a force of 85 N is used to push a box along the floor of a distance of 15 m how much work was done

Answers

Answer 1

The work done is equal to 85 N x 15 m, which is equal to 1275 Nm.

What is work?

Work is an activity involving mental or physical effort done in order to achieve a result. It can be done for pay, as a hobby, or for any other purpose. It can be done alone or with the help of others. Work can be done in a variety of settings and can involve a wide range of tasks and skills. It is an essential part of many people's lives and can be a source of satisfaction, pride, and fulfillment.

The work done is equal to the force multiplied by the distance moved. Therefore, the work done is equal to 85 N x 15 m, which is equal to 1275 Nm.

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Related Questions

Can a capacitor be used as a high pas filter? explain

Answers

Yes, a capacitor can be used as a high-pass filter. A high-pass filter is a type of electronic circuit that allows high-frequency signals to pass through while blocking or attenuating low-frequency signals.

In a high-pass filter, the capacitor is connected in series with the input signal and a resistor is connected in parallel to the output. The capacitor acts as a barrier to low-frequency signals, allowing only high-frequency signals to pass through to the output. The resistor is used to limit the output signal amplitude and to control the cutoff frequency of the filter.

The cutoff frequency of a high-pass filter is determined by the values of the capacitor and resistor in the circuit. As the cutoff frequency increases, the filter becomes more effective at blocking low-frequency signals and allowing only high-frequency signals to pass through.

Capacitors are commonly used in high-pass filters in a variety of applications, such as in audio equipment to remove low-frequency noise and in signal processing to extract high-frequency components of a signal.

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True or False? instantaneous velocity can be positive, negative, or zero.

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True, instantaneous velocity can be positive, negative, or zero.

What is instantaneous velocity?

Instantaneous velocity is the velocity of an object at a specific moment in time. It can be positive if the object is moving in a positive direction, negative if the object is moving in a negative direction, or zero if the object is not moving at all

Velocity is a measure of how fast an object is moving and in what direction. Instantaneous velocity, as the name suggests, refers to the velocity of an object at a specific instant in time. It is calculated by finding the derivative of the object's displacement with respect to time.

When an object is moving in a positive direction, its instantaneous velocity will be positive. For example, if a car is moving forward on a straight road, its velocity is positive. Similarly, when an object is moving in a negative direction, its instantaneous velocity will be negative. For example, if the same car is moving backward on the same road, its velocity is negative. Finally, if an object is not moving at all, its instantaneous velocity is zero.

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how to convert 175c to f?

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175 °C is equivalent to 347 °F. To convert a temperature from Celsius to Fahrenheit, you multiply the Celsius temperature by 9/5 and add 32.

To convert 175 degrees Celsius (°C) to Fahrenheit (°F), you can use the following formula:

°F = (°C x 9/5) + 32

Plugging in the given value of 175 °C, we get:

°F = (175 x 9/5) + 32 = 315 + 32 = 347 °F (rounded to two decimal places)

Therefore, 175 °C is equivalent to 347 °F.

The Celsius and Fahrenheit scales are two common temperature scales used in different parts of the world. Celsius (°C) is a metric temperature scale used in most countries around the world, while Fahrenheit (°F) is a temperature scale used primarily in the United States and a few other countries.

The conversion formula between Celsius and Fahrenheit is:

°F = (°C x 9/5) + 32 °C = (°F - 32) x 5/9

To convert a temperature from Celsius to Fahrenheit, you multiply the Celsius temperature by 9/5 and add 32. To convert a temperature from Fahrenheit to Celsius, you subtract 32 from the Fahrenheit temperature and then multiply the result by 5/9.

It's important to note that Celsius and Fahrenheit have different freezing and boiling points. In Celsius, water freezes at 0°C and boils at 100°C, while in Fahrenheit, water freezes at 32°F and boils at 212°F. This means that the same temperature can have different meanings depending on the scale used.

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Is the force of gravity from the sun the same at all points in the orbit?

