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Everyday Wear Built for the Modern Indian

Bold Style Designed for Everyday Comfort

We started with a simple realization: young Indians shouldn't have to compromise on style to feel completely relaxed. Driven by the energetic rhythm of our cities and rooted in a rich heritage of textile craftsmanship, we set out to create a wardrobe that keeps up with your dynamic everyday life. From college campuses to late-night drives with friends, we wanted to design clothes that feel like a second skin while making a confident, modern statement. We exist to bring you versatile casuals that effortlessly transition from your busy desk to your favorite weekend hangout spots.

We believe that real style is built on honest quality and thoughtful design. We do not believe in fast, disposable fashion; instead, we focus on producing durable jeans, cozy hoodies, and crisp button-downs that survive endless washes and daily wear. Every single fabric is hand-selected to ensure it breathes naturally in the Indian climate, and every stitch is carefully reinforced for longevity. For us, premium quality should never come with an unreasonable price tag, ensuring you always get authentic value with every single purchase.

Our promise to you is simple: reliability without compromise. We want to be the easiest, most trustworthy choice in your wardrobe, the pieces you reach for instinctively because you know they fit right and feel incredible. When you wear our jackets, t-shirts, or sweatshirts, you are choosing apparel designed with genuine care, respect, and a deep understanding of your contemporary lifestyle. We warmly invite you to explore our collection and discover comfort that speaks your language and moves with your unique rhythm.

```of All Time!

We started with a simple realization: young Indians shouldn't have to compromise on style to feel completely relaxed. Driven by the energetic rhythm of our cities and rooted in a rich heritage of textile craftsmanship, we set out to create a wardrobe that keeps up with your dynamic everyday life. From college campuses to late-night drives with friends, we wanted to design clothes that feel like a second skin while making a confident, modern statement. We exist to bring you versatile casuals that effortlessly transition from your busy desk to your favorite weekend hangout spots.

We believe that real style is built on honest quality and thoughtful design. We do not believe in fast, disposable fashion; instead, we focus on producing durable jeans, cozy hoodies, and crisp button-downs that survive endless washes and daily wear. Every single fabric is hand-selected to ensure it breathes naturally in the Indian climate, and every stitch is carefully reinforced for longevity. For us, premium quality should never come with an unreasonable price tag, ensuring you always get authentic value with every single purchase.

Our promise to you is simple: reliability without compromise. We want to be the easiest, most trustworthy choice in your wardrobe, the pieces you reach for instinctively because you know they fit right and feel incredible. When you wear our jackets, t-shirts, or sweatshirts, you are choosing apparel designed with genuine care, respect, and a deep understanding of your contemporary lifestyle. We warmly invite you to explore our collection and discover comfort that speaks your language and moves with your unique rhythm.

_df-807-f655b37e0e7af999f8d67295f1bd_**: Is physical, chemical change are permanent or temporary? Write four differences between physical and chemical change. Give one example of each change. (6 marks) 🧠 **Difference between physical and chemical change:**

Physical ChangeChemical Change
1. It is a temporary change.1. It is a permanent change.
2. It is easily reversible.2. It is irreversible.
3. No new substance is formed.3. New substance is formed.
4. Little or no energy is absorbed or evolved.4. A large amount of energy is absorbed or evolved.

