Suppose a simple pendulum consists of a 3.5 m string and a 0.3-kg bob, and its period is 3.75 s. what would be the period of the pendulum if the mass of the bob were doubled?

Answers

Answer 1

The period of pendulum is still the same at 3.75 seconds.

We need to know about pendulum experiment to solve this problem. The pendulum is a simple experiment to calculate gravitational acceleration. The gravitational acceleration can be calculated by

g = 4π² . L / T²

where g is gravitational acceleration, L is the length of the string and T is the period.

From the question above, we know that:

L = 3.5 m

m1 = 0.3 kg

T1 = 3.75 s

m2 = 2m1

Find the period of pendulum

g = 4π² . L / T²

T² = 4π² . L / g

T = √(4π² . L / g)

The period of a pendulum does not depend on the mass of the object, hence the period is still the same at 3.75 seconds.

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Related Questions

What physical developments typically accompany adolescence?
Select all that apply.
O development of reflexes and motor skills
increased levels of hormones in the blood
O growth of the brain's frontal cortex
O increased risk of heart disease

Answers

Answer:increases levels of hormones in the brain

Explanation: because when you go through puberty you start to get more hormones

The density of lead is 11.3 g/cm3. what mass of lead is required to make a 1.00 cm3 fishing sinker?

Answers

The mass of lead required to make a 1.00 cm3 fishing sinker is 11.3g.

What is mass?

Mass is a metric used in physics to express inertia, a fundamental characteristic of all matter. A mass of matter's resistance to altering its direction or speed in response to the application of a force is what it essentially is. The change that an applied force produces is smaller the more mass a body has.

Given :

Density of lead = 11.3 g/cm3

Volume of  sinker  =  1.00 cm3

One of a substance's attributes is density, which is calculated by dividing the mass by the volume. Mathematically:

Density : Mass / volume

therefore after putting the values,

mass= 11.3g

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Early sulfate reducers set the stage for the evolution of ______, the first form of which harvested hydrogens from h2s..
a) fermentation
b) photosynthesis
c) aerobic
d) respiration

Answers

Early sulfate reducers set the stage for the evolution of

b) photosynthesis, the first form which harvested hydrogens from h2s.

What is photosynthesis?

The process of turning light energy into chemical energy suitable for the needs of the organism is called photosynthesis. The process begins when the chlorophyll-containing proteins absorb light energy. Chlorophyll a and Chlorophyll b are the two types of chlorophyll. In bacteria, chlorophyll is kept in the cell membrane, whereas it is kept in organelles called chloroplasts in plants. The electrons are used to separate a hydrogen ion from a water molecule after being excited by the light energy. After that, ion gradients are made using the hydrogen ions to produce ATP and NADPH. The byproduct is the release of oxygen. The light-dependent reactions are what we refer to as these processes.

The two energy-carrying molecules ATP and NADPH are then added to the Calvin Cycle in plants along with carbon dioxide to produce the glucose molecule, which has a longer half-life than the other two energy-carrying molecules.

The Krebs Cycle is used by bacteria. Carbon fixation, reduction reactions, and RuBP regeneration all take place in three steps.

Even though they only occur when light is present, these processes are known as light-independent reactions.

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Which layer of the osi model is targeted by the threat actors for layer 2 attack?

Answers

The data link layer of the OSI model is targeted by the threat of layer 2 attacks.

What is the OSI model?

The International Organization for Standardization (IOS) developed the open system's interconnection (OSI) model, a conceptual framework that enables various communication systems to exchange data via agreed-upon protocols. The OSI, or Open Systems Interconnection, offers a standard for various computer systems to be able to communicate with one another.

One could think of the OSI Model as a common language for computer networking. Its foundation is the idea that a communication system may be broken down into seven abstract levels, each one built on top of the previous.

Hence, the threat of a layer 2 assault is directed against the OSI model's data link layer.

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An object launched at ground level with an initial speed of 50.0 m/s at an angle of 30.0degrees above the horizontal. It strikes a target above the ground 3.0 seconds later.What is the vertical distance of the object from where it was launched to where it lands?

Answers

The vertical distance of the object from where it was launched to where it lands is 30.9 meters.

What is projectile?

A Projectile is an object that is propelled by the application of an external force and then moves freely under the influence of gravity and air resistance.