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Answer:

The farther it is from the Sun, the weaker the Sun's gravitational pull, and the slower it moves in its orbit.

how is information about magnetic fields recorded in rocks?

Answers

Information about magnetic fields in rocks is recorded through the alignment of magnetic minerals, such as magnetite, with the Earth's magnetic field at the time the rock was formed.

As magma or lava cools and solidifies, the magnetic minerals become "frozen" in place and retain the orientation of the Earth's magnetic field. By studying the magnetic orientation of rocks, scientists can determine the direction and strength of the magnetic field at the time the rock was formed, as well as track the movement of the Earth's magnetic poles over time.

This technique is called paleomagnetism and has been used to study the Earth's magnetic field history over millions of years.

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A sensor uses 2.0 x 10-4 A of current when it is operated by a 3.0-V battery. What is the resistance of the sensor circuit?

Answers

Knowing the voltage and current of a sensor, we have that the resistance of the sensor is worth 15,000 Ω.

The resistance of the sensor circuit can be calculated using Ohm's Law, which states that the resistance (R) is equal to the voltage (V) divided by the current (I). In this case, the voltage is 3.0 V and the current is 2.0 x 10⁻⁴ A. Therefore, the resistance can be calculated as follows:

R = V / I

R = 3.0 V / (2.0 x 10⁻⁴ A)

R = 15,000 Ω

Therefore, the resistance of the sensor circuit is 15,000 Ω.

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How much does mastering physics cost?

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The cost of using Mastering Physics can vary depending on several factors, such as the institution and the specific course. The cost of these codes can range from $50 to $150 or more, depending on the length of access and the number of courses included.

Some institutions may include the cost of using Mastering Physics as part of their tuition fees. Typically, students purchase access codes that are valid for a certain period. Mastering Physics is an online platform designed to supplement physics courses for students. It provides interactive tutorials, homework assignments, and other educational resources to enhance the learning experience.

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How do you read a ruler in CM?

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To read a ruler in cm, locate the zero mark on the ruler, then read the measurement where the object being measured ends, aligning the end of the object with the appropriate line on the ruler, and counting the number of centimeters to that line.

When reading a ruler in cm, it is important to identify the zero mark on the ruler and align it with the beginning of the object being measured. Then, locate the end of the object and align it with the appropriate line on the ruler, counting the number of centimeters to that line.

Each centimeter on the ruler is divided into 10 smaller units called millimeters, so it is also possible to measure to the nearest millimeter by identifying the smallest line on the ruler that aligns with the end of the object.

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what is the difference between diamagnetic vs paramagnetic

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Diamagnetic means substances that are repelled by a magnetic field and paramagnetic means the substances that are attracted by a magnetic field.

The main differences between the paramagnetic and diamagnetic substances is the attraction and repulsion in presence of a magnetic field.

Paramagnetic materials have at least one unpaired electron in their shells. When it is kept in a magnetic field, the field lines pass through the substance. Relative permeability will be more than 1.

Diamagnetic substances have all the electrons paired. It also tend to repel the magnetic field lines. Relative permeability will be more than 1.

So the main difference is paramagnetic material is attracted by the magnetic field while diamagnetic substance is repelled.

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What does the presence of molecular bands in the spectrum of a star indicate?

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The presence of molecular bands in the spectrum of a star indicates the presence of molecules in the star's atmosphere. These molecules absorb certain wavelengths of light, creating dark lines in the spectrum. By analyzing the pattern of these lines, astronomers can identify the molecules present in the star's atmosphere.

what information is captured in ice/sediment cores that can then be analyzed by scientists?

Answers

The information that can be captured by sediment cores are air bubbles, temperature, volcanic eruptions and environment changes.

