how to convert c to k

Answers

Answer 1

The Kelvin scale is not random, but it is organized so its zero point is absolute zero. Here is the Celsius to kelvin conversion, T = Tc + 273.15. The Kelvin scale is conceived so that one Celsius degree and one kelvin are precisely the same.

The Kelvin (K) is the official metric unit of temperature. See there is no "degree" with the kelvin. For instance, 4K is called "four Kelvin's". The Celsius temperature scale is illustrated by International understanding in terms of two fixed points; the ice point and the steam point. The temperature of the ice point is defined as 0°Celsius and the steam point as 100°Celsius. Accordingly, water freezes at 273 Kelvins, it ensues that 0 degrees Celsius equals 273 Kelvins and that 0 kelvins equivalents minus 273 degree Celsius.

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Related Questions

what does experimental data help reveal?

Answers

experimental results assist in illuminating the experiment's accuracy, the data collected in both quantitative and qualitative ways.

In order to cause and assess change or to create difference when a variable is changed, experimental data are gathered by active researcher intervention. Data from experiments are frequently projectable to a broader population and enable the researcher to identify a causal relationship. Errors are found and rejected using a statistical analysis of experimental data. The inaccuracies are due to measurement system faults or human error, such as choosing the incorrect experimental design. In science and engineering, experimental data are results from measurements, tests, experimental designs, or quasi-experimental designs. In clinical research, every piece of information generated comes from a clinical trial. The variables that affect findings are firmly under the control of researchers. The subject has no bearing on how well an experiment works. It can be used by anyone for academic study. Results are particular.

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Which one of the following statements is a consequence of charge being conserved?
a) The difference between the number of positive and negative charges does not change for a given system.
b) If you examine a system at different times, the total number of charges will change.
c) Energy within the system is also conserved.
d) The positive and negative charges within a system must be quantized.
e) The numbers of electrons and protons for a given system cannot change.

Answers

Answer:

a) total charge on a system is unchanged without the influence of an outside charge acting on the system.

Charge (left hand side) = Charge (right hand side) unless there is an outside disturbance that will change the net charge on the system.

Enclosed charge can take different forms - protons, electrons, neutrons, anti-particles, etc,, but the total charge is a constant within a system without an outside force adding or subtracting total charge on the system.

Which star has the lowest luminosity?

Answers

Answer:

Rigel

Explanation:

Because it has the lowest abslout magnitude.

The place the Sun stops its northward motion along the ecliptic is the:A) equator. B) prime meridian. C) summer solstice. D) vernal equinox. E) node of the ecliptic.

Answers

The place the Sun stops its northward motion along the ecliptic is the Summer solstice. The places were the Sun crosses the equator are called the: Equinoxes.

What is motion and example?

The free movement of a body with respect to time is known as motion. For example-the fan, the dust falling from the carpet, the water that flows from the tap, a ball rolling around, a moving car etc. Even the universe is in continual motion.

Why is motion so important?

Motion strengthens your muscles to better support your body. It also provides movement to your joints and strengthens your bones. In addition, motion provides a release of hormones that makes you feel good, so it positively affects your mental health.

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In the compound pulley, how many Newtons of force are applied to the load if 200 Newtons of effort force are applied to the pulley?

Answers

The requried load will have 400 Newtons of force applied to it, even though only 200 Newtons of effort force are used to lift it.

What is load distribution in compound pully?

In a compound pulley, the load is lifted by multiple pulleys that are arranged in a certain way to increase the mechanical advantage. The mechanical advantage of a pulley system is determined by counting the number of strands of the rope that support the load.

Assuming an ideal, frictionless pulley system, the mechanical advantage of a compound pulley with two pulleys is 2. This means that the load is lifted with twice the force of the effort force.

So if 200 Newtons of effort force are applied to a compound pulley with a mechanical advantage of 2, the load will be lifted with a force of 2 x 200 Newtons, or 400 Newtons. Therefore, the load will have 400 Newtons of force applied to it, even though only 200 Newtons of effort force are used to lift it.

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Which species does not exhibit paramagnetism? (a) N2
(b) O2
(c) CO
(d) NO

Answers

The correct Answer is Option (b) O2 does not exhibit Para-magnetism. Because, Para-magnetism is a property exhibited by substances that have unpaired electrons, which are attracted to an external magnetic field.