**Example of Physical Change:** Melting of ice.
**Example of Chemical Change:** Burning of paper._**: What does the slope of a distance-time graph and a velocity-time graph represent? (2 marks)** 🧠 The **slope of a distance-time graph** represents **speed**.
The **slope of a velocity-time graph** represents **acceleration**._**: Name the standard unit of force and define it. (2 marks)** 🧠 The standard unit of force is the **Newton (N)**.
**Definition:** One Newton is defined as the force that produces an acceleration of $1 ext{ m/s}^2$ in a body of mass $1 ext{ kg}$._**: Define: (a) Freezing (b) Sublimation (c) Vaporisation (3 marks)** 🧠 **(a) Freezing:** The process in which a liquid substance changes into a solid state by giving out heat energy is called freezing.
**(b) Sublimation:** The process in which a solid substance directly changes into its gaseous state on heating, without passing through the intermediate liquid state, is called sublimation.
**(c) Vaporisation:** The process in which a liquid substance changes into its gaseous state on heating is called vaporisation._**: Formulate equations for the following reactions: (a) Heating of calcium carbonate. (b) Reaction of iron with copper sulphate solution. (c) Burning of magnesium ribbon in air. (d) Reaction of sodium with water. (4 marks)** 🧠 **(a) Heating of calcium carbonate:**
$$ ext{CaCO}_3(s) ightarrow ext{CaO}(s) + ext{CO}_2(g)$$
**(b) Reaction of iron with copper sulphate solution:**
$$ ext{Fe}(s) + ext{CuSO}_4(aq) ightarrow ext{FeSO}_4(aq) + ext{Cu}(s)$$
**(c) Burning of magnesium ribbon in air:**
$$2 ext{Mg}(s) + ext{O}_2(g) ightarrow 2 ext{MgO}(s)$$
**(d) Reaction of sodium with water:**
$$2 ext{Na}(s) + 2 ext{H}_2 ext{O}(l) ightarrow 2 ext{NaOH}(aq) + ext{H}_2(g)$$_**: Write down the chemical formulas of the following compounds: (a) Calcium chloride (b) Aluminium sulphate (c) Sodium carbonate (d) Magnesium hydroxide (4 marks)** 🧠 The chemical formulas of the given compounds are:

**(a) Calcium chloride:** $ ext{CaCl}_2$

**(b) Aluminium sulphate:** $ ext{Al}_2( ext{SO}_4)_3$

**(c) Sodium carbonate:** $ ext{Na}_2 ext{CO}_3$

**(d) Magnesium hydroxide:** $ ext{Mg(OH)}_2$_**: Distinguish between homogeneous and heterogeneous mixtures with two examples of each. (4 marks)** 🧠 **Distinction between homogeneous and heterogeneous mixtures:**

Homogeneous MixtureHeterogeneous Mixture
1. The components of the mixture are uniformly distributed throughout its volume.1. The components of the mixture are not uniformly distributed.
2. There are no visible boundaries of separation between the constituents.2. There are visible boundaries of separation between the constituents.
3. The components cannot be seen even under a powerful microscope.3. The components can often be seen with the naked eye or under a simple microscope.
4. Examples: Salt solution, Air.4. Examples: Mixture of sand and salt, Chalk powder in water.
_**: State the law of conservation of mass. Describe an experiment to verify this law. (5 marks)** 🧠 **Law of Conservation of Mass:**
The law states that mass can neither be created nor destroyed in a chemical reaction. The total mass of the reactants is equal to the total mass of the products.

**Experiment to Verify the Law:**

* **Apparatus Required:** Conical flask, ignition tube, cork, thread, weighing balance, Barium Chloride solution, and Sodium Sulphate solution.
* **Procedure:**
1. Take a small amount of Barium Chloride solution in an ignition tube and a small amount of Sodium Sulphate solution in a conical flask.
2. Tie a thread to the ignition tube and hang it carefully in the flask so that the two solutions do not mix. Put a cork on the flask.
3. Weigh the flask with its contents carefully on a balance. Let this mass be $W_1$.
4. Now, tilt and swirl the flask so that the solutions in the ignition tube and conical flask mix together and react. A white precipitate of Barium Sulphate is formed.
5. Weigh the flask again on the balance. Let this mass be $W_2$.
* **Observation:** The mass of the flask before the reaction ($W_1$) is equal to the mass of the flask after the reaction ($W_2$).
* **Conclusion:** Since the mass remains unchanged before and after the chemical reaction, the law of conservation of mass is verified.