Ice and sediment cores are valuable records of Earth's past climate and environmental changes, as they preserve layers of snow and sediment from previous periods. Scientists can analyze these cores to obtain a wealth of information, including:

Air bubbles: Ice cores capture tiny air bubbles that contain samples of the atmosphere from the time when the snow was deposited. These bubbles can provide information about past atmospheric composition, including greenhouse gas concentrations such as carbon dioxide and methane.Temperature: The layers in ice cores can be used to reconstruct past temperature variations in the region. Scientists can use proxies, such as the ratio of oxygen isotopes in the ice, to estimate temperatures.Volcanic eruptions: Volcanic ash and other debris from past eruptions can be found in ice cores and sediment cores, which can be used to date and identify eruptions, providing valuable information for volcanic hazard assessment.Environmental changes: Sediment cores can capture evidence of past environmental changes, such as changes in sea level, ocean currents, and climate patterns, as well as evidence of past human activities, such as deforestation and pollution.

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mass is conserved in a reaction if the ____ of the initial reactant masses equals the ____ of the masses of choose...

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"Mass is conserved in a reaction if the sum of the initial reactant masses equals the sum of the masses of products."

According to the principle of mass conservation, neither chemical reactions nor physical changes can produce or destroy mass in an isolated system. The mass of the products and reactants in a chemical reaction must be equal, in accordance with the rule of conservation of mass.

Reactants are the substances that participate in a chemical process. The process by which atoms, the fundamental components of matter, rearrange themselves to form novel mixtures is known as a chemical reaction. When raw materials combine, they are referred to as reactants.

Initial elements are referred to as reactants on the left side of the equation. The products, which stand for the outcome of the reaction, are enumerated on the right-hand side of the equation.

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what is units for joules?

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The work performed by a force of one newton acting through one meter is equivalent to one joule, a unit of work or energy in the International System of Units (SI). James Prescott Joule, an English physicist, inspired the name.

The fundamental SI unit of energy is called a joule, or J. One joule is equal to one kgm²/s², or the kinetic energy of a kilograms mass travelling at one meter per second. As an alternative, it is the amount of work that is performed on an object when a force of one newton operates over a distance of one meter in the direction of the object's motion (1 joule equals 1 newton meter or Nm). The system bears James Prescott Joule's name. Because it is a person's name, the symbol's first letter is capitalised (J instead of j). The term is, however, written in lowercase when it is written out.

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why is fluted filter paper used in gravity filtration?

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Fluted filter paper is often used in gravity filtration because it allows for faster filtration rates and greater particle retention than regular flat filter paper.

How does fluted filter paper help in filteration?

The fluted shape of the paper creates channels or grooves that increase the surface area and provide more space for the filtered material to flow through. This design also prevents the filter paper from clogging, allowing air to escape and helps to maintain a steady flow of liquid through the filter.

What is gravity filteration?

Gravity filtration is a common laboratory technique used to separate a solid from a liquid mixture by allowing the mixture to pass through a filter under the influence of gravity. The process relies on gravity to pull the liquid through the filter paper while leaving behind the solid particles.

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what is the term for the electrical force that occurs when two charges have a difference in potential?

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The term for the electrical force that occurs when two charges have a difference in potential is electric potential difference, or voltage.

When there is a difference in electric potential between two points in an electric circuit, electric charges will flow from the point of higher potential to the point of lower potential, creating an electric current. Voltage is a measure of the energy required to move a unit of electric charge between two points in a circuit.

The unit of measurement for voltage is the volt (V), named after Italian physicist Alessandro Volta. One volt is defined as the electric potential difference between two points in a circuit when one joule of energy is used to move one coulomb of electric charge between those points.

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positive reinforcement involves _______ and negative reinforcement involves _______.

Answers

Answer:

protons and neutrons

Explanation:

protons is postive charges in the atom nucleus. and eletron is negative in the atom in the eletron cloud.

the first one is protons and 2 is eletrons

Answer:

Protons , Electrons

Explanation:

Protons are positive components of an atom and electrons are negative components of the atom.

how much would a 55 kg person weigh on phobos? express your answer in newtons.

Answers

The weight on Phobos will be 0.3135 N

How much would a 55 kg person weigh on phobos?

We know that weight is defined as:

W = mass*gravitational acceleration.

