2

h = 2.5 meters

Therefore, its height is 2.5 meters.

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The part of the eye that gives its shape is the:

Answers

The body is the largest part of the eye and gives the eye its shape.

A 35.30-kg box is attached to a light string that is wrapped around a cylindrical frictionless spool of radius 10.0 cm and moment of inertia 4.00 kg * m^2. The spool is suspended from the ceiling, and the box is then released from rest a distance from rest a distance 3.50 m above the floor. How long does it take for the box to reach the floor?

Answers

Answer:

The velocity of the box is related to the angular velocity of the spool, which is given by the equation:

v = r * ω

where r is the radius of the spool and ω is the angular velocity of the spool. The angular velocity of the spool, in turn, is related to the torque applied to the spool by the tension in the string, which is given by the equation:

τ = I * α

where τ is the torque, I is the moment of inertia of the spool, and α is the angular acceleration of the spool.

The tension in the string is equal to the weight of the box, which is given by:

T = m * g

Putting all of these equations together, we can solve for the time it takes for the box to reach the floor. Here's how:

First, we can find the angular acceleration of the spool using the torque equation:

τ = I * α

T = m * g = τ

m * g = I * α

α = (m * g) / I

α = (35.30 kg * 9.81 m/s^2) / 4.00 kg*m^2

α = 86.53 rad/s^2

Next, we can find the angular velocity of the spool using the kinematic equation:

ω^2 = ω_0^2 + 2 * α * θ

where ω_0 is the initial angular velocity (which is zero), θ is the angle through which the spool has turned (which is equal to the distance the box has fallen divided by the radius of the spool), and ω is the final angular velocity (which is what we want to find). Solving for ω, we get:

ω^2 = 2 * α * θ

ω = sqrt(2 * α * θ)

ω = sqrt(2 * 86.53 rad/s^2 * (3.50 m / 0.10 m))

ω = 166.6 rad/s

Finally, we can find the time it takes for the box to reach the floor using the equation:

v = r * ω

v = 0.10 m * 166.6 rad/s

v = 16.66 m/s

t = d / v

t = 3.50 m / 16.66 m/s

t = 0.21 s

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