N2, CO, and NO all have unpaired electrons and exhibit Para-magnetism. However, O2 has only paired electrons, which makes it diamagnetic and not attracted to an external magnetic field. In paramagnetic substances, the individual atoms or molecules have unpaired electrons, which create a magnetic moment that aligns with the applied magnetic field. Hence (b) is the correct Option.

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2 IS MOT A heater in an electrical circuit has a current of 5 A passing through it and a potentia difference of 240 V across it. What is the power of the heater in cents​

Answers

Answer:

To calculate the power of the heater, we can use the formula:

Power = Current x Voltage

In this case, the current is 5 A and the voltage is 240 V, so we have:

Power = 5 A x 240 V

Power = 1200 watts

Explanation:

To convert watts to cents, we need to know the cost of electricity in cents per unit of energy (usually measured in kilowatt-hours, or kWh). For example, if the cost of electricity is 15 cents per kWh, then the cost of running a 1200 watt appliance for one hour would be:

1200 watts = 1.2 kilowatts

1.2 kilowatts x 1 hour = 1.2 kilowatt-hours

1.2 kilowatt-hours x 15 cents/kWh = 18 cents

So the cost of running this heater for one hour would be 18 cents, assuming a cost of 15 cents per kWh.

To accelerate to high speeds quickly, a racing car is built with a very powerful engine and a body with very little mass. Which newtons laws is used and explain please

Answers

The situation described in the question can be explained by Newton's Second Law of Motion, which states that the acceleration of an object is directly proportional to the force applied to the object, and inversely proportional to its mass. This law is expressed by the following equation:

F = ma

where F is the net force applied to an object, m is the mass of the object, and a is the resulting acceleration.

In the case of the racing car, a powerful engine produces a large net force that is applied to the car. Because the mass of the car is very small, the acceleration produced by this force is correspondingly very large. This allows the car to accelerate very quickly to high speeds.

This is also related to Newton's First Law of Motion, which states that an object at rest will remain at rest, and an object in motion will remain in motion at a constant velocity, unless acted upon by an external force. In the case of the racing car, the powerful engine provides the external force needed to overcome the car's inertia and get it moving. Once the car is in motion, it will continue to move at a constant velocity unless another force, such as friction or air resistance, acts to slow it down.

Please help me I’m really struggling

Answers

Pushes, the last one. You are doing great!

what is carbon dioxide compound name

Answers

The carbon in organic substances is changed into carbon dioxide by non-photosynthetic organisms.

The method by which organisms that develop by photosynthetic means, such as plants and algae, transform inorganic carbon molecules (usually carbon dioxide) into organic carbon compounds Carbon may move from one reservoir to another through a variety of activities, such as photosynthesis, respiration, and combustion. The primary generation of ATP is powered by the considerable quantity of energy produced during the oxidation of biological fuels in the presence of an inorganic electron acceptor, such s oxygen, during the process of cellular respiration. In order to convert biochemical energy for food ito a compound known as adenosine triphosphate,  series of metabolic activities known as cellular respiration are carried out inside of cells.

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The complete  question follow

What name is given to organisms that convert the carbon in organic compounds into carbon in carbon dioxide?

Use the interactive to determine the specific heat of the mystery metal. The specific heat of water is 4. 184 j/g⋅°c

Answers

The identity of the mystery metal is most likely lead.

What is specific heat?

The amount of heat energy required to raise the temperature of one unit of mass of a substance by one degree Celsius is established as specific heat (or one Kelvin). It is a physical property of a substance that has been usually represented by the symbol "s".

The specific heat of a substance depends on its chemical composition and structure and can vary widely between different materials.

To calculate the specific heat of the mystery metal, we can use the equation:

q = m * s * ΔT

where q is the heat absorbed or released, m is the mass of the substance, s is the specific heat of the substance, and ΔT is the change in temperature.

In this case, we can assume that the heat lost by the gold block is equal to the heat gained by the water, so we can write:

m_gold * s_gold * ΔT_gold = m_water * s_water * ΔT_water

where m_gold and s_gold are the mass and specific heat of the gold block, ΔT_gold is the change in temperature of the gold block, and s_water is the specific heat of water.

