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Evaporation and Vapour Pressure
Q.1
Explain of the molecular level, why evaporation leads to a cooling effect!
Correct Verbatim Answer
Evaporation causes cooling because of the loss of high-energy molecules from the surface of a liquid: In any liquid, molecules are constantly moving with varying kinetic energies - some fast, some slow. higher-than-average kinetic energy overcome intermolecular forces and escape from the surface into the air as vapor. Loss of Energy: These escaping molecules take more energy with them. The average kinetic energy of the remaining molecules decreases. Temperature Drop: Since temperature is directly related to average kinetic energy, the temperature of the liquid drops, creating a cooling effect.
Properties of Liquids
Q.2
Explain why liquids with stronger intermolecular forces tend to have lower rates at of evaporation given temperature compared to the liquids with weaker intermolecular forces.
Correct Verbatim Answer
Liquids with stronger intermolecular forces tend to have lower rates of evaporation at a given temperature because more energy is required for their molecules to escape into the vapor phase. Evaporation Process: For a molecule to evaporate, it must have enough kinetic energy to overcome the intermolecular attractions holding it in the liquid. Stronger forces makes harder to escape. In liquids like water, which have strong hydrogen bonds, molecules are tightly held together. Only a few molecules at any moment have enough energy to break free. Weaker forces makes easier to escape. In liquids like acetone (with weaker dipole- dipole or dispersion forces), more molecules can escape at the same temperature.
Q.3
One feel sense of cooling under the fan after taking bath. Explain?
Correct Verbatim Answer
After taking a bath, your skin is covered with a thin layer of water. When you stand under a fan, you feel cool because of evaporation, enhanced by moving air. Evaporation of Water: Water molecules on your skin begin to evaporate into the air. Evaporation requires energy, which is taken from your body heat.* Loss of Heat Energy: The most energetic (fast-moving) water molecules escape first, reducing the average kinetic energy (and thus temperature) of your skin. Role of the Fan: The fan blows away the humid air near your skin and replaces it with drier air, which speeds up evaporation. Result: Faster evaporation means more heat is removed from your skin, making you feel cooler.
Intermolecular Forces
Q.3
What are London dispersion forces? Give examples, and discuss the factors affecting these forces.
Correct Verbatim Answer
See Q4. from theory.
Q.4
How a dynamic equilibrium is established during evaporation of a liquid in a closed vessel at constant temperature?
Correct Verbatim Answer
When a liquid is placed in a closed vessel at constant temperature, its molecules start to evaporate. Some of these vapors collide with the surface and condense back into the liquid. Over time, the rate of evaporation becomes equal to the rate of condensation - this is called dynamic equilibrium. At this point, the amount of liquid and vapor remains constant, and vapor pressure becomes stable.
Hydrogen Bonding
Q.4
Hydrogen bonding is present in (CH3)2CO and CHI H2O, NH3, molecules. Sketch structures and discuss briefly.
Correct Verbatim Answer
See QS. from theory.
Boiling Point
Q.5
The boiling point of water is different at Lahore and Murree hills. Why?
Correct Verbatim Answer
The boiling point of water depends on atmospheric pressure. Lahore is at a lower altitude with higher atmospheric pressure, so water boils at 100°C. In contrast, Murree Hills are at a higher altitude where atmospheric pressure is lower, so water boils at a lower temperature. Hence, boiling point decreases with altitude (98°C at Murree Hills). two
Q.5
Discuss the structural changes when water turns into ice. Justify the empty spaces in its crystals as compared to H2O at 4°C and lower density of ice. NUMERICALS (EXERCISE)
Correct Verbatim Answer
Q.6
Discuss significant consequences of the lower density of ice compared to liquid water in natural environments.
Correct Verbatim Answer
1. Floating of Ice: Ice is less dense than liquid water, so it floats. This forms an insulating layer on lakes and rivers in winter, preventing the water below from freezing, which helps aquatic life survive in cold climates. 2. Weathering of Rocks: When water enters cracks in rocks and freezes, it expands due to lower density. This exerts pressure on the rock, causing it to break apart over time - a process called frost weathering.
