Skip to content
Open
Show file tree
Hide file tree
Changes from all commits
Commits
File filter

Filter by extension

Filter by extension

Conversations
Failed to load comments.
Loading
Jump to
Jump to file
Failed to load files.
Loading
Diff view
Diff view
Original file line number Diff line number Diff line change
Expand Up @@ -10,9 +10,18 @@
function getAngleType(angle) {
if (angle === 90) {
return "Right angle";
} else if (angle < 90) {
return "Acute angle";
} else if (angle > 90 && angle < 180) {
return "Obtuse angle";
} else if (angle === 180) {
return "Straight angle";
} else {
return "Reflex angle";
}
// Run the tests, work out what Case 2 is testing, and implement the required code here.
// Then keep going for the other cases, one at a time.

// Run the tests, work out what Case 2 is testing, and implement the required code here.
// Then keep going for the other cases, one at a time.
}

// The line below allows us to load the getAngleType function into tests in other files.
Expand Down Expand Up @@ -51,13 +60,17 @@ assertEquals(acute, "Acute angle");
// Then the function should return "Obtuse angle"
const obtuse = getAngleType(120);
// ====> write your test here, and then add a line to pass the test in the function above
assertEquals(obtuse, "Obtuse angle");

// Case 4: Identify Straight Angles:
// When the angle is exactly 180 degrees,
// Then the function should return "Straight angle"
// ====> write your test here, and then add a line to pass the test in the function above

const straight = getAngleType(180);
assertEquals(straight, "Straight angle");
// Case 5: Identify Reflex Angles:
// When the angle is greater than 180 degrees and less than 360 degrees,
// Then the function should return "Reflex angle"
// ====> write your test here, and then add a line to pass the test in the function above
// ====> write your test here, and then add a line to pass the test in the function above
const reflex = getAngleType(240);
assertEquals(reflex, "Reflex angle");
Original file line number Diff line number Diff line change
Expand Up @@ -5,11 +5,17 @@
// Written here like this: 1/2 == Numerator/Denominator
// the first test and first case is written for you
// complete the rest of the tests and cases
// write one test at a time, and make it pass, build your solution up methodically
// write one test at a time, and make it pass, build your solution up

function isProperFraction(numerator, denominator) {
if (denominator === 0) return false;
if (numerator < 1) numerator = Math.abs(numerator) ;
if (denominator < 1) denominator = Math.abs(denominator);

if (numerator < denominator) {
return true;
} else {
return false;
}
}

Expand Down Expand Up @@ -47,13 +53,20 @@ assertEquals(improperFraction, false);
// Explanation: The fraction -4/7 is a proper fraction because the absolute value of the numerator (4) is less than the denominator (7). The function should return true.
const negativeFraction = isProperFraction(-4, 7);
// ====> complete with your assertion
assertEquals(negativeFraction, true);

// Equal Numerator and Denominator check:
// Input: numerator = 3, denominator = 3
// target output: false
// Explanation: The fraction 3/3 is not a proper fraction because the numerator is equal to the denominator. The function should return false.
const equalFraction = isProperFraction(3, 3);
// ====> complete with your assertion

assertEquals(equalFraction, false);
// Stretch:
// What other scenarios could you test for?
//Negative fraction check
//Input: numerator=-4, denominator=2;
//target output: false
// Explanation: The fraction -4/2 is not a proper fraction because the absolute value of the numerator (4) is more than the denominator (2). The function should return false.
const negativeFractionCase2 = isProperFraction(-4, 2);
assertEquals(negativeFractionCase2, false);
Original file line number Diff line number Diff line change
Expand Up @@ -8,11 +8,19 @@
// write one test at a time, and make it pass, build your solution up methodically
// just make one change at a time -- don't rush -- programmers are deep and careful thinkers
function getCardValue(card) {
const rank = card.slice(0, -1);
if (rank === "A") {
return 11;
}
}
if (rank === "J" || rank === "Q" || rank === "K") {
return 10;
}

const validRank = ["2", "3", "4", "5", "6", "7", "8", "9", "10"];
if (validRank.includes(rank)) {
return Number(rank);
} else return "Invalid card rank";
}
// The line below allows us to load the getCardValue function into tests in other files.
// This will be useful in the "rewrite tests with jest" step.
module.exports = getCardValue;
Expand Down Expand Up @@ -40,18 +48,26 @@ assertEquals(aceofSpades, 11);
// Then it should return the numeric value corresponding to the rank (e.g., "5" should return 5).
const fiveofHearts = getCardValue("5♥");
// ====> write your test here, and then add a line to pass the test in the function above

assertEquals(fiveofHearts, 5);
// Handle Face Cards (J, Q, K):
// Given a card with a rank of "10," "J," "Q," or "K",
// When the function is called with such a card,
// Then it should return the value 10, as these cards are worth 10 points each in blackjack.