Solving for s_gold, we get:

s_gold = (m_water * s_water * ΔT_water) / (m_gold * ΔT_gold)

Plugging in the given values, we get:

s_gold = (64.000 g * 4.184 J/g⋅°C * (25.78°C - 25.00°C)) / (38.600 g * (25.78°C - 25.00°C))

s_gold = 6.962 J/g⋅°C

Comparing this value to the table of specific heats given, we see that it is closest to the specific heat of lead (0.130 J/g⋅°C). Therefore, the identity of the mystery metal is most likely lead.

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The complete question is given as follows:

A group of students is conducting an investigation of a circuit with one battery and one resistor in order to find the resistance of the resistor. They have collected voltage data, and are planning to measure current next. How should they measure current, and what relationship would they expect to find? Trial Voltage Across Resistor Current Through Resist 1 1.5 V N 3.0 V 3 9.07 The students should measure the current with an ammeter connected in series. They should find that as voltage increases, current increases proportionally. The students should measure the current with an ammeter connected in parallel. They should find that as voltage increases, current decreases proportionally. The students should measure the current with an ammeter connected in series. They should find that as voltage increases, current decreases proportionally. The students should measure the current with an ammeter connected in parallel. They should find that as voltage increases, current increases proportionally.

Answers

Students should use an ammeter connected in series to gauge the current. Pupils should discover that current increases correspondingly with voltage.

What does the Ohm’s law state?

According to Ohm's law, the resistance between two locations has an inverse relationship to both their voltage and the current flowing through a conductor between them. In this case, the circuit has only one resistor, so the current through the resistor should be directly proportional to the voltage across it, assuming the resistance remains constant.

Therefore, by measuring the current through the resistor with an ammeter connected in series, the students should expect to find a linear relationship between the voltage across the resistor and the current through the resistor, with the slope of the line representing the resistance of the resistor according to Ohm's law.

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what is specific gravity of water?

Answers

The specific gravity of water at exactly 4°C is 1 and the density of water depends on the temperature of water.

A substance's specific gravity is determined by dividing its material's density by that of a standard liquid. The reference liquid is generally water. As a result, the specific gravity can also be explained as the relation of the material's density to water's density.

A common tool for determining a liquid's specific gravity is the hydrometer. A hydrometer is a floating bulb with measurement markers affixed to a stalk. The relative density of the two liquids can be calculated by measuring how much of the stalk is immersed in the target liquid in comparison to a reference liquid.

Another tool for determining a liquid's density while accounting for volume is a pycnometer. The container is made of glass, and the tight-fitting lid lets any extra liquid out. The relative density of the two fluids can be determined by comparing the overall weight of the pycnometer when it is full to the weight when it is full of a known fluid.

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how does the shape of the parachute affect the descent?

Answers

The parachute is slowed down by air resistance due to the material's enormous surface area. The larger the surface area the more air resistance and the slower the parachute will drop.

What is Air Resistance?

On Earth, we frequently take drag, also known as air resistance, for granted. We simply assume that whether we launch an aeroplane, deorbit a spacecraft, or fire a bullet from a gun, they will automatically slow down as they pass through our atmosphere. But why is this happening? How exactly does air slow down an object, whether it is falling or flying? Understanding air resistance is essential to understanding physics and a fundamental component of many scientific fields due to our reliance on air travel, our enthusiasm for space exploration, and our love of sports and lifting things into the air (including ourselves). is a component of the field of fluid dynamics.

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which wave parameter measures the time it takes to complete one cycle?

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The wave parameter that measures time to complete one cycle is called period.

Time describes how long something takes to complete. When an occurrence repeats itself, we call it periodic and refer to the amount of time it takes to do so as the period. The length of time it takes for a particle in a medium to finish one full vibrational cycle is the period of a wave.

The duration of an oscillation is its length in time.

In physics, the wavelength is the extent over which a periodic wave repeats, or its spatial period.

Time describes how long something takes to complete. When an occurrence repeats itself, we call it periodic and refer to the amount of time it takes to do so as the period. The length of time it takes for a particle in a medium to finish one full vibrational cycle is the period of a wave.

The time interval, expressed in seconds, between two waves as they travel through a stationary point is known as the wave period.