Properties of Solids
Q.6
How liquid crystals resemble liquids and solids? Give their uses in daily life.
Correct Verbatim Answer
See Q14. from theory.
Q.7
Why boiling point of a liquid increases when the external pressure rises?
Correct Verbatim Answer
Boiling occurs when the vapor pressure of a liquid equals the external pressure. When external pressure increases, the liquid needs to reach a higher temperature to make its vapor pressure match the new external pressure. Hence, boiling point increases with increasing external pressure. 08. Mention four items in which liquid crystals are used. Ans. Special liquid crystal devices can be used to diagnose the tumors and infections in the human body. The most common application of liquid crystal technology is liquid crystal displays (LCDs.). Examples of liquid crystal screens are oscillograph and TV, laptops, cell phone displays. Liquid crystals are used in TV displays, computer screens, calculators and watches. 09. How do you differentiate between crystalline solids and amorphous solids? Ans. Crystalline solids Definition: The solids which have definite regular and three dimensional geometric shapes are called crystalline solids. Example: Diamond, sodium chloride, ice, etc. Amorphous solids Amorphous solids, contrary to the crystalline do not possess solids, regular three dimensional geometrical shapes. Example: The amorphous solids are glass, wood amorphous sulphur (plastic sulphur), charcoal, coal, coke, etc. (СH3CОCH3),
Q.7
Describe the following properties of crystalline solids. (i) Geometrical shape (ii) Melting point (wii) Cleavage plan (iv) Habit of a crystal
Correct Verbatim Answer
See Q12. from theory.
Q.8
A sample of an unknown gas has a mass of 0.560g. It occupies a volume of 2.87 × 104 m at a temperature of 300K and a pressure of 1.01 X 105 Pa. Calculate the molar mass of the gas. (Gas constant, R= 8.31JK- mol). Data
Correct Verbatim Answer
M = 0: 56g V =2.87 × 104 m T = 300K P= 1.01 × 105 Pa = 1.01 × 105 Nm2 M=? R = 8.314 J mol K:' = 8.314Nm mol-1K"l Solution PV =™ RT M mRT M=- PV M= (0.56g) (8.314Nmmol 'K)(300K) (1.01x10° Nm')(2.87x104m') 1396.802 •M = g/mol-1 28.987 M = 48.18g / mol Result: The molar mass of an unknown gas is 48.18 g/mol Ans. See Q6. from theory.
Q.9
In a laboratory experiment, 150cm volatile of a , liquid was completely vaporized at 98°C and a pressure of 1.01 × 105 Pa. The mass of the vapor was found to be 0.495g. Determine the molecular mass of the liquid (R= 8.314 JK-'mol).
Correct Verbatim Answer
Data V = cm' cm? = x x m? T= 98°C = 371K P= 1.01 × 105 Pa = 1.01 × 10ºNm? m = 0.495g R = 8.314 Jmol-1K-1 = 8.314Nm mol-1K*' M=? Solution PV = ™ RT M mRT M = - PV M= (0.495g) (8.314 Nm mol K)(371K) (1.01x10° Nm?)(1.5x104m) 1526.82 M= - g/mol-1 15.15 M=100.78 g/mol Result: The molar mass of the vapors is 100.78g/mol
Q.10
Propanone propanol (CHзCH2СH2ОН) and butane (CH3CH2CH2CH3) have very similar relative molecular masses. List them in the expected order of increasing boiling points. Explain your
Correct Verbatim Answer
wer. Ans. Order of increasing boiling points Butane < Propanone < Propanol Explanation Butane has only weak London dispersion forces, so it has the lowest boiling point. Propanone has dipole-dipole interactions due group, which are to its polar carbonyl stronger than London forces. Propanol has hydrogen bonding due to the - which is the strongest OH group, intermolecular force among the three, so it has the highest boiling point
Surface Tension
Q.11
Discuss how hydrogen bonding is responsible for the relatively high surface tension of water. form strong
Correct Verbatim Answer
Water molecules hydrogen bonds with each other due to the attraction between the partially positive hydrogen and the partially negative oxygen atoms. At the surface, molecules experience unbalanced inward forces, pulling them closer together. This creates a tightly held surface layer, leading to high surface tension. Hydrogen bonding is the key force behind this cohesion among water molecules.