Acceleration=0m/s^2 , t=3 seconds , Vox= 50 cos30 Acceleration=9.8 m/s^2 , t=3 seconds , Voy=50sin3050cos30=x x 50 /50 , 50sin30= y x 50/50 ( x is the base , y is the perpendicular )Del x = ? , Del y = ?Del y = Voy + 1/2 at^2 = 50sin30 x 3 + 1/2 x -9.8x 3^2 = 30.9 m

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Can you please answer the question. Thank you!

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Deceleration of the person wearing the seatbelt is -200 m/s^2Force exerted by the person wearing the seatbelt is -10000 NDeceleration of the person stopped by the dashboard is -2000 m/s^2Force exerted by the dash board on the person is  -100000 N

What is the force exerted?

From the Newton's first law, we can see that the impressed force is equation the rate at which the momentum changes.

F = m(v - u)/t

F = force applied

m = mass of the body

v = final velocity

u = initial velocity

t = time

1) Deceleration of the person wearing the seatbelt is; 0 - 20/ 0.1 = -200 m/s^2

2) Force exerted = 50 Kg * ( -200 m/s^2) = -10000 N

3) Deceleration of the person stopped by the dashboard = 0 - 20/ 0.01 = -2000 m/s^2

4) Force exerted by the dash board on the person = 50 Kg * (-2000 m/s^2) = -100000 N

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If a ball rolls off of your desk with a speed v, it takes 0.60 s to land on the floor. if the asecond ball rolls off of your desk with a speed 2v, how long the second ball take to land on thefoor?

Answers

The time taken by second ball to land on the floor is 0.30 seconds.

What is the relation between speed, time and distance?

Speed is determined by dividing the distance covered by the time taken. Calculating the units for speed requires knowledge of the units for both time and distance. Since the distance is measured in metres (m) and the time is measured in seconds (s), the units in this example will be metres per second (m/s).

The answer can be calculated by the equation:

[tex]D = V \times T[/tex]

Where, V = speed, T = time, D = distance

So, for first ball the time is given to be 0.60 s and speed is given to be v.

We get equation,

[tex]D = 0.60v[/tex]

For second ball speed is given to 2v and the distance is same as first ball

We get equation,

[tex]D = T_2 2v[/tex]

Where, T₂ = Time taken by second ball

By both the equations of first and second ball. we get,

[tex]0.60v = T_2 2v[/tex]

[tex]T_2 = \frac{0.60}{2}[/tex]

[tex]T_2 = 0.30 s[/tex]

Therefore, the second ball will take 0.30 seconds to land on the floor.

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What does a low value for the measure of variation for a data set imply?
a.) the data set contains one or more outliers.
b.) the data set is normally

Answers

The low value for the measure of variation is b) the data set is normal.

What does a low value for the measure of variation for the data set imply?

Measures of variability describe how far the data points typically deviate from the center, whereas a measure of central tendency describes the typical value. In the context of a distribution of values, we discuss variability. A low dispersion means the data tend to be tightly clustered around the center.A model with low variance indicates that the sampled data is roughly in line with the model's predictions. The projections of the target function will be significantly altered by a model with high variance.The expectation of a random variable's squared deviation from its population means or sample mean is known as its variance. Variance serves as a proxy for dispersion, or the degree to which a set of numbers deviates from their mean.

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You combine 1.25 g of germanium, ge, with excess chlorine, cl2. the mass of the product gexcly, is 3.69 g. determine the empirical formula of the product gexcly.

Answers

The empirical formula of the product gexcly is Ge4Cl.

a.) In empirical formula problem one must first find the mass % of the elements in the compound. Since the total mass of the final product was 3.69g we find that:

3.69g total-1.25g germanium = 2.44g chlorine

1.25g germanium/3.69 g total (100) = 33.88%

44g chlorine/3.69 g total (100) = 66.12%

b.) Then change the % to grams

33.88%→3.38g of Ge

72.23%→6.61g of Cl

c.) Next, divide all the masses by their respective molar masses.

3.38g /72.64gm-1 = 0.0465 moles Ge

6.61g/35.45gm-1 = 0.1864 moles Cl

d.) Pick the smallest answer of moles and divide all figures by that.