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when you step outside and feel the heat of the sun on your skin which form of heat transfer is this?

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When you step outside and feel the heat of the sun on your skin, this is an example of heat transfer by radiation.

Radiation is the transfer of heat through electromagnetic waves, which can travel through a vacuum without the need for a medium. The sun emits electromagnetic waves, including infrared radiation, which can travel through space and reach the Earth's surface. When these waves strike your skin, they transfer their energy to your body, making you feel warm or hot.

The other two forms of heat transfer are conduction and convection. Conduction is the transfer of heat through direct contact between two objects, such as touching a hot stove. Convection is the transfer of heat by the movement of a fluid, such as the movement of warm air rising and cool air sinking.

However, in the case of feeling the heat of the sun on your skin, neither conduction nor convection is involved as there is no direct contact or fluid movement between your skin and the sun. Therefore, the heat transfer mechanism involved is radiation.

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A mug slides across a horizontal counter with initial speed v.It slides off the 0.86m high counter and lands 1.4m from the base.What was its initial speed?A)0.18 m/sB)0.43 m/sC)0.58 m/sD)2.39 m/sE)3.34 m/sHint: Given:vyi=0Δy=-0.86mimplied:ay=-9.8m/s2, ax=0Δx=1.4mAsked: vxi=?Formulas:vx= constant since ax=0Δx=vx Δt,1.4m=vx=ΔtWe need to find Δt using the vertical motionΔy=-(1/2)g Δt2, Δt=SQRT (2*0.86/9.8)secondsvx=1.4m/Δt

Answers

I'll get the Vx by dividing them, which is equal to the V initial of the... as it falls off the counter and lands 1.4 metres from the base.

What is Quadratic Formula?

The quadratic formula in elementary algebra is a formula that gives the solution(s) to a quadratic equation. In addition to the quadratic formula, there are various methods for solving quadratic equations, including factoring (direct factoring, grouping, and the AC technique), completing the square, graphing, and others. In the literature, there are numerous ways to derive the quadratic formula. The common one uses the finishing the square method in a straightforward manner. Different approaches can be simpler in some cases than finishing the square and can also provide intriguing insights into different mathematical topics.

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All plants on Earth can do photosynthesis to make their own food

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False, all plants on Earth cannot do photosynthesis to make their own food

Do all plants on Earth do photosynthesis?

While most plants on Earth do use photosynthesis to produce their own food, there are some plants that do not.

For example, some parasitic plants obtain their food by attaching themselves to other plants and absorbing their nutrients, and some carnivorous plants obtain their nutrients by trapping and digesting insects and other small prey.

Additionally, some non-photosynthetic bacteria and archaea are capable of producing their own food through other means such as chemosynthesis.

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What is the approximate base of the cumulus clouds if the surface air temperature at 1,000 ft MSL is 70 F and the dewpoint is 48 F?
a) 4,000 ft MSL
b) 5,000 ft MSL
c) 6,000 ft MSL

Answers

c) 6,000 ft MSL is the approximate base of the cumulus clouds if the surface air temperature at 1,000 ft MSL is 70 F and the dewpoint is 48 F.

This is the mean elevation of the ocean's surface. The accumulation of water from melting land-based glaciers and glaciers, as well as the augmentation of seawater as it warms, are the primary causes of global mean sea level rise.

The Kanchenjunga peak has been India's tallest mountain, rising over 8.5 thousand meters above sea level. It has five peaks and borders Nepal and India. This one was preceded by Nanda Devi, who stood at approximately 7.8 thousand meters.

MSL is an abbreviation for mean sea level. It is used as one of many altitude determinants by both aircraft and drone pilots. It is, however, not a standard measure that defines the space above.

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What do you think would have changed if all the scientists had worked closely together to figure out the best way to arrange the periodic table? Do you think collaboration is always the best answer?

Please help I really need it done today !!!!!!

Answers

When individual creativity and innovation are highly prized or when there are significant ideological or philosophical gaps between the participants, collaboration may not be appropriate.

What, in your opinion, can be learned from the periodic table that is the most significant?

Scientists easily look up information about an element, such as its atomic mass and chemical symbol, using the periodic table. The arrangement of the periodic table allows scientists to spot patterns in element

characteristics like electronegativity, ionization energy, and atomic radius.