Q.12
What type of intermolecular forces will dominate in the following liquids? (il) Ar (i) NH3 (wii) CH:COCH3 (iv) СНзОН
Correct Verbatim Answer
(i) NH: (Ammonia): Hydrogen bonding due to N-H bonds and high electronegativity of nitrogen. (i) Ar (Argon): London dispersion forces, it's a non-polar noble gas. (wii) CH COCH: (Propanone): Dipole- dipole interactions, due to the polar carbonyl group. (iv) CHOH (Methanol): Hydrogen bonding, due to the presence of an -OH group.
Q.13
The boiling points and molar masses of hydrides of some first-row elements are tabulated below. Suggest reasons for the difference in their boiling points in terms of the type of molecules involved and the nature of the forces present between them. Molar Mass Substance Boiling Point (K) (g mol) 16 112 CH4 240 17 NH3 373 18 H2O
Correct Verbatim Answer
CH+ (Boiling point 109 K): It is a non- polar molecule with only London dispersion forces, which are weak, resulting in the lowest boiling point despite its low molar mass. NH: (Boiling point 240 K): Ammonia is a polar molecule and forms hydrogen bonds due to the presence of N-H bonds. These are stronger than dispersion forces, so NH3 has a higher boiling point than CH4. H2O (Boiling point 373 K): Water has strong bonding due to highly hydrogen electronegative oxygen and two O-H bonds, SLO BASED SHORT QUESTION ANSWERS
Properties of Gases
Q.14
Why is the rate of diffusion in liquids lower than in gases?
Correct Verbatim Answer
The rate of diffusion in liquids is the because lower than in gases intermolecular forces in liquids are stronger. movement This restricts the free of molecules. Also, the molecules in liquids are closely packed, leaving little space for fast diffusion like in gases.
Q.15
What happens to the volume of a gas when pressure is doubled?
Correct Verbatim Answer
When pressure on a gas is doubled at constant temperature, its volume becomes half This is explained by Boyle's Law (Vo 1/P). Gases are highly compressible due to the large empty spaces between their molecules.
Q.16
How do liquid molecules behave according to kinetic molecular theory? molecular
Correct Verbatim Answer
According to kinetic theory, molecules of a liquid are in constant random motion. They possess kinetic energy which increases with temperature. Their motion allows them to diffuse and flow, though slower than gases due to stronger force
Properties of Liquids
Q.17
Why are liquids able to flow?
Correct Verbatim Answer
Liquids can flow because their molecules are not fixed in place and have the ability to move past each other. Although they are closely packed, the intermolecular forces are not strong enough to completely lock them, allowing fluid motion. allowing extensive hydrogen bonding. This results in the highest boiling point, even though its molar mass is only slightly more than CH4 and NH3. The boiling point increases with the strength of intermolecular forces: London forces < Dipole-dipole < Hydrogen bonding
Q.18
How does increasing temperature affect the volume of a liquid?
Correct Verbatim Answer
When temperature is increased, the kinetic energy of liquid molecules increases, causing slight expansion. However, this expansion is very small compared to gases, as liquid molecules are already close together and face stronger intermolecular force
Non-polar instantaneous dipole-induced dipole forces due to temporary shifts in electron clouds, creating momentary dipoles that induce dipoles in neighboring molecules. increasing molecular
Q.20
How does mass affect the boiling point of noble gases and halogens?