0.04 moles Ge / 0.0465 = 1

0.1864 moles Cl / 0.0465 = 4.00

Since our answer for chlorine is a whole number, we use them as coefficients for the product

e.) Lastly, the coefficients calculated in the previous step will become the subscripts in the chemical formula.

Ge = 4

Cl = 1

Ge4Cl

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A ladybug is moving at a speed of 1 cm/s. She begins to decelerate at a rate of –0.25 cm/s2until she comes to rest. How much distance does the ladybug cover from the moment she begins to decelerate until the moment she comes to rest? (HINT: This is a two-part problem. First, use an equation to determine the time. Then, plug this value into another equation to determine the distance.)

Answers

The distance covered by the ladybug from the moment she begins to de-accelerate until the moment she comes to rest is 2 cm.

What are the three equations of motion?

The three equations of motion are -

v = u + at

S = ut + 1/2 at²

v² - u² = 2aS

Given is a ladybug which is moving at a speed of 1 cm/s. She begins to decelerate at a rate of -0.25 cm/s² until she comes to rest. From this we can write -

initial velocity [u] = 1 cm/s

final velocity [v] = 0 m/s

acceleration [a] = -0.25 cm/s² = 1/4 cm/s²

Using the first equation of motion -

v = u + at

0 = 1 - t/4

t/4 = 1

t = 4 sec

Using second equation of motion -

S = ut + 1/2 at²

S = 1 x 4 - 0.5 x 0.25 x 4 x 4

S = 4 - 2

S = 2 cm

Alternative method

Using third equation of motion, we can directly find out the distance covered -

v² - u² = 2aS

- 1 = - 2 x 1/4 x S

S/2 = 1

S = 2 cm

Therefore, the distance covered by the ladybug from the moment she begins to de-accelerate until the moment she comes to rest is 2 cm.

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what are two real life examples of vectors

Answers

Answer: Navigating by air and by boat is generally done using vectors. Planes are given a vector to travel, and they use their speed to determine how far they need to go before turning or landing.

Anyone know the answer

Answers

The answer should be D.

If the carousel rotates at 0.10 rev/s , how long does it take the horse to go around twice?

Answers

The carousel that rotates at 0.10 rev/s, takes 125.66 s to go around twice

To solve this uniform circular motion (UCM) problem the formula and the procedure we will use is:

w= (2*π *n)/t

Where:

w = angular velocityπ = mathematical constantn = number of labst = time

Information about the problem:

w = 0.10 rev/sπ = 3.1416n = 2t = ?

Applying the angular velocity formula and isolating the time, we get:

w= (2*π *n)/t

t = (2*π *n)/w

t = (2 * 3.1416 * 2)rev / 0.10 rev/s

t = 125.66 s

What is angular velocity?

When an object is in uniform circular motion, the angle described by the radius in each unit of time is known as angular velocity. It is measured in units of (rad/s) (revolutions/s).

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On mercury, the acceleration due to gravity is 3.59 m/s2. how far would a 21 g rock fall from rest in 7.5 s if the only force acting on it was the gravitational force due to mercury?

Answers

The distance traveled by a rock on mercury due to gravity is 100.96.

given that,

acceleration due to gravity, g = 3.59 m/s²

mass of the rock = 21 g

time = 7.5 s

distance traveled =?

using the equation of motion,

s= ut + 1/2 at^2

since u = 0
s = 1/2 x 3.59 x 7.5 x 7.5 = 100.96

Mercury is roughly 0.383 times the size of Earth and just 0.055 as massive, with a mean radius of about 2,440 km and a mass of 3.30 1023 kg. As a result, Mercury is the Solar System's smallest and least massive planet. Mercury has a surface gravity of 3.7 m/s2, which is equal to 0.38 g, although this is due to its high density, which is a solid 5.427 g/cm3, which is higher than Earth's 5.514 g/cm3.

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1) The Aurora Borealis, also known as Northern Lights, is normally only seen in the most northern regions, like Canada, Alaska & the North Pole. However, in 1859, there was a geomagnetic storm so big the Aurora Borealis was seen as far SOUTH as. * 1 point Canada

Answers

The Aurora Borealis, also known as the Northern Lights, is normally only seen in the most northern regions, like Canada, Alaska & the North Pole. However, in 1859, there was a geomagnetic storm so big the Aurora Borealis was seen as far SOUTH as the United States, Japan, and Australia.