Here we know that the mass of the person is 55 kilograms, and we also know that the gravitational acceleration on phobos is:

g = 0.0057 m/s²

Then the weight will be

W = 55kg*0.0057 m/s² = 0.3135 N

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The coefficient of friction acting upon a 945kg car is 0. 850. The car is making a 180 degree turn around a curve with a radius of 35. 0m. Determine the maximum speed with which the car can make the turn

Answers

The maximum speed at which the car can make the turn is approximately 22.3 meters per second.

Explanation:

Using the formula v = √(u * g * r), where u is the coefficient of friction, g is the acceleration due to gravity, and r is the radius of the curve, we can calculate the maximum speed of the car:

v = √(0.850 * 9.81 m/s^2 * 35.0 m) = 22.3 m/s

A low-pressure mercury-vapor lamp has a characteristic emission line at 253 nm. Knowing that in one second this lamp is putting out 11. 8 joules of light energy, how many mercury atoms emit a photon during this one second of operation?

Answers

[tex]1.50 \times 10^{22}[/tex]  mercury atoms emit a photon during this one second of operation

The steps shown below can be used to resolve this issue:

Find the energy of a photon of light with a 253 nm wavelength. The formula is as follows:

E = hc/λ

where E denotes the photon's energy, h denotes Planck's constant (6.626 x  [tex]10^{-34}[/tex] J s), c denotes the speed of light (2.998 x [tex]10^8[/tex]m/s), and denotes the photon's wavelength in metres.

Inputting the values provided yields:

E = (6.626 x [tex]10^{-34}[/tex] J s) x (2.998 x [tex]10^8[/tex]m/s) / ([tex]253 \times 10^{-9}[/tex] m)

E = 7.87 x [tex]10^{-19}[/tex] J

Hence, a photon of light with a wavelength of 253 nm has an energy of 7.87 x[tex]10^{-19}[/tex] J.

Count the number of photons the light emits in a second. The formula is as follows:

number of photons = energy of light / energy of one photon

Substituting the given values, we get:

number of photons = 11.8 J / [tex]7.87 \times 10^{-19}[/tex] J

number of photons = [tex]1.50 \times 10^{22}[/tex] photons

Therefore, the lamp emits [tex]1.50 \times 10^{22}[/tex] photons in one second.

Find the quantity of mercury atoms that release a photon every second. The number of mercury atoms is equal to the number of photons released by the lamp since each photon represents the emission of one mercury atom:

number of mercury atoms = number of photons

number of mercury atoms = [tex]1.50 \times 10^{22}[/tex]  atoms

As a result, during one second of operation, the low-pressure mercury-vapor lamp emits [tex]1.50 \times 10^{22}[/tex] mercury atoms.

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what is a push or pull that can change the motion of an object?

Answers

Answer: well simply it is A force.

Explanation: so my friend A force is any push or pull that causes an object to move, stop, or change speed or direction therefore the answer is a force.

why does slow increase of force break top string but fast incrase of force break lower string

Answers

When a slow increase of force is applied to the lower string, the tension in the top string gradually increases due to the weight of the object it is supporting. As the tension in the top string increases, it eventually reaches a point where it can no longer handle the strain and breaks.

However, when a fast increase of force is applied, the tension in the lower string increases sharply and quickly. This sudden increase in tension is too much for the lower string to handle, causing it to snap before the top string can reach its breaking point. The top string is not subjected to the same rapid increase in tension, so it does not experience the same sudden force and is therefore able to withstand the strain for a longer period of time.

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for object 1 to have a higher absolute temperature than object 2, object 1 must have a —

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"For object 1 to have a higher absolute temperature than object 2, object 1 must have a higher average internal kinetic energy."

The temperature of an item on a scale where 0 is assumed to be absolute zero is known as its absolute temperature, also known as thermodynamic temperature. The Kelvin and Rankine gauges measure absolute temperature. The temperature at which a machine has the least amount of energy is called absolute zero.