Correct Verbatim Answer
With increasing molecular mass, the size and polarizability of atoms increase, which strengthens id-id forces, resulting in higher boiling points down the group.
Q.21
Why is iodine a solid and fluorine a gas at room temperature?
Correct Verbatim Answer
Iodine has a much higher molecular mass and size compared to fluorine, so it experiences stronger id-id forces, making it a solid, whereas fluorine remains a gas due to weaker forces.
Q.22
What are permanent dipole-dipole forces?
Correct Verbatim Answer
These are forces of attraction between the positive end of one polar molecule and the occur in negative end of another. They molecules like HCl and CHCls, where permanent partial charges are present
Boiling Point
Q.23
How does the shape or surface area of a hydrocarbon molecule affect its boiling point?
Correct Verbatim Answer
Molecules with larger or linear surface areas (like n-pentane) have stronger id-id forces and higher boiling points, while branched molecules have smaller surface areas and weaker forces.
Q.24
Why does hexane have a higher boiling point than ethane?
Correct Verbatim Answer
Hexane has a greater molecular mass and longer chain length, resulting in stronger instantaneous dipole-induced dipole forces compared to ethane, thus a higher boiling point.
Q.25
What is boiling point and when does a liquid boil!
Correct Verbatim Answer
Boiling point is the temperature at which the vapor pressure of a liquid equals the atmospheric pressure. At this point, bubbles form and rise continuously from within the liquid.
Q.26
Why is the boiling point of water higher than alcohol? Water has strong hydrogen bonding,
Correct Verbatim Answer
which means more energy is needed to overcome these forces, leading to a higher boiling point than alcohols.
Q.27
Why does water boil at a lower temperature on Mount Everest?
Correct Verbatim Answer
On Mount Everest, atmospheric pressure is lower, so water reaches its vapor pressure at a lower temperature, thus boiling at only 69°C
Hydrogen Bonding
Q.28
What conditions are necessary for hydrogen bonding to occur?
Correct Verbatim Answer
Hydrogen bonding requires: 1. A hydrogen atom covalently bonded to F, O, or N, 2. The electronegative atom must have a lone pair to attract the partially positive hydrogen.
Q.29
Why is hydrogen bonding than other considered stronger intermolecular forces? is stronger bonding
Correct Verbatim Answer
Hydrogen because it involves highly polarized covalent bonds. The strong attraction between of hydrogen and 8- electronegative atoms leads to significant intermolecular force.
Q.30
Why does water form more hydrogen bonds than ammonia or HF?
Correct Verbatim Answer
Water has two hydrogen atoms and two lone pairs on oxygen, enabling it to form two hydrogen bonds per molecule. In contrast, NH has one lone pair and HF has only one H atom, limiting their bonding capacity.
Q.31
How does hydrogen bonding affect the boiling point of water?
Correct Verbatim Answer
Due to extensive hydrogen bonding among water molecules, a large amount of energy is required to break the bonds. This makes the boiling point of water (100°C) unusually high compared to other group 16 hydrides.
Q.32
Why is ice less. dense than liquid water?
Correct Verbatim Answer
In ice, water molecules form a tetrahedral structure with empty spaces due to hydrogen bonding. This increases the volume and decreases density, causing ice to float on water.
Q.33
What is the role of hydrogen bonding in the high heat capacity of water?
Correct Verbatim Answer
Hydrogen bonding in water absorbs and stores more heat energy without a large temperature rise, giving it a high specific heat capacity, which stabilizes temperature in environments. does
Q.34
How hydrogen bonding explain the high surface tension of water?
Correct Verbatim Answer
Water molecules at the surface are strongly attracted to those beneath due to hydrogen bonding. This causes a stretched surface film, responsible for high surface tension.
Viscosity
Q.35
What is viscosity and how is it affected by hydrogen bonding in water?