What do you consider to be its most crucial components?

About 25 of the known elements, according to scientists, are necessary for life. Almost 96% of the human body is made up of just four of these: carbon (C), oxygen (O), hydrogen (H), and nitrogen (N).

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Five balls move through the air as shown in the figure . All five have the same size and shape. Air resistance is not negligible. Rank in order, from largest to smallest, the magnitudes of the accelerationsa_{\rm{a}}toa_{\rm{e}}. Some may be equal.

Answers

The magnitudes of the accelerations aₐ to aₑ of the five balls can be ranked as follows:

aₑ > aₔ > aₒ ≈ aₘ > aₐ.

The five balls in the air experience different magnitudes of acceleration due to air resistance and gravity. The ball labeled "e" experiences the largest acceleration as it is falling due to gravity and also experiencing air resistance. The ball labeled "a" experiences the smallest acceleration as it moves perpendicularly through the air. The other three balls, labeled "o", "m", and "q", experience intermediate accelerations due to differences in their mass and surface area. The ranking of the magnitudes of the accelerations of the five balls, from largest to smallest, is aₑ > aₔ > aₒ ≈ aₘ > aₐ.

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calculate approximately how long it takes light to travel from the sun to pluto

Answers

It takes approximately 5.5 hours for light to travel from the Sun to Pluto

The distance from the Sun to Pluto varies depending on the positions of the two objects in their orbits, as both the Sun and Pluto are constantly moving. However, on average, the distance from the Sun to Pluto is about 5.9 billion kilometers or 3.7 billion miles.

The speed of light is approximately 299,792 kilometers per second or 186,282 miles per second.

Using these values, we can calculate that it takes approximately 5.5 hours for light to travel from the Sun to Pluto

5.9 billion km ÷ 299,792 km/s

=> 19710 seconds

=> 5.5 hours.

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how many degrees does a bend change the direction of flow?

Answers

A bend changes the direction of the flow of fluids by 45 or even 90 degrees when it is used.

A bend is a more common word for steel pipe elbows that are used in plumbing systems. It is a very important part of the pressure piping system that is used to change the direction of the flow of the fluid. These are used to connect two different pipes with the same or even different nominal diameters.

In doing so, we change the direction of the flow of the fluid by a certain degree of the direction of 45 or 90 degrees.

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Three resistors are connected in series across a battery. The value of each resistance and its maximum power rating are as follows: 6.7Ω and 29.6 W, 44.9Ω and 9.35 W, and 16.7Ω and 14.8 W. (a) What is the greatest voltage that the battery can have without one of the resistors burning up? (b) How much power does the battery deliver to the circuit in (a)?

Answers

a)The greatest voltage will be 29.25 V.

b) The power will be 16 W.

What is electric power?

The rate at which electrical energy is transferred by an electric circuit is referred to as its power. The watt is the SI unit of power.

The total resistance R of the three resistors in series is:

R = 6.7 + 30.4 + 16.3

R = 53.4 Ω

 

a) The greatest current I is the one that will burn the resistor with a lower power rating, which is 9.12 W:

Pmax = I²R

30.4 = 9.12I²

I = 0.54 A

The voltage is calculated as:-

Vmax = IR

Vmax = 0.54 x 53.4

Vmax = 29.25 V

b) When the current is 0.54 A, the power is:

P = I²R

P = 53.4 x 054²

P = 16W

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what is table of laplace transforms

Answers

The table of Laplace transforms is a reference table that contains a list of common functions and their corresponding Laplace transforms.

The Laplace transform is a mathematical tool that is used to convert a function in the time domain into a function in the s-domain, which is a complex frequency domain. This transformation is useful in solving linear differential equations and other mathematical problems.

The table of Laplace transforms typically includes the most commonly used functions, such as exponentials, trigonometric functions, and polynomials, along with their Laplace transform formulas. The table may also include some basic properties of the Laplace transform, such as linearity, time shifting, and differentiation, which can be used to simplify the process of solving problems.

The table of Laplace transforms is an important tool for students and practitioners of mathematics, engineering, physics, and other fields that use the Laplace transform in their work.