These molecules and atoms move more rapidly when something is heated, providing it with more thermal energy. Compared to frigid water, hot water has more thermal energy. Molecules and atoms in colder things move more slowly and have less thermal energy than those in warmer ones.

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firemen are shooting a stream of water at a burning building using a high-pressure hose that shoots out the water with a speed of 25.0 m/s as it leaves the end of the hose. once it leaves the hose, the water moves in projectile motion. the firemen adjust the angle of elevation α of the hose until the water takes 3.00 s to reach a building 45.0 m away. you can ignore air resistance; assume that the end of the hose is at ground level.

Answers

The firemen should adjust the angle of elevation of the hose to 41.1 degrees in order to hit the building 45.0 m away in 3.00 s.

We can use the equations of motion to solve this problem. We know that the initial velocity of the water stream is 25.0 m/s and that it moves in projectile motion. We need to find the angle of elevation α that will allow the water to reach a building 45.0 m away in 3.00 s.

Let's define the x-axis to be horizontal and the y-axis to be vertical. The initial velocity of the water stream can be broken down into its x and y components:

vx = v cosα = 25.0 cosα

vy = v sinα = 25.0 sinα

where v is the magnitude of the initial velocity.

Using the equation of motion for the x-direction, we can find the time it takes for the water to reach the building:

x = vx t

45.0 = 25.0 cosα t

t = 45.0 / (25.0 cosα)

Using the equation of motion for the y-direction, we can find the angle of elevation:

y = vy t - 1/2 g t^2

0 = 25.0 sinα (45.0 / (25.0 cosα)) - 1/2 (9.81) (45.0 / (25.0 cosα))^2

0 = 45.0 tanα - 1/2 (9.81) (45.0 / 25.0)^2

tanα = (1/2) (9.81) (45.0 / 25.0)^2 / 45.0

α = tan^-1((1/2) (9.81) (45.0 / 25.0)^2 / 45.0) = 41.1 degrees

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if you wanted to find iron and sulfur on the moon, where would you look:a) inside the moon's cratersb) in the maria, or seasc) inside the moon's cored) on top of the moon's mountains

Answers

The most likely place to find iron and sulfur on the Moon would be in the maria, or seas, which are large, dark, flat areas on the Moon's surface that were formed by ancient volcanic eruptions.

The Moon's maria are vast, dark, flat plains on its surface that are believed to have formed billions of years ago from ancient volcanic eruptions. Basaltic rocks, which are rich in iron and sulfur, are the main constituent of the maria. These rocks were formed when magma from the Moon's interior flowed onto surfaces, cooled and solidified.

The maria are particularly interesting to scientists because they provide a glimpse into the Moon's volcanic history, which has been important in shaping its current landscape. They also contain a rich diversity of minerals, including iron and sulfur, which can provide valuable insights into the Moon's composition and geologic processes.

Exploring the maria for these and other minerals could also be useful for future human missions to the Moon, as it could potentially provide a source of resources for in-situ resource utilization. For example, iron and sulfur could be used to create building materials and other products needed for lunar exploration and eventual settlement.

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Marissa and her science partner are working in their school’s science lab. Marissa’s partner shows her a

a thermometer that was heated to 100° C. Marissa knows that this thermometer most likely just read the

temperature of _________.



a. A glass of water c. A pot of boiling water

b. A bowl of still water d. A melting ice cube

Answers

Marissa knows that this thermometer most likely just read the temperature of A pot of boiling water.

c. A pot of boiling water.

Water boils at 100°C (at sea level and standard atmospheric pressure), so a thermometer that has been heated to 100°C is most likely measuring the temperature of boiling water. Therefore, the correct answer is (c) a pot of boiling water.

A system that is open to its surroundings can trade both matter and energy. A pot of boiling water is an example of an open system since a burner generates heat and loses substance in the form of water vapour when the water boils. A closed system can exchange energy with its surroundings but not matter.