Correct Verbatim Answer
Viscosity is a liquid's resistance to flow. Water's strong hydrogen bonds create viscosity internal friction, increasing compared to non-hydrogen bonding liquids like hexane.
Q.36
Why does HF have a higher boiling point than NH3 despite forming only one bond? HF forms strong hydrogen bonds due
Correct Verbatim Answer
to fluorine's high electronegatıvity. Although it can form only one bond per molecule, the strength of this bond raises its boiling point above ammonia
Surface Tension
Q.37
What is surface tension and why does it occur in liquids? Surface tension is the force that acts
Correct Verbatim Answer
along the surface of a liquid, making it behave like a stretched elastic sheet. It occurs due to unbalanced inward forces on surface intermolecular caused molecules by attractions.
Q.38
Why do water droplets form spherical shapes?
Correct Verbatim Answer
Water droplets form spheres because surface tension tries to minimize the surface area. A sphere has the smallest surface area for a given volume, hence it's the most energy-efficient shape. How does temperature affect
Q.39
surface tension?
Correct Verbatim Answer
As temperature increases, the kinetic energy of molecules increases, reducing the intermolecular attraction. This causes surface tension to decrease with rising temperature. have higher
Q.40
Why does water surface tension than alcohol or acetone?
Correct Verbatim Answer
Water has strong hydrogen bonds leading to high between its molecules, intermolecular forces. Alcohol and acetone have weaker forces, hence lower surface tension
Viscosity
Q.41
What is viscosity in liquids?
Correct Verbatim Answer
Viscosity is the resistance of a liquid to flow. It arises due to friction between adjacent layers of the liquid, where outer slower layers resist the movement of faster inner ones.
Q.42
How does temperature affect viscosity of a liquid? temperature, increasing
Correct Verbatim Answer
With molecular motion becomes faster, weakening intermolecular attractions. This results in lower viscosity, making the liquid flow more easily.
Q.43
Why is honey more viscous than water?
Correct Verbatim Answer
Honey has stronger intermolecular molecular a more complex forces and structure compared to water. This leads to greater resistance to flow, resulting in higher viscosity.
Q.44
Why is glycerine more viscous than hexane?
Correct Verbatim Answer
Glycerine can form hydrogen bonds due to its hydroxyl groups, whereas hexane is interactions. such non-polar and lacks Stronger intermolecular forces in glycerine cause higher viscosity. Evaporation and vapor Pressure
Q.45
What is evaporation and how does it cause cooling?
Correct Verbatim Answer
Evaporation is the process where high-energy molecules escape from a liquid's surface. This leaves behind low-energy molecules, lowering the liquid's temperature and causing a cooling effect.
Q.46
Why do earthenware pots keep water cool?
Correct Verbatim Answer
Earthen pots are porous, allowing water to slowly evaporate through them. The energy for evaporation comes from the water itself, lowering its temperature and keeping it cool.
Q.47
What is vapor pressure of a liquid?
Correct Verbatim Answer
vapor pressure is the pressure exerted by vapor molecules in equilibrium with their liquid at a given temperature. It occurs in a closed container where evaporation and condensation rates become equal.
Q.48
Why does vapor pressure not depend on the amount of liquid?
Correct Verbatim Answer
vapor pressure depends only on temperature and intermolecular forces. As long as equilibrium is reached, the quantity or surface area of liquid doesn't affect vapor pressure.
Q.49
What happens to the rate of condensation as surface area increases?
Correct Verbatim Answer
When surface area increases, more vapor molecules collide with the liquid surface, increasing the rate of condensation to match the evaporation rate more quickly.
Q.50
Why does petrol have higher vapor pressure than kerosene?
Correct Verbatim Answer
Petrol has weaker intermolecular forces and more volatile components compared to kerosene, resulting in a higher vapor pressure.
Q.51
How does a pressure cooker increase boiling point of water?
Correct Verbatim Answer
In a pressure cooker, vapor 1s trapped and cannot escape, raising internal pressure. This increases the boiling point of water, allowing food to cook faster.