The Aurora Borealis are spectacular lights that are seen in the polar regions.

These lights are produced as a result of interaction between solar winds and the earth's magnetic field.

The solar wind emits from the sun's corona and contains charged particles traveling at a speed of 400 miles/second.

When these charged particles collide with the atoms and molecules of the atmosphere after entering into Earth's magnetic field they produce lights in the northern and southern poles. Big Aurora Borealis is also called geometric storms.

To put it simply, auroras are produced by the collision of different atomic particles such as green and red lights formed by oxygen, blue, pink, and violet lights by nitrogen and helium particles emitting purple light.

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What is the mass of 2.00 l of an intravenous glucose solution with a density of 1.15 g/ml?
a) 0.0230 kg
b) 2.30 kg
c) 1.15 kg
d) 0.0150 kg
e) 0.575 kg

Answers

The correct answer is an option (b) 2.30 kg.

Density is denoted by the symbol 'p'. The density of a substance is directly proportional to its mass and inversely proportional to its volume. It means that with an increase in mass density also increases and with a decrease in volume density also decreases.

The volume of the intravenous glucose solution is v.

v = 2 L

The density of the intravenous glucose solution is p.

p = 1.15 mL

The mass of the intravenous glucose solution is,

1 L = 1000 mL

2 mL = 2000 mL

[tex]Density = \frac{Mass}{ Volume}[/tex]

[tex]p = \frac{m}{v} [/tex]

[tex]1.15 = \frac{m}{2000} [/tex]

m = 1.15 × 2000

m = 2300 g

m = 2.30 kg.

The mass of the intravenous glucose solution is 2.30 kg.

Therefore, the correct answer is an option (b) 2.30 kg.

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How many photons at 660 nm must be absorbed to melt 5.0 x 10^2 g of ice?

Answers

The total photons at 660nm that are needed to be absorbed are 5.533 x 10²¹ in order to melt the ice.

What is the Planck's equation?

Planck's equation is used to determine that the energy (E) of a photon is equal to hv = hc/λ, where this v is stated as the frequency of the electromagnetic radiation and λ as its wavelength.

Wavelength = 660nm = 6.60 x 10^-7 m

First, we find out the energy that is required to melt 5.0 x 10^2 grams of ice. This is given by:

Energy = mass multiplied by latent heat of fusion

Energy =   5.0 x 10^2g x 334 J/g

Energy = 167 x 10^3 J

So, we now have that to melt 5.0 x 10^2 g of ice, we need 334J of energy

Next, we can use Planck's equation which is:

Energy = (number of photons multiplied by Planck's constant x speed of light) / wavelength

167 x 10^3 J = [n * 6.64 x 10⁻³⁴ * 3 x 10⁸ ]/ 6.60 x 10^-7

n = 5.533 x 10²¹

5.533 x 10²¹ photons need to be absorbed by the ice in order to melt.

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Methane is compressed adiabatically from 100kpa and 25oc to 200kpa. what is the minimumcompressor exit temperature possible? explain

Answers

The answer to the given question is 820 Kelvin. Gauss' Law demonstrates how electric fields, E, can be produced by static electricity, q. Gauss' Law, which bears the name of German physicist Carl Friedrich Gauss, is the third of Maxwell's four equations. According to Gauss' Law, an electric charge, qv, or static electricity, produces an electric field, E. (voltage).

This question is an application of Gauss Law, which states that the pressure P and temperature T of an ideal gas are directly proportional to one another. In other words, adiabatic increase in pressure will result in the same rise in temperature. Mathematically,

it can be written as: 

P1/ T1 = P2/ T2

Therefore, Temperature T2 = 275 kPa * 298K / 100 kPa = 820 K. Thus, the minimum compressor exit temperature possible is 820 Kelvin.

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The drop across a resistor means that there is a change in potential or voltage across the resistor. is there any change in current as it passes through a resistor? explain.

Answers

No Change in Current as it passes through a resistor.

Explanation:

When there is an IR drop across a resistor, the current flowing through the resistor causes a change in potential or voltage across the resistor. based on Ohm's law

V = RI

where V is the resistance's voltage.

resistance, or R

I = present

R is now known to be constant.