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how to convert pascals to atm

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To convert pascals (Pa) to atmospheres (atm), you can use the following conversion factor: 1 atm = 101325 Pa

Pascal (symbol: Pa) is the unit of pressure in the International System of Units (SI). It is defined as the force of one newton acting over an area of one square meter.

In other words, the pascal is a measure of the pressure or stress on a surface that results from a force being applied uniformly over that surface. For example, if you apply a force of 100 newtons over an area of 1 square meter, the pressure would be 100 pascals (since 1 Pa = 1 N/m^2).

The pascal can also be expressed in terms of other units, such as the bar (1 bar = 100,000 Pa) or the atmosphere (1 atm = 101,325 Pa). The pascal is commonly used in many fields of science and engineering, including fluid mechanics, aerodynamics, and material science. It is also used to express other physical quantities such as stress, strain, and modulus of elasticity.

This means that one atmosphere is equal to 101325 pascals. To convert pascals to atmospheres, you can divide the pressure value in pascals by 101325.

For example, to convert 500000 Pa to atm:

500000 Pa / 101325 = 4.93 atm (rounded to two decimal places)

Therefore, 500000 Pa is approximately equal to 4.93 atm.

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how to 3600 seconds to minutes?

Answers

3600 seconds to minutes is equal to 60 minutes which is equal to an hour. Minutes are a unit of time, measured in increments of 1/60th of an hour. One minute is equal to 60 seconds.

The conversion from seconds to minutes can be calculated by dividing the number of seconds by 60.

Formula:

Minutes = Seconds ÷ 60

For 3600 seconds:

Minutes = 3600 ÷ 60

Minutes = 60 minutes

Time is a measure of the duration, between two events or points in time. It is often defined as the indefinite continued progress of existence and events that occur in an apparently irreversible succession from the past, through the present, to the future.

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how many drops in a ml

Answers

Approximately 20 drops are there in 1 mL of a liquid.

The number of drops in a milliliter (ml) of liquid depends on various factors such as the size of the dropper or the viscosity of the liquid. However, a general approximation used in the medical field is that there are approximately 20 drops in 1 mL of liquid for a standard dropper and a liquid with medium viscosity, such as water.

This is an approximation and the actual number of drops can vary based on the specific liquid and dropper used. Additionally, some droppers are designed to deliver a specific volume of liquid per drop, which can be different from the standard approximation.

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--The complete question is, How many drops of liquid are in a ml?--

A stone is dropped from the top of a tall building and at the same time another stone is thrown vertically upwards from the ground level with a velocity of 20m/s. The stones meet at exactly 5s after their release. Calculate the height of the building? (g=10m/s²)​

Answers

The height of the building is 42.4 meters.

What is  the height of the building?

Let's call the height of the building "h". We can use the following kinematic equations to solve for "h":

For the stone that is dropped from the top of the building:

h = (1/2)gt² (Equation 1)

For the stone that is thrown upwards from the ground:

y = vt - (1/2)gt² (Equation 2)

where;

y is the distance travelled by the stone upwards from the ground andv is the initial velocity of the stone (which is 20 m/s in this case).

We know that the two stones meet at exactly 5s after their release. This means that the distance travelled by the stone thrown upwards from the ground is equal to the height of the building, i.e.,

y = h

We can substitute this equation into Equation 2 and rearrange it to solve for "t":

h = vt - (1/2)gt²

h = 20t - (1/2)gt²

t = (2h/g - 20)/(-1) (Equation 3)

Now we can substitute Equation 3 into Equation 1 and solve for "h":

h = (1/2)g((2h/g - 20)/(-1))²

h = (1/2)g(2h/g - 20)²

h = (1/2)g(4h²/g² - 80h/g + 400)

Simplifying this equation by multiplying everything by 2g and moving all the terms to one side, we get:

4h² - 160h - 400 = 0

Solving this quadratic equation using the quadratic formula, we get:

h = (160 ± sqrt(160² + 4(4)(400))) / (2(4))

h = (160 ± sqrt(32,000)) / 8

We can ignore the negative solution, so:

h = (160 + 178.88) / 8

h = 42.4 meters

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how the daily conditions in the earth's atmosphere?