Q.52
Why does acetone feel colder on the skin than water?
Correct Verbatim Answer
Acetone evaporates faster due to weaker intermolecular forces. Its rapid evaporation absorbs more heat from the skin, causing a greater cooling effect.
Q.53
How does temperature affect vapor pressure?
Correct Verbatim Answer
As temperature increases, molecular kinetic energy rises, increasing evaporation and vapor pressure until equilibrium is achieved at a higher level. Energetics of Phase Change What is molar heat of fusion (AH)?
Q.55
What is molar heat of vaporization (AHv)? The amount of heat required to
Correct Verbatim Answer
convert one mole of a liquid into vapor at its boiling point under 1 atm pressure. For water: AHv = 40.6 kJ/mol.
Q.56
Why is AH of water higher than that of NH or Hcl?
Correct Verbatim Answer
Because water has stronger hydrogen bonding, which requires more energy to overcome compared to the weaker forces in NH: (21.7 kJ/mol) and Hcl (15.6 kJ/mol)
Q.57
What happens to particles during fusion and vaporization?
Correct Verbatim Answer
Particles gain energy, move farther apart, and change their phase - from solid to liquid during fusion, and from liquid to gas. during vaporization. Solids and Its Properties and are solids rigid
Q.58
Why incompressible?
Correct Verbatim Answer
Because their particles are tightly packed due to strong interparticle forces, leaving no significant space for compression.
Q.59
What kind of motion do particles in a solid show?
Correct Verbatim Answer
They only vibrate about their mean positions; no translational or rotational motion occurs.
Q.60
How does temperature affect solid expansion? Temperature slightly increases
Correct Verbatim Answer
vibrational motion, but expansion negligible due to strong forces keeping the particles fixed.
Q.61
What is the main reason solids have high melting points?
Correct Verbatim Answer
Due to strong intermolecular or interatomic forces (ionic, covalent, metallic, etc.) that require high energy to break
Q.62
What is the kinetic energy of solid particles according to KMT?
Correct Verbatim Answer
Only vibrational kinetic energy, since particles cannot translate or rotate.
Q.63
Why can solids not be compressed like gases?
Correct Verbatim Answer
Because the particles are already closely packed, and the available space is minimal due to tight arrangements (maximum ~74% space occupied).
Q.64
What is the main difference between crystalline and amorphous solids! Crystalline solids have a regular,
Correct Verbatim Answer
definite geometric shape and long-range order of particles, while amorphous solids lack such regularity and typically appear as lumps or powders.
Q.65
What is a crystal lattice?
Correct Verbatim Answer
A crystal lattice is the regular, three- dimensional arrangement of ions, atoms, or molecules in space that forms the structure of crystalline solids. are the properties of
Q.66
What crystalline solids?
Correct Verbatim Answer
Crystalline solids have: • Definite geometric shape • Sharp melting points • Cleavage planes • Growth through crystallization from a saturated solution habit • A characteristic (shape) during growth.
Q.67
What happens when a crystalline solid is broken?
Correct Verbatim Answer
solids break along Crystalline specific planes known as cleavage planes, and these planes have a characteristic angle relative to each other.
Q.68
How are crystals grown? the slow
Correct Verbatim Answer
Crystals grow evaporation of a solvent or by seeding from a saturated solution, where particles arrange in a specific, orderly fashion.
Q.69
What is the habit of a crystal?
Correct Verbatim Answer
The habit of a crystal refers to the typical shape it takes when it grows under specific conditions. The shape can change if the conditions, like the presence of impurities, change. Amorphous Solids
Q.70
How do amorphous solids differ in structure from crystalline solids?
Correct Verbatim Answer
Amorphous solids do not have a regular, repeating pattern of particles. They lack the long-range order characteristic of crystalline solids.
Q.71
Do amorphous solids have sharp melting points?