The applied voltage also affects the current for a particular resistance.

Therefore, unless we change the resistance, no change in current is visible when current flows through a resistor.

When the IR drops across the resistor, the potential also drops using Ohm's law.

Thus, the potential energy of the electrons across the resistor drops. But the kinetic energy of the electrons remains the same.

The current is defined by the rate of flow of electrons which remains the same as the kinetic energy did not change.

Hence, the current won't change while passing through the resistor.

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What is the moons mass

Answers

Answer:

10^24 kilo

Explanation:

the moon's mass is 10^24

which of the following has the smallest particles

Answers

Answer:

Explanation:

which of the following has the smallest particles

Practice using the python interpreter as a calculator. the volume of a sphere with radius r is given by 4/3pir^3. what is the volume of a sphere with radius 5?

Answers

Using the python interpreter as a calculator, the volume of the sphere having radius 5 is calculated as 523.5987749999999.

Output:

The volume of the sphere is 523.5987749999999

Describe the Python interpreter.

The Python interpreter is a virtual machine, which means that it is computer simulation software.

This specific virtual machine is a stack machine; to carry out its tasks, it manipulates a number of stacks (as contrasted with a register machine, which writes to and reads from particular memory locations).

Is Python an interpreter or a compiler?

Interpreted terminology

Python is an interpreted language, therefore programmers written in it are translated from their source code into bytecode before being run by the Python virtual machine.

Because Python code does not need to be created and linked like code for other popular compiled languages, such C and C + +, it differs from these languages.

Input

Given that

Pi = 3.14159265

r = 5

V = 4/3 x π x r x 3

V = 523.5987749999999

Print (The volume of the sphere is: 1, V)

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Based on the Law of Conservation of Energy, which of the below is true?

Answers

Based on the law of conservation of energy the fact that is true is energy can neither be created or destroyed.

The capacity to do work is called energy. The Law of conservation of energy states that energy can neither be created nor be destroyed. Although, it may be transformed from one form to another and the total energy of an isolated system always remains constant. This implies that a system always has the same amount of energy, unless it's added from the outside.

Thus Law of conservation of energy is true for every matter present on earth.

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If earth were twice as far as it actually is from the sun, the force of gravity attracting earth to the sun would be:_________

Answers

If the earth were twice as far as it actually is from the sun, the force of gravity attracting the earth to the sun would be one-quarter as strong as it once was.

Any two objects with mass are constantly attracted to each other by a force. This force is called gravity. According to Sir Isaac Newton, the force of gravity between two objects depends on the mass of the objects and the distance between them.

Newton's law of universal gravitation states that "the force of gravity between two objects is directly proportional to the product of their masses and inversely proportional to the square of their distance apart". Taking only the distance apart into consideration, the force of gravity decreases exponentially as distance increases.

This shows that the more the earth moves away from the sun, the more the force of gravity between the earth and the sun decreases. For example, let's take the current distance between the earth and the sun as 1 unit and the force of gravity as 1 unit also. If we were to double the distance between the earth and the sun, it will mathematically be written as:

    Force of gravity, F = 1/d^2

    where d = distance between the earth and the sun.

    Hence, F = 1/2^2

                 F = 1/4

Therefore, when the distance is doubled, force of gravity decreases by a factor of 1/4.

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What do we mean when we say we assume divisibility in a linear programming solution?

Answers

The final solution sales will always be fractions. The final solution deals do not need to be integers.

Linear programming (LP) or Natural Optimization is the issue of maximizing or underestimating a straightforward work subject to linear restrictions.

What is Linear Programming?The problem of maximizing or minimizing a straight work subject to linear constraints is known as linear programming (LP) or direct optimization.Equities or imbalances could be the constraints. Among the advancement issues are profit and loss calculations.Linear programming problems are a type of optimization problem in which the feasible region is determined and the arrangement is optimized to have the highest or lowest esteem of the work.The various types of linear programming are as follows: To solve linear programming problems, the Simplex method is used.R is a programming language used to solve linear programming problems. To solve linear programming, a graphical method is used.