Answers

During day, atmosphere gets warm causing air to rise and circulate and at night it cools down and radiates heat back into space leading to stability.

The daily conditions in the Earth's atmosphere are complex and variable, influenced by a range of factors including temperature, pressure, humidity, and wind patterns. Understanding these conditions is essential for predicting and responding to weather events and for developing strategies to mitigate the impact of climate change on the planet.

The Earth's atmosphere is the layer of gases that surrounds the planet and plays a crucial role in supporting life. The daily conditions in the Earth's atmosphere can vary depending on various factors, such as the time of day, location, and weather patterns.

During the day, the atmosphere experiences warming due to the energy from the sun, which causes the air to rise and circulate, leading to the formation of clouds and other weather phenomena. The intensity of the warming depends on the angle of the sun's rays and the amount of cloud cover, which can affect the temperature and humidity levels.

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What medication is contraindicated with sulfamethoxazole? which of the following are found on the balance sheet? (select all that apply.) multiple select question. a. unearned revenue b. dividends c. supplies expense d. accrued expenses payable d.supplies What is the purpose of measuring the magnetosphere using mms? Which of the following is an activity associated with experience-dependent brain growth? A) writing a poem. B) singing a song. C) imitating facial expressions What is the answer to this what would the slaveholders like the slaves to do on the sabbath? why is this ironic? The excerpt most directly reflects which of the following trends?Choose 1 answer:A European adoption of useful aspects of indigenous culturesBindigenous military resistance to European encroachmentcompetition between European powers for natural resourcesshrinking Spanish influence in North America after 1500 A nurse observes that a patient admitted for trauma is lethargic with PaO2 57 mmHg. The presence of which other factor(s) should lead the nurse to anticipate endotracheal intubation? Give one reason why Mr. Anderson's heart rate changes between mile 2 and mile 3. Use the heart rate and elevation graphs as your resources.HELP ASAP how did both southern and northern racial attitudes shape reconstruction Group the electronic configurations of neutral elements in sets according to those you would expect to show similar chemical properties. Note that as long as the configurations are grouped correctly with regard to each other, it does not matter which set you assign to each group. Set A Set B Answer Bank 1:22:2 182 1922s22p03823p64323204p2 1322322p03823p 4323d"4p65324d05p2 1922,22p3:23p6432 1.322s22p 3,23p64323 5p6s2445d6p2 How might the capital's location have been an advantage for the empire?Its location between two seas meant that it could serve as a center for trade.Its location far away from bodies of water forced it to remain isolated from neighboring states.Its location secured by mountains made it impossible to attack. [6] Rock Co.'s financial statements had the following balances at December 31: Infrequently occurring gain $ 50,000 Foreign currency translation gain 100,000 Net income 400,000 Unrealized gain on available-for-sale debt securities 20,000 What amount should Rock report as comprehensive income for the year ended December 31? A. $400,000 B. $420,000 C. $520,000 D. $570,000 find the measure of each marked angle The length of this rectangle is 2 3/4 feet. The width is 8 1/2 feet. what is the area of the rectangle in sq feet What conditions made profitable farming increasingly challenging during the Gilded Age?a.the lack of access to technologyb.westward expansion that devalued the landc.a steep reduction in the demand for cropsd.the high rates railroads charged farmers to transport their crops what is the formal charge of a sulfur atom that forms four bonds and has one lone pair? When a carbonated beverage is sealed, it is: Select the correct answer below: a) unsaturated with carbon dioxide b) saturated with carbon dioxide c) supersaturated with carbon dioxide d) saturated with oxygen Which of these was an effect of the Industrial Revolution? (Click all that apply)Question 2 options:- growth of new businesses in Great Britain- increased organization of workers- English settlement of the New World- increased competition between industrialized countries - the search for new sources of raw materials and new marketsthere is 4 correct answers What are the 3 rules for apostrophes?