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What is accommodation?
a. A concept or framework that organizes and interprets information.
b. Interpreting our new experiences in terms of our existing schemas.
c. Adapting our current understandings to incorporate new information.
d. All the mental activities associated with thinking, knowing, remembering, and communicating.

Answers

Accommodation is the process of adapting our current understandings to incorporate new information. Option c is correct answer.

Accommodation is a term used in Jean Piaget's theory of cognitive development. It is the process of modifying or changing our existing mental schemas or structures to incorporate new information that does not fit into our current understanding.

In contrast to accommodation, assimilation is the process of interpreting new experiences in terms of our existing schemas. It involves incorporating new information into existing schemas without necessarily modifying them.

In summary, accommodation is a cognitive process that allows us to adapt and expand our mental structures to incorporate new information and experiences. It is a key component of Piaget's theory of cognitive development. Hence correct answer is c.

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A tight guitar string has a frequency of 540 Hz as its third harmonic, what will be its fundamental frequency if it is fingered at a length of only 61% of its original length?f= ? Hz

Answers

The fundamental frequency of the guitar string when it is fingered at a length of only 61% of its original length is approximately 295.08 Hz.

The fundamental frequency of a guitar string is determined by its length, tension, and density. When a string is plucked or strummed, it vibrates at different frequencies or harmonics. The frequency of the third harmonic of a guitar string is three times the fundamental frequency.

In this case, we are given that the frequency of the third harmonic is 540 Hz. Therefore, we can find the fundamental frequency by dividing this value by three.

540 Hz / 3 = 180 Hz

However, the string is fingered at a length of only 61% of its original length. This means that the new length of the string is 0.61 times the original length. The fundamental frequency of the string is inversely proportional to its length, so we can use this relationship to find the new fundamental frequency:

f = (v / (2L)) * n

where f is the frequency, v is the velocity of the wave on the string, L is the length of the string, and n is the harmonic number.

Since we are looking for the fundamental frequency (n = 1), we can simplify the equation to:

f = v / (2L)

Put values:

f = (v / (2 * 0.61L))

Since the tension and density of the string remain the same, we can assume that the velocity of the wave on the string remains constant. Therefore, we can simplify further:

f = k / L

where k : constant.

Now we can find the new fundamental frequency by dividing the original frequency by the new length:

f = 180 Hz / 0.61 = 295.08 Hz

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A Celcius and a Fahrenheit thermometer are dipped in boiling water. The water temperature is lowered until the Fahrenheit thermometer registers fall of 72. The fall in temperature in Celcius scale will be

(a) 40 °C

(b) 70°C

(c) 50 °C

(d) 22. 2 °C

Answers

40°C is the fall in temperature in Celsius scale. Option A is correct choice.

The conversion formula between Celsius and Fahrenheit scales,

F = (9/5)*C + 32

where F is the temperature in Fahrenheit and C is the temperature in Celsius.

Let's assume that the boiling point of water is 100°C in the Celsius scale and 212°F in the Fahrenheit scale. When the thermometers are dipped in boiling water,

Fahrenheit thermometer: F = 212°F

Celsius thermometer: C = 100°C

The temperature of the water until the Fahrenheit thermometer registers a fall of 72°F,

F = 212°F - 72°F = 140°F

Use the conversion formula,

C = (5/9)(F - 32) = (5/9)(140°F - 32) = 60°C

Therefore, the fall in temperature in Celsius scale is,

100°C - 60°C = 40°C

Answer is (a) 40°C.

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Speed of sound temperature based problem. What is the speed of sound at 21 ∘C? For a frequency of 3 kHz, how large do you expect the wavelength to be?
__________________________ m/s (express your answer in integral form)
___________________________ m (express your answer with 2 decimal place)

Answers

The speed of sound at 21∘C is approximately 344.1 m/s. For a frequency of 3 kHz, the wavelength is approximately 0.11 meters.

The formula for the speed of sound in air is given by,

v = 331.5 + 0.6T

where v is the speed of sound in meters per second, and T is the temperature in degrees Celsius.

Plugging in T = 21∘C,

v = 331.5 + 0.6(21) = 331.5 + 12.6 = 344.1 m/s

The wavelength of a sound wave is,

λ = v/f

where λ is the wavelength in meters, v is the speed of sound in meters per second, and f is the frequency in hertz.