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What is the radius of the sphere gizmos

Answers

The radius of a sphere is the distance between the centre point of the sphere to the surface of the sphere.

r = d / 2

A = 4 π r²

r = √ ( A / 4 π )

V = 4 / 3 π r³

r = ∛ ( 3 V / 4 π )

r = Radius of the sphere

d = Diameter of the sphere

A = Surface Area of the sphere

V = Volume of the sphere

A sphere is the 3-dimensional form of a circle. Since the radius of the sphere is a measure of length, its unit is usually meter.

Therefore, the radius of a sphere is the distance between the centre point of the sphere to the surface of the sphere.

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Please help me with this question soon.

Block A - 19.3 Kg/L
Block B - 0.64 Kg/L
Block C - 0.70 Kg/L
Block D - 0.917 Kg/L
Block E - 3.53 Kg/L

1) Which block has the greatest density?

Block A
Block B
Block C
Block D
Block E

2) Which block has the lowest density?

Block A
Block B
Block C
Block D
Block E

3) Submit your data table and identify the substance each block is made of.

Answers

Answer: Ok, ok, I have the same questions and I got them right, here is your answer...

1) Which block has the greatest density?

Answer: Block A

2) Which block has the lowest density?

Answer: Block B

Explanation: For the first question, Block A has the largest whole number, making it have the greatest density.

For the second question, Block B 0.64 has the lowest number behind the decimal in the tenths place is the smallest, making it have the lowest density.

Hope this helps :3

1)We need to identify the block that has the highest mass per unit volume. In this case, it is Block A, which has a density of 19.3 Kg/L. So Block A has greater density. Correct Option is 1.

2) Block B: 0.64 Kg/L block has the lowest density. So Correct Option is 2.

1)  Block A with a density of 19.3 Kg/L, it means that for every liter of volume occupied by the block, there is 19.3 kilograms of mass. This indicates that the material in Block A is more dense or more tightly packed compared to the other blocks with lower densities.

2) Block B has the lowest density among the given blocks because it has the smallest value of 0.64 Kg/L. Density is a measure of how much mass is contained within a given volume. A lower density means that there is less mass packed into a given volume, indicating that the material is less dense or less compact

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If a ship has a mass of 10 million kilograms, what volume of fresh water must it displace in order to float? the density of water is 1000 kg/m3.

Answers

The answer is 0.4 m³, in order to float, the boat must displace its own mass in water.

Since the boat weighs 10,000,000 kg, and water has a density of 1000 kg/m3, the boat must displace

(10,000,000 kg) / (1000 kg/m³)

= 10,000 m³ of water in order to float.

(Or 10⁴ m³, as written above)

Surface tension is the propensity for liquid surfaces that are at rest to condense into the smallest surface area. Razor blades and insects (like water striders), which have a higher density than water, can float on the surface of the water without even partially submerging due to surface tension. Typically, there are two forms of density: absolute density and relative density. The ratio of a substance's density to the density of a reference material is known as its relative density, sometimes referred to as specific gravity.

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What is the decibel level of a sound that is twice as intense as a 90.0-db sound?

Answers

The decibel level of a sound that is twice as intense as 90dB is 93.013dB.

What is a decibel level?

Sound intensity is the amount of sound energy in a limited space. It is measured in decibels (dB). The decibel scale is logarithmic, meaning that loudness is not directly proportional to sound intensity. Instead, the intensity of the sound increases very quickly. This means that a sound of 20 dB is 10 times more intense than a sound of 10 dB. Also, the sound intensity at 100 dB is a billion times stronger compared to the sound at 10 dB.

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The sound intensity at a distance of 20 m from a noisy generator is measured to be 0.26 w/m2. what is the sound intensity at a distance of 27 m from the generator?

Answers

0.1111 W/m²  is the sound intensity at a distance of 27 m from the generator.

The amount of energy travelling through a unit area in a unit of time perpendicular to the direction of the sound waves is known as the sound intensity. Sound intensity is inversely related to the square of the sound's distance when all other factors are held constant. This is,

I ∝ (1/r²)

I = k/r²

Since k can be the constant of proportionality. k = Ir²

We can write this relation as

I₁ × r₁² = I₂ × r₂²

I₁ = 0.25 W/m²

r₁ = 16 m

I₂ = ?

r₂ = 24 m

0.25 × 16² = I₂ × 24²

I₂ = (0.25 × 16²)/24²

I₂ = 0.1111 W/m²

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