Correct Verbatim Answer
No, amorphous solids melt over a wide range of temperatures rather than at a specific melting point.
Q.72
What is the main difference in between crystalline and properties amorphous solids regarding direction?
Correct Verbatim Answer
Crystalline solids are anisotropic, meaning their properties depend on the direction of measurement. Amorphous solids are isotropic, meaning their properties are the same in all directions.
Q.73
Can amorphous solids be molded into different shapes?
Correct Verbatim Answer
Yes, amorphous solids like glass can be molded and blown into various shapes due to their lack of a definite structure
Liquid Crystals
Q.74
What are liquid crystals?
Correct Verbatim Answer
Liquid crystals are substances that are neither fully liquid nor fully solid. Their molecules can move like viscous liquids but have a restricted range of motion like solids.
Q.75
What is the shape of the molecules in liquid crystals?
Correct Verbatim Answer
The molecules in liquid crystals are typically rigid, rod-like, and linear, with their length being four to eight times greater than their diameter.
Q.76
How do liquid crystals move?
Correct Verbatim Answer
Liquid crystals flow like liquids, but their motion is limited. They can spin around their long axis but cannot rotate end over end.
Q.77
How are the molecules in liquid crystals arranged?
Correct Verbatim Answer
In liquid crystals, the molecules tend to align parallel to each other along their long axis, similar to logs stacked in a pile of firewood: 078. What properties of liquid crystals resemble liquids? Ans. Liquid crystals flow like liquids and show viscosity similar to liquids, as they can move around and flow to some extent.
Q.79
What is the primary application of liquid crystals?
Correct Verbatim Answer
The main application of liquid crystals is in, electro-optic devices, such as Liquid Crystal Displays (LCDs), which modulate light electrically.
Q.80
How is the viscosity of liquid crystals?
Correct Verbatim Answer
The viscosity of liquid crystals is similar to liquids. They exhibit fluid-like behavior, although their motion is more restricted than in typical liquids.
Q.81
What optical properties do liquid crystals exhibit? show optical
Correct Verbatim Answer
Liquid crystals properties similar to crystals, as they can reflect or transmit light in a specific manner, suitable them for making display technologies.
Q.82
How are liquid crystals used to detect tumors?
Correct Verbatim Answer
Liquid crystals can be used in diagnostic devices to detect tumors because tumors often have a different temperature than surrounding tissues. The temperature difference makes the tumor detectable using cholesteric liquid crystals. are crystal liquid
Q.83
Where temperature sensors used?
Correct Verbatim Answer
Liquid crystal temperature sensors are used to identify faulty connections on circuit boards and in thermometers to detect temperature changes.
Q.84
What are some daily applications of liquid crystals?
Correct Verbatim Answer
Liquid crystals are commonly used in electronic displays, such as those in TVs, computer screens, calculators, and watches.
Q.85
How are liquid crystals applied in industrial and scientific fields?
Correct Verbatim Answer
Liquid crystals are gaining increasing importance in industrial and scientific applications, especially in electro-optic devices, where they are used to control light and display information. Molar Mass of Gases
Q.86
Calculation of Relative Molecular Mass (Mr) of a Gas? Calculation of Relative Molecular
Correct Verbatim Answer
Mass (Mr) of a Gas General gas equation can be employed to calculate the relative molecular mass of a gas whose P, T, V. and mass in grams are known. This is achieved by rearranging equation. Putting n = m/M in equation. Where m = mass in g and M= molar mass of the gas mRT PV =. M Now rearranging equation mRI M=: PV At molecular level, the molar mass becomes relative molecular mass of a compound, therefore, we can write M, = MRT Drugs
Q.87
Drugs with higher viscosity are not oxidized easily, justify.
Correct Verbatim Answer
Drugs with higher viscosity are susceptible to oxidation due to complex mechanism. They have reduced diffusion and dissolution effect. That's why they are not easily oxidized. DESCRIPTIVE QUESTIONS (EXERCISE)