Plugging in v = 344.1 m/s and f = 3 kHz (or 3000 Hz),

λ = 344.1/3000 = 0.1147 m

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we now discuss an analysis of translational motion of objects in terms of the quantities ____ and ____

Answers

We now discuss an analysis of translational motion of objects in terms of the quantities position and velocity.

Displacement refers to the distance between the initial and final position of an object, including direction. Velocity, on the other hand, refers to the rate of change of displacement over time, including direction. These two quantities are fundamental in describing the motion of objects in space, and their understanding is crucial in a wide range of applications, from physics to engineering.

By analyzing the displacement and velocity of an object, we can determine important properties such as acceleration, momentum, and energy, and gain a better understanding of the physical behavior of the system in question.

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T or F: Extratropical cyclones form most rapidly when the winds aloft are weak how to chain rule formula Three examples of how you could show that you embrace diversity Lets say you have a part time job youre able to save $100 per month from your paychecks. How would you distribute the money between your 3 savings goals above. Explain your reasoning Which value for x will result in the greatest relative frequency given discrete random variable X, when [tex]X \sim B(4, \frac{1}{10})?[/tex]? x=5 x=1 x=0 x=3 What is the conversion of 5kg in pounds? what is 2/3 in decimals The least effective plan for starting to change health behavior is one that... A) Incorporates rewards for reaching goals. B) Identifies cues to behaviors. C) Makes slow, systematic changes in behavior. D) Attempts to change more than one behavior at the same time. what does reverend sykes tell scout to do after the verdict comes in? why does he do this? why does peter ask for c lai'res birth date in reverse order? how to cite a movie mla You create cells that harbor a mutation in the gene coding for the lac repressor that causes these cells to lack the lac repressor protein under all conditions. For these mutant cells, state whether the transcription with be On (high) or Off (absent or low), if the CAP activator is bound or not bound, and if the lacl repressor is bound or not boundGlucose is present and lactose is absent:Glucose and lactose are absent: Glucose is absent and lactose is present: missing values are not allowed in subscripted assignments of data frames The drama club is selling tickets to their play to raise money for the show's expenses. Each student ticket sells for $5. 50 and each adult ticket sells for $7. 50. The auditorium can hold a maximum of 140 people. The drama club must make at least $910 from ticket sales to cover the show's costs. If 66 student tickets were sold, determine the minimum number of adult tickets that the drama club must sell in order to meet the show's expenses how should the right sacral base move during right sacroiliac flexion? In which area has there been a substantial decrease in endorsement deals for NBA athletes. Shoes. Money coming into a business is called ____. OS/2 is an obsolete OS for PCs from IBM. In OS/2, what is commonly embodied in the concept of process in other operating systems is split into three separate types of entities: session, processes, and threads. A session is a collection of one or more processes associated with a user interface (keyboard, display, mouse). The session represents an interactive user application, such as a word processing program or a spreadsheet. This concept allows the personal computer user to open more than one application, giving each one or more windows on the screen. The OS must keep track of which window, and therefore which session, is active, so that keyboard and mouse input are routed to the appropriate session. At any time, one session is in foreground mode, with other sessions in background mode. All keyboard and mouse input is directed to one of the processes of the foreground session, as dictated by the applications. When a session is in foreground mode, a process performing video output sends it directly to the hardware video buffer and thence to the users screen. When the session is moved to the background, the hardware video buffer is saved to a logical video buffer for that session. While a session is in background, if any of the threads of any of the processes of that session executes and produces screen output, that output is directed to the logical video buffer. When the session returns to foreground, the screen is updated to reflect the current contents of the logical video buffer for the new foreground session. There is a way to reduce the number of process-related concepts in OS/2 from three to two. Eliminate sessions, and associate the user interface (keyboard, mouse, screen) with processes. Thus one process at a time is in foreground mode. For further structuring, processes can be broken up into threads. a) What benefits are lost with this approach?b) If you go ahead with this modification, where do you assign resources (memory, files,etc. ): at the process or thread level? why do you suppose that margot was called up on her own first? What is NaCI as a compound? what the strategy of the united states during the second-half of the vietnam war in which combat operations were to be turned over entirely to an american-trained army of south vietnam?