const jackofHearts = getCardValue("J♥");
assertEquals(jackofHearts, 10);
const queenofSpades = getCardValue("Q♠");
assertEquals(queenofSpades, 10);
const kingofSpades = getCardValue("K♠");
assertEquals(kingofSpades, 10);
// Handle Ace (A):
// Given a card with a rank of "A",
// When the function is called with an Ace,
// Then it should, by default, assume the Ace is worth 11 points, which is a common rule in blackjack.

const aceofHearts = getCardValue("A♥");
assertEquals(aceofHearts, 11);
// Handle Invalid Cards:
// Given a card with an invalid rank (neither a number nor a recognized face card),
// When the function is called with such a card,
// Then it should throw an error indicating "Invalid card rank."
const invalidCards = getCardValue("B♥");
assertEquals(invalidCards, "Invalid card rank");
Original file line number Diff line number Diff line change
Expand Up @@ -12,15 +12,25 @@ test("should identify right angle (90°)", () => {
// Case 2: Identify Acute Angles:
// When the angle is less than 90 degrees,
// Then the function should return "Acute angle"
test("should identify Acute Angles", () => {
expect(getAngleType(70)).toEqual("Acute angle");
});

// Case 3: Identify Obtuse Angles:
// When the angle is greater than 90 degrees and less than 180 degrees,
// Then the function should return "Obtuse angle"

test("should identify Obtuse Angles", () => {
expect(getAngleType(120)).toEqual("Obtuse angle");
});
// Case 4: Identify Straight Angles:
// When the angle is exactly 180 degrees,
// Then the function should return "Straight angle"

test("should identify Straight Angles", () => {
expect(getAngleType(180)).toEqual("Straight angle");
});
// Case 5: Identify Reflex Angles:
// When the angle is greater than 180 degrees and less than 360 degrees,
// Then the function should return "Reflex angle"
test("should identify Reflex Angles", () => {
expect(getAngleType(240)).toEqual("Reflex angle");
});
Original file line number Diff line number Diff line change
Expand Up @@ -7,7 +7,25 @@ test("should return true for a proper fraction", () => {
});

// Case 2: Identify Improper Fractions:

test("returns false for an improper fraction", () => {
expect(isProperFraction(5, 2)).toEqual(false);
});
// Case 3: Identify Negative Fractions:

test("returns true for a negative proper fraction( absolute value of the numerator is less than the denominator)", () => {
expect(isProperFraction(-4, 7)).toEqual(true);
});
Comment on lines +14 to +16
Copy link
Contributor

Choose a reason for hiding this comment

The reason will be displayed to describe this comment to others. Learn more.

When preparing tests, we should ensure the tests cover all possible cases (and maybe test multiple samples within each case to make the test more robust). Can you think of case(s) that should also be tested?

// Case 4: Identify Equal Numerator and Denominator:
test("returns false when numerator equals denominator", () => {
expect(isProperFraction(9, 9)).toEqual(false);
});

test("return false when numerator equals denominator when both are negative", () => {
expect(isProperFraction(-4, -4)).toEqual(false);
});

test("returns false for a negative proper fraction( absolute value of the denominator is less than the numerator)", () => {
expect(isProperFraction(-7, 4)).toEqual(false);
});
Comment on lines +26 to +28
Copy link
Contributor

Choose a reason for hiding this comment

The reason will be displayed to describe this comment to others. Learn more.

  • -7/4 is considered a negative improper fraction.

test("returns false when denominator is zero", () => {
expect(isProperFraction(3, 0)).toEqual(false);
});
Original file line number Diff line number Diff line change
Expand Up @@ -8,6 +8,27 @@ test("should return 11 for Ace of Spades", () => {
});

// Case 2: Handle Number Cards (2-10):
test("should return the numeric value for number cards (2-10)", () => {
const fiveofHearts = getCardValue("5♥");
expect(fiveofHearts).toEqual(5);
const tenofHearts = getCardValue("10♥");
expect(tenofHearts).toEqual(10);
});
// Case 3: Handle Face Cards (J, Q, K):
test("should return 10 for face cards (J, Q, K)", () => {
const kingofHearts = getCardValue("K♥");
expect(kingofHearts).toEqual(10);
const queenofHearts = getCardValue("Q♥");
expect(queenofHearts).toEqual(10);
});
// Case 4: Handle Ace (A):
test("should return 11 for an Ace", () => {
const aceofHearts = getCardValue("A♥");
expect(aceofHearts).toEqual(11);
});

// Case 5: Handle Invalid Cards:
test("should return invalid card rank", () => {
const twelveofHearts = getCardValue("12♥");
expect(twelveofHearts).toEqual("Invalid